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  • PANGAEA  (421,890)
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  • 1
    Publication Date: 2024-05-01
    Description: The open source Video In Situ Snowfall Sensor (VISSS) is a novel instrument for the characterization of particle shape and size in snowfall. The VISSS consists of two cameras with LED backlights and telecentric lenses that allow accurate sizing and combine a large observation volume with relatively high resolution and a design that limits wind disturbance. Here, movies and images of falling precipitation particles are provided for station Ny-Ålesund from July 2022 to December 2023. For further details on the VISSS Sensor see Maahn et al. (2024).
    Keywords: AC3; Arctic Amplification; In-situ; Ny-Ålesund; snowfall; snowflake
    Type: Dataset
    Format: application/zip, 523 datasets
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  • 2
    Publication Date: 2024-05-01
    Description: Here, we present data on lipid biomarkers (branched glycerol dialkyl glycerol tetraethers (brGDGTs) and hopanes) from the NGaoundaba peat deposit (NE Cameroon - Adamawa Plateau - N7.135° E13.690°) spanning the last 10 ka. The data comprise concentrations of hopanes, C31 hopane carbon isotopic composition (when available), hopane isomer ratio and CBTpeat ratio as well as pH reconstructions based on empirical calibration from Naafs et al. 2017 and Inglis et al. 2018. The core was collected on February 2019 and named NBGA19. The 6-meter-long core was sub-sampled at 2.5-cm intervals. 73 samples were analyses. Lipid biomarkers were extracted using MARS 6 CEM microwave extraction system and then separated by column chromatography on silica gel into three fractions. Data were obtained using HPLC-APCI-MS (Agilent 1200) (LGL-TPE, ENS de Lyon, France) or GC-MS (Agilent) and GC-IRMS (Agilent 9870B GC coupled to an isoprime visION IRMS via an isopirme GC-5 combustion interface Elementar) (LGL-TPE Université Claude Bernard Lyon 1, France). Carbon isotopic compositions was calibrated using a reference CO2 gas reported to VPDB scale.
    Keywords: 13C composition; African Humid Period; Core; CORE; isomer ratios; lipid biomarkers; NGaoundaba peatland, Northeastern Cameroon; NGBA19; pH reconstruction
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 3
    Publication Date: 2024-05-01
    Description: Here are the bundled geochemical data of an 11-m-long sediment core EN21103 collected from Lake Ulu (63.34°N, 141.05°E) in the Oymyakon region (eastern Siberia) during the 'Yakutia 2021' expedition, which consists of five datasets. (1) Dataset 1. Radiocarbon dating performed on the total organic carbon content of 40 bulk sediments, measured at the MICADAS (Mini Carbon Dating System) Laboratory of AWI in Bremerhaven. (2) Dataset 2. Bacon age-depth model. This model was established based on the Bayesian method with a hiatus at 138 cm and calibrated using the IntCal20 dataset via the Bacon function in the R-package rbacon. A reservoir effect of approximately 351 ± 24 radiocarbon years has been determined by the dated surface sample (0−0.5 cm). We assumed a constant reservoir effect over time and therefore subtracted a value of 351 years from all radiocarbon ages. (3) Dataset 3. Element composition including total carbon (TC), total organic carbon (TOC), total inorganic carbon (TIC), and total nitrogen (TN), measured with a soli TOC cube (Elementar) and a rapid MAX N exceed (Elementar) at the Carbon and Nitrogen Laboratory of AWI in Potsdam. The minimum detectable concentration for natural sediment samples is 0.1% for both machines. (4) Dataset 4. Stable carbon isotopes of organic matter (d13C), measured with a Delta V Advantage Mass Spectrometer at the ISOLAB Facility of AWI in Potsdam. All isotopic values are reported in standard δ-notation in per mil (‰) relative to VPDB. (5) Dataset 5. X-ray fluorescence (XRF) scanning data, scanned with an AvaaTech XRF core scanner at AWI in Potsdam. All elements were measured at X-ray voltages of 10 kV and 30 kV and currents of 0.45 mA and 0.15 mA, respectively, with a step size of 0.5 cm and an exposure time of 10 s. The data are semiquantitative and provide relative fluctuations in the chemical element compositions as counts per second (cps).
    Keywords: d13C; Geochemical proxies; Lake sediment core; Lake Ulu; Oymyakon; radiocarbon age; Siberia; TC; TIC; TN; TOC; XRF
    Type: Dataset
    Format: application/zip, 5 datasets
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  • 4
    Publication Date: 2024-05-01
    Description: We used a 1D numerical model constrained by radar horizons to find the age-depth profiles at two locations on Little Dome C (LDC), Antarctica - the European Beyond EPICA - Oldest Ice project drill site (BELDC; 75.29917 °S, 122.44516 °E) and the Australian Million Year Ice Core project drill site (MYIC; 75.34132 °S, 122.52059 °E). Further details on the model can be found in the associated publication (Chung et al., 2023; The Cryosphere). The model was constrained by two different sets of radar horizons. 1. The radar survey conducted over the Dome C region conducted by the British Antarctic Survey over the 2016-17 and 2017-18 Antarctic field seasons using the sledge-borne DEep LOoking Radio Echo Sounder (DELORES; Mulvaney et al., 2023). 2. The radar survey conducted during the 2019-20 Antarctic field season in a collaboration between the University of Alabama (UA), the University of Copenhagen (CPH) and the Alfred Wegener Institute (AWI), using the Little Dome C-Very High Frequency radar system (LDC-VHF; Chung et al., 2023; PANGAEA). Applying the 1D model to the two radar datasets at the two ice core location result in the four predicted age-depth profiles that we present here: BELDC_DELORES, BELDC_LDC-VHF, MYIC_DELORES and MYIC_LDC-VHF. The age-depth profiles, extend to the deepest point where modelled age density 〈 20 ka/m - the threshold for which a paleoclimatic signal can reasonably be extracted.
    Keywords: BE-OI; Beyond EPICA - Oldest Ice
    Type: Dataset
    Format: application/zip, 4 datasets
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  • 5
    Publication Date: 2024-05-01
    Keywords: Abrupt Climate Changes and Environmental Responses; Accumulation model; ACER; Agathis; Alectryon; Apiaceae; Aristotelia; Ascarina; Astelia; Asteraceae; Brassicaceae; Calendar age; Calendar age, maximum/old; Calendar age, minimum/young; Calocedrus; Campanulaceae; cf. Podocarpus; Chenopodiaceae; Classical age-modeling approach, CLAM (Blaauw, 2010); Collospermum; Coprosma; Cordyline; Coriaria; Counting, palynology; Cyathea dealbata-type; Cyathea smithii-type; Cyperaceae; Dacrycarpus; Dacrydium; DEPTH, sediment/rock; Dicksonia; Dodonaea; Drosera; Dysoxylum; Elaeocarpus; Empodisma; Epacridaceae; Gentiana; Gleichenia; Goodeniaceae; Griselinia; Halocarpus; Haloragis; Hebe; Hibiscus; Hoheria; Ileostylus; Isoetes; Ixerba; Knightia; Kohuora; Lagarostrobus; Laurelia; Leptospermum-type; Leucopogon fasciculatus; Litsea; Metrosideros; Muehlenbeckia; Myoporum; Myriophyllum; Myrsine; Neomyrtus; Nestegis; Nothofagus; Nothofagus menziesii; Passiflora; Peraxilla; Phormium; Phyllocladus; Phymatosorus; Pinus; Pittosporum; Plagianthus; Plantago; Poaceae; Podocarpus; Pollen indeterminata; Polypodiales; Pomaderris; Potamogeton; Pratia; Prumnopitys; Pseudopanax; Pseudowintera; Pteridium; Quintinia; Ranunculaceae; Rhopalostylis; Ripogonum; Rubus; Sample ID; Schefflera; Sphagnum; Syzygium; Tupeia; Type of age model; Typha-type; Urticaceae; Weinmannia
    Type: Dataset
    Format: text/tab-separated-values, 14234 data points
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  • 6
    Publication Date: 2024-05-01
    Description: This dataset contains major element oxide data and trace element data of volcanic events from B19, TUNU2013, and RECAP ice cores, Greenland and associated proximal material from Iceland. Secondary standards for major and trace element data are also provided. These ice cores were investigated to identify the source of the volcanic events across the period 700-1000 CE. In total, six volcanic events have been geochemically analysed across the study period in the Greenland ice cores and two corresponding events were analysed from Iceland.
    Keywords: Geochemistry; Greenland; Ice core; Iceland; Tephra
    Type: Dataset
    Format: application/zip, 6 datasets
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  • 7
    Publication Date: 2024-05-01
    Keywords: Abies; Abrupt Climate Changes and Environmental Responses; Accumulation model; Acer; ACER; Alnus; Apiaceae; Armeria; Artemisia; Asteraceae; Betula; Brassicaceae; Calendar age; Calendar age, maximum/old; Calendar age, minimum/young; Campanula; Carpinus betulus; Carpinus orientalis/Ostrya; Caryophyllaceae; Castanea; Centaurea; cf. Asphodelus albus; cf. Cephalanthera; cf. Echium; cf. Hypecoum; cf. Hypericum; cf. Iris; cf. Linum; cf. Saxifraga stellaris; Chenopodiaceae; Cistus; Classical age-modeling approach, CLAM (Blaauw, 2010); Convolvulus; Corylus; Counting, palynology; Cyperaceae; DEPTH, sediment/rock; Dipsacaceae; Dryopteris; Ephedra distachya-type; Ephedra fragilis-type; Ericaceae; Euphorbiaceae; Fagus; Filipendula; Fraxinus; Gentianaceae; Hedera helix; Helianthemum; Hippophae; Ilex; Indeterminable; Juniperus; Knautia; Lamiaceae; Leguminosae; Lemna; Ligustrum; Liliaceae; Lycopodium; Lythrum; Megali_Limni; Mentha-type; Moraceae; Myriophyllum; Myrtus; Nuphar; Nymphaea alba-type; Olea; Papaveraceae; Phillyrea; Pinus; Plantago; Poaceae; Polygonum; Polypodiales; Polypodium; Potamogeton; Primulaceae; Quercus; Ranunculus; Rhamnaceae; Rosaceae; Rubiaceae; Rumex; Salix; Sample ID; Sanguisorba; Saxifragaceae; Scrophulariaceae; Sparganium; Thalictrum; Tilia cordata; Type of age model; Typha latifolia-type; Ulmus; Urtica; Utricularia; Valerianaceae
    Type: Dataset
    Format: text/tab-separated-values, 22125 data points
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  • 8
    Publication Date: 2024-05-01
    Description: The study was done in the Palatinate region, Germany. Arthropod assemblages were sampled in 32 vineyards of organic and conventional wineries planted with resistant and susceptible grape varieties. The vineyards received different pesticide treatments (spraying frequency and toxicity of applied products). Arthropod sampling took place between May and October 2018. Arthropods were sampled from the grapevine canopy via beat-sheet, identified at least to family level, and assigned to different feeding guilds. Natural pest control on L. botrana eggs was observed with sentinel cards which were exposed in the same year. Eggs were counted before and after exposure.
    Keywords: Acanthosomatidae; Acartophthalmidae; Aeolothripidae; Agaonidae; Agelenidae; Agromyzidae; Amaurobiidae; Anobiidae; Anthicidae; Anthocoridae; Anthomyiidae; Anthribidae; Anyphaenidae; Anystidae; Aphididae; Aphrophoridae; Apidae; Apionidae; Araneae; Araneidae; Arthropoda, number of families; Asteiidae; Atelestidae; Attelabidae; Baetidae; Beat sheet counts; Berytidae; Bethylidae; Bibionidae; Blattellidae; Braconidae; Bruchidae; Caeciliusidae; Camillidae; Cantharidae; Carabidae; Carnivore; Cecidomyiidae; Ceraphronidae; Ceratopogonidae; Chalcididae; Chamobatidae; Cheiracanthiidae; Chernetidae; Chironomidae; Chloropidae; Chryptophagidae; Chrysididae; Chrysomelidae; Chrysopidae; Cicadellidae; Cixiidae; Cleridae; Clubionidae; Coccinellidae; Coleophoridae; Coleoptera; Colletidae; Coreidae; Crambidae; Cunaxidae; Curculionidae; Cynipidae; Dasytidae; Delphacidae; Detrivore; Diapriidae; Dictynidae; Diptera; Dolichopodidae; Drosophilidae; Ectobiidae; Ectopsocidae; Elasmidae; Elateridae; Elipsocidae; Empididae; Encyrtidae; Entomobryidae; Epermeniidae; Ephydridae; Erebidae; Eriosomatidae; Eucnemidae; Eucoilidae; Eulophidae; Eupelmidae; Eurytomidae; Fanniidae; Figitidae; Forficulidae; Formicidae; Fungivore; Geometridae; Gnaphosidae; Gracillariidae; Haematophages; Halictidae; Haliplidae; Hazard quotient; Hemerobiidae; Hemiptera; Hepialidae; Herbivore; Hymenoptera; Ichneumonidae; Isotomidae; Kateretidae; Lachesillidae; Landau_vineyards; Landau (Pfalz), Rhineland-Palatinate, Southern Germany; Latridiidae; Lauxaniidae; Lepidoptera; Limnephilidae; Linyphiidae; Lobesia botrana, eggs; Lycaenidae; Lycosidae; Lygaeidae; Malachiidae; Meconematidae; Megaspilidae; Melyridae; Membracidae; Mesopsocidae; Microphysidae; Mimetidae; Miridae; Muscidae; Mycetophagidae; Mycetophilidae; Mymaridae; Nabidae; Nectarivore; Neuroptera; Nitidulidae; Noctuidae; Number of individuals; Oedemeridae; Omnivore; Opiliones; Oribatellidae; Palynivore; Panorpidae; Parasite; Parasitoid; Penphygidae; Pentatomidae; Peripsocidae; Periscelididae; Phalacridae; Phalangiidae; Phenopelopidae; Philodromidae; Philosciidae; Phlaeothripidae; Pholcidae; Phoridae; Piesmatidae; Pisauridae; Platygastridae; Platypezidae; Plutellidae; Polyxenidae; Pompilidae; Proctotrupidae; Psocoptera; Pteromalidae; Pterophoridae; Pyralidae; Pyrrhocoridae; Reduviidae; Rhinophoridae; Rhopalidae; Rhyparochromidae; Sacrophagidae; Saldidae; Salticidae; Sample ID; Scatopsidae; Scelionidae; Sciaridae; Scolytidae; Scraptiidae; Segestriidae; Simuliidae; Site; Sminthuridae; Sparassidae; Sphaeroceridae; Sphindidae; Staphylinidae; Stenopsocidae; Stratiomyidae; Syrphidae; Tabanidae; Tachinidae; Tenebrionidae; Tephritidae; Tetragnathidae; Tettigometridae; Tettigoniidae; Theridiidae; Thomisidae; Thripidae; Tineidae; Tingidae; Tipulidae; Tortricidae; Torymidae; Treatment; Trichopsocidae; Trombidiidae; Uloboridae; Unknown feeding guild; Variety; Vespidae; Yponomeutidae
    Type: Dataset
    Format: text/tab-separated-values, 6944 data points
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  • 9
    Publication Date: 2024-05-01
    Description: Northern quahog (Mercenaria mercenaria) were fertilized under normal pCO2 and reared under acidified (pH ~ 7.5, pCO2 ~ 1200 ppm) or control (pH ~ 7.9, pCO2 ~ 600 ppm) conditions before sampled at 2 days (larvae), 32 days (postsets), 5 and 10 months (juveniles) and submitted to RNA and DNA sequencing to evaluate alterations in gene expression and genetic variations.
    Keywords: Alkalinity, total; Alkalinity, total, standard deviation; Animalia; Aragonite saturation state; Aragonite saturation state, standard deviation; Benthic animals; Benthos; Bicarbonate ion; Bicarbonate ion, standard deviation; Calcite saturation state; Calcite saturation state, standard deviation; Calculated using seacarb after Nisumaa et al. (2010); Calculated using seacarb after Orr et al. (2018); Carbon, inorganic, dissolved; Carbon, inorganic, dissolved, standard deviation; Carbonate ion; Carbonate ion, standard deviation; Carbonate system computation flag; Carbon dioxide; Carbon dioxide, standard deviation; Coast and continental shelf; Containers and aquaria (20-1000 L or 〈 1 m**2); EXP; Experiment; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Fugacity of carbon dioxide in seawater, standard deviation; Gene expression (incl. proteomics); Hampton_Bays; Laboratory experiment; Mercenaria mercenaria; Mollusca; North Atlantic; Northport; Number; OA-ICC; Ocean Acidification International Coordination Centre; Partial pressure of carbon dioxide, standard deviation; Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); Pelagos; Percentage; pH; pH, standard deviation; Riverhead_OA; Salinity; Salinity, standard deviation; Single species; Species, unique identification; Species, unique identification (Semantic URI); Species, unique identification (URI); Temperate; Temperature, water; Temperature, water, standard deviation; Time point, descriptive; Treatment; Type of study; Wellfleet; Zooplankton
    Type: Dataset
    Format: text/tab-separated-values, 332 data points
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  • 10
    Publication Date: 2024-05-01
    Description: The seasonal proliferations of green seaweeds under the morphological blade-type Ulva have been observed on Brittany coasts since the late 60s-early 70s. These so-called green tides are directly related to the eutrophication of coastal waters, and especially to high terrigenous inputs of nitrogen to the sea. In this context, a management tool, i.e. the ecological Model for Application at Regional Scale MARS3D-Ulve, has specifically been developed to support stakeholders to set realistic targets for nitrogen input reductions. Among key parameters of the model, the maximum nitrate uptake rate (Vmax) and the half-saturation constant for nitrate (Km) of Ulva sp. have initially been calibrated to reproduce the seasonal variation of the internal nitrogen and phosphorus algal contents measured in situ for five sites along the Brittany coastline (La Fresnaye Bay, Saint-Brieuc Bay, Lannion Bay, Guissény Bay and Douarnenez Bay; Perrot et al. (2014, doi:10.1016/j.jmarsys.2013.12.010)). The calibrated values of Vmax and Km require therefore to be experimentally validated. Laboratory experiments were monthly set up to assess the seasonal evolution of nitrate uptake kinetic of Ulva spp. from May to September during two successive seasons (2022 and 2023). Healthy vegetative thalli of the dominant Ulva species were randomly sampled on Lermot Beach, located in Saint-Brieuc Bay (lat 48.5339, long 2.6622). Eventhough the model MARS3D-Ulve does not differentiate Ulva sp. at the species level, morpho-anatomical identification of the sampled thalli was carried out following the updated taxonomic classification of Hughey et al. (2021, doi:10.1080/09670262.2021.1914862). Algae were grown in 5 l polypropylen beakers in 0.2 µm filtered seawater under 7 different nitrate concentrations (0, 5, 10, 20, 50, 100, 200 µmol/l). Phosphate was added (3 µmol/l) in each beaker to avoid limitation. The experiment was run under a light intensity of 150 µmol photons m²/s. Photoperiod and temperature were adjusted to measured in situ conditions. The laboratory experiments consisted in assessing nitrates concentrations in each medium after 30 minute-incubation period. Nitrate uptake rates were calculated from nitrate concentrations and the corresponding kinetic parameters Vmax and Km were estimated by fitting data with the Michaelis-Menten equation, using a nonlinear least-squares regression (Lotze and Schramm, 2000, doi:10.1046/j.1529-8817.2000.99109.x). Each experiment was replicated three times. Before each experiment, physiological and nutritional states of algae were determined from the assessment of their maximum quantum yield (Fv/Fm), and their nitrogen and phosphorus tissue contents respectively. Those assessments were done from four replicated samples.
    Keywords: Analysis date/time, experiment; Brittany, France; Calculated, according to the Michaelis-Menten kinetic; Diving-PAM-II photosynthesis system, Walz; Experiment; ICP-AES; Inductively coupled plasma atomic emission spectroscopy; Laboratory experiment; Light:Dark cycle; Maximum quantum yield of photosystem II; Maximum quantum yield of photosystem II, standard deviation; Nitrate, half saturation constant; Nitrate, half saturation constant, standard deviation; Nitrate, maximum uptake rate per hour as dry mass; Nitrate, maximum uptake rate per hour as dry mass, standard deviation per hour; Nitrogen, in tissue, per dry mass; Nitrogen, in tissue, per dry mass, standard deviation; Nitrogen analysis after Dumas; Phosphorus, in tissue, per dry mass; Phosphorus, in tissue, per dry mass, standard deviation; Species, unique identification; Species, unique identification (Semantic URI); Species, unique identification (URI); Treatment: temperature; Ulva_species_Lermot_Beach; WTW Multiline P4 analyser
    Type: Dataset
    Format: text/tab-separated-values, 150 data points
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  • 11
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    Unknown
    PANGAEA
    In:  European Pollen Database (EPD)
    Publication Date: 2024-05-01
    Keywords: Abies; Abies: stomata; Acer; Achillea-type; Aconitum-type; Adonis aestivalis-type; Aesculus hippocastanum; Aethusa cynapium; AGE; Agrimonia-type; Agrostemma githago; Alchemilla group; Alisma group; Allium-type; Alnus glutinosa-type; Alnus viridis; Anemone nemorosa-type; Anethum graveolens; Angelica sylvestris; Anthericum; Anthriscus cerefolium; Anthriscus sylvestris; Anthriscus-type; Anthyllis vulneraria; Aphanes arvensis-type; Apiaceae undifferentiated; Apium inundatum-type; Arctium lappa-type; Artemisia; Asparagus officinalis-type; Asplenium; Asteroideae; Astragalus-type; Astrantia major-type; Athyrium; Avena-type; Ballota-type; Betula; Blechnum spicant; Borago officinalis; Botrychium; Botryococcus; Brassicaceae; Bryidae; Bupleurum; Buxus sempervirens; Caldesia parnassifolia; Calluna vulgaris; Caltha-type; Calystegia; Campanulaceae; Campanula trachelium-type; Cannabis/Humulus; Carduus-type; Carpinus betulus; Carum carvi; Caryophyllaceae undifferentiated; Castanea sativa; Caucalis platycarpos; Centaurea cyanus; Centaurea jacea; Centaurea jacea-type; Centaurea montana-type; Centaurea scabiosa; Centaurium pulchellum-type; Cephalanthera-type; Cerastium fontanum-type; Cerealia-type; Chaenorhinum minus; Chaerophyllum hirsutum-type; Charcoal; Chelidonium majus; Chenopodiaceae; Cichorioideae; Cicuta virosa; Cirsium; Cladium mariscus; Coccus; Colchicum autumnale; Conium maculatum; Consolida-type; Convolvulus arvensis; Cornus mas; Cornus sanguinea; Coronilla varia-type; Corydalis cava-type; Corylus avellana; Counting, palynology; Cyperaceae undifferentiated; Daphne; Daucus carota; DEPTH, sediment/rock; Descurainia sophia-type; Digitalis; Diphasium alpinum-type; Drosera; Dryopteris dilatata; Dryopteris-type; Echinops; Echium; Ephedra distachya-type; Ephedra fragilis-type; Epilobium; Equisetum; Ericaceae undifferentiated; Eryngium; Euonymus; Eupatorium cannabinum-type; Euphorbia; Fabaceae undifferentiated; Fagus sylvatica; Falcaria vulgaris-type; Fallopia; Filipendula; Frangula alnus; Fraxinus excelsior; Fumaria; Galeopsis-type; Genista-type; Gentiana pneumonanthe-type; Geranium pusillum-type; Geum-type; Gratiola officinalis; Hedera helix; Helianthemum; Heracleum; Heracleum mantegazzianum; Heracleum sphondylium; Hippophae rhamnoides; Hordeum-type; Humulus/Cannabis; Humulus lupulus; Hydrocotyle vulgaris; Hyoscyamus niger; Hypericum; Hypericum perforatum-type; Ilex aquifolium; Impatiens; Indeterminata; Iris pseudacorus-type; Jasione montana-type; Juglans regia; Juniperus communis; Kickxia; Knautia; Lamiaceae; Lamium; Lamium album-type; Larix decidua-type; Lathyrus-type; Legousia; Leucojum-type; Ligustrum vulgare; Liliaceae; Linum catharticum-type; Linum usitatissimum-type; Littorella uniflora; Lonicera xylosteum-type; Lotus; Lycopodium (counted); Lycopodium annotinum; Lycopodium clavatum-type; Lycopodium undifferentiated; Lycopus/Mentha; Lysimachia vulgaris-type; Lythrum; Magnoliaceae; Maianthemum; Malus-type; Malva neglecta-type; Medicago lupulina-type; Melampyrum; Mentha-type; Menyanthes trifoliata; Mercurialis; Mindelsee; MINDGES5; Monolete spore(s); Myriophyllum spicatum; Myriophyllum verticillatum; Nuphar; Nymphaea; Nymphaeaceae: base-cells; Odontites-type; Olea europaea; Onobrychis; Ophioglossum vulgatum; Orlaya grandiflora; Ornithogalum umbellatum-type; Oxalis acetosella; Panicum-type; Papaver; Papaver rhoeas-type; Parnassia palustris; Pediastrum undifferentiated; Pedicularis; Peplis portula; Peucedanum palustre-type; Phyteuma-type; Picea abies; Pimpinella major-type; Pimpinella saxifraga-type; Pinus; Pinus cembra-type; Pinus sylvestris-type; Plantaginaceae; Plantago lanceolata; Plantago major; Plantago major/media; Plantago media; Platanus orientalis; Pleurospermum austriacum; Poaceae undifferentiated; Polemonium; Polygala comosa-type; Polygonatum verticillatum; Polygonum amphibium; Polygonum aviculare-type; Polygonum bistorta; Polypodiaceae: sporangia; Polypodiaceae undifferentiated; Polypodium vulgare; Populus; Potamogeton; Potentilla-type; Prunella-type; Prunus-type; Pteridium aquilinum; Pulsatilla-type; Quercus; Ranunculaceae; Ranunculus acris-type; Ranunculus arvensis; Reseda; Rhamnus; Rheum; Rhinanthus-type; Rhododendron; Rosa; Rosaceae undifferentiated; Rubiaceae; Rumex aquaticus-type; Rumex obtusifolius-type; Rumex undifferentiated; Ruta graveolens; Salix; Salvia officinalis-type; Salvia pratensis-type; Sambucus ebulus; Sambucus nigra/S. racemosa; Sample volume; Sanguisorba minor; Sanguisorba officinalis; Sanicula europaea; Scabiosa columbaria-type; Scabiosa-type; Scandix pecten-veneris; Scleranthus; Scrophulariaceae undifferentiated; Scrophularia-type; Secale cereale; Selinum carvifolia; Senecio-type; Silaum silaus; Silene dioica-type; Silene-type; Silene vulgaris-type; Solanum dulcamara; Sorbus-type; Sparganium; Sparganium-type; Spergula arvensis; Spergularia-type; Sphagnum; Spores; Spores, trilete; Succisa; Symphytum; Taxus baccata; Tetragonolobus maritimus; Thalictrum; Thelypteris palustris; Tilia; Torilis japonica; Trifolium pratense-type; Trifolium repens-type; Trifolium undifferentiated; Triticum-type; Trollius europaeus; Typha latifolia-type; Ulmus; Urtica; Urtica/Parietaria; Ustulina deusta; Utricularia; Vaccinium-type; Valeriana; Valeriana dioica; Valeriana montana-type; Valeriana officinalis-type; Varia; Verbascum; Veronica; Viburnum; Viburnum lantana; Viburnum opulus; Vicia faba; Vicia-type; Vincetoxicum hirundinaria; Viscum album; Vitis; Volume of spike added; Xanthium spinosum-type; Zea mays
    Type: Dataset
    Format: text/tab-separated-values, 123070 data points
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  • 12
    Publication Date: 2024-05-01
    Description: Here, we investigatethe impacts of moderate (~700 μmol/kg) and high (~2700 μmol/kg) limestone-inspired alkalinity additionson two biogeochemically and ecologically important phytoplankton functional group representatives: Emilianiahuxleyi (calcium carbonate producer) and Chaetoceros sp. (silica producer). The growth rate and elemental ratiosof both taxa were estimated.
    Keywords: Alkalinity, total; Ammonia; Aragonite saturation state; Area; Bacillariophyta; Bicarbonate ion; Biogenic silica; Biomass/Abundance/Elemental composition; Bottles or small containers/Aquaria (〈20 L); Calcification/Dissolution; Calcite saturation state; Calcium, dissolved; Calcium, particulate; Calcium chloride dihydrate; Calculated using CO2SYS; Calculated using seacarb after Nisumaa et al. (2010); Carbon, inorganic, dissolved; Carbon, inorganic, particulate, per cell; Carbon, organic, particulate; Carbon, organic, particulate, per cell; Carbon, organic, particulate mass; Carbonate ion; Carbonate system computation flag; Carbon dioxide; Cell density; Chaetoceros sp.; Chromista; Dry air column-averaged mole fraction of carbon dioxide; Emiliania huxleyi; Experiment; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Growth/Morphology; Haptophyta; Laboratory experiment; Laboratory strains; Mass; Maximum quantum yield of photosystem II; Nitrate and Nitrite; Nitrogen, inorganic, dissolved; Nitrogen, organic, particulate; Nitrogen, organic, particulate mass; Not applicable; OA-ICC; Ocean Acidification International Coordination Centre; Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); Particulate inorganic carbon/particulate organic carbon ratio; Pelagos; pH; pH, standard deviation; Phosphate; Phytoplankton; Potentiometric titration; Primary production/Photosynthesis; Revelle factor; Salinity; Sample code/label; Sampling date; Silicate; Single species; Sodium carbonate; Species; Spectrophotometric; Strain; Temperature, water; Temperature, water, standard deviation; Treatment; Type of study
    Type: Dataset
    Format: text/tab-separated-values, 9880 data points
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  • 13
    Publication Date: 2024-05-01
    Keywords: Aerangis brachycarpa; Aerangis luteo-alba; Aerangis thomsonii; Angraecum humile; Bulbophyllum intertextum; Bulbophyllum josephi; Bulbophyllum sp.; Circumference; Code; Diaphananthe candida; Diaphananthe fragrantissima; Diaphananthe rohrii; Diaphananthe tenuicalcar; Distance; Ethiopia; Event label; Ferns; Fetche; Garuke; Gera; HAND; Host tree; Identification; Microcoelia globulosa; Orchidaceae; Polystachya bennettiana; Polystachya caduca; Polystachya cultriformis; Polystachya eurychila; Polystachya sp.; Polystachya steudneri; Polystachya tessellata; Rhipidoglossum adoxum; Sampling by hand; Stolzia grandiflora; Stolzia repens; Tree height
    Type: Dataset
    Format: text/tab-separated-values, 11179 data points
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  • 14
    Publication Date: 2024-05-01
    Keywords: Abundance estimate; Acanthochiton adansoni; Acinopsis cancellata; Acinopsis cancellina; Acinopsis subcrenulata; Actaeon tornatilis; Acteocina knockeri; Alectrion (Zeuxis) antiquatus; Alectrion (Zeuxis) semistriatus; Alvania dictyophora; Alvaniella scabra; Aporrhais senegalensis; Asthenotoma (Drilliola) emendata; Atys brochii; BCR; Bela (Ishnula) turgida; Bela adansoni; Bela brachystoma; Bittium reticulatum; Box corer (Reineck); Bullia miran; Cadulus (Dischides) politus; Caecum (Brocchina) crassum; Caecum sp.; Calliostoma granulata; Calliostoma sp.; Calpodaspis pusilla punctata; Calyptraea chinensis; Cancellaria cancellata; Capulus hungaricus; Cavolinia longirostris; Cerithiella metula; Cerithiopsis minima; Cerithiopsis sp.; Cerithiopsis tubercularis; Charonia sp.; Chauvetia (Chauvetiella) vulpecula; Chauvetia (Donovaniella) minima; Chrysallida (Blesla) flexuosa; Chrysallida (Ividiella) excavata; Chrysallida (Perparthenina) indistincta; Circulus tricarinatus; Clanculus kraussi; Clavatula bimarginata; Clavatula sacerdos; Clavus (Crassopleura) maravignae; Couthouyia senegalensis; Crepidula porcellana; Cyclostrema annuliferum; Cymatium (Monoplex) parthenopaeum; Cymatium costatum; Cymatium tranquebaricum; Cymbium rubigniesum; Cyrbasia pulchella; Cythara (Cytharella) stossiciana; Cythara (Ithycythara) obtusa; Cythara (Lyromangelia) merlini; Cythara (Mangelia) attenuata; Dentalium (Antalis) congoensis; Dentalium (Antalis) senegalense; Dentalium (Antalis) sp.; DEPTH, sediment/rock; Desmoulea pinguis; Diaphana minuta; Diodora cf. graeca; Dredge, box; Dredge, frame; DRG_B; DRG_F; East Atlantic; Elevation of event; Epitonium (Hyaloscala) cf. clathratulum; Epitonium (Parviscala) cf. algerianum; Epitonium (Parviscala) cf. tiberii; Epitonium sp.; Erato voluta; Eulima (Baclis) polita; Eulima (Vitreolina) devians; Eulima (Vitreolina) monterosatoi; Eulimella cf. praelonga; Eulimella cf. scillae; Event label; Fossarus ambiguus; Fossarus sulcosus; Fulmentum sepimentum; Fusus (Sinistralia) maroccanus; Genota mitraeformis papilis; Gibberula chudeaui; Gibberula milliaria; Gibberula philippii; Gibberulina occulta; Gibbula cf. joubini; Gibbula umbilicaris; GIK/IfG; GIK12382-1; GIK12385-3; GIK12387-1; GIK12388-2; GIK12388-3; GIK12389-1; GIK12390-1; GIK12391-1; Gyrodisca seguenzianus; Hannonia tingitana; Hyalina (Volvarina) deliciosa; Hydrobia cf. acuta; Institute for Geosciences, Christian Albrechts University, Kiel; Ischnochiton cessaci; Jujubinus striatus; Laevidentalium rubescens tenuifissum; Lamellaria perspicua; Latitude of event; Leiostraca subulata; Littorina sp.; Longitude of event; Lunatia alderi; M25; Marginella cleryi; Marginella glabella; Marginella pseudofaba; Marginella rosea; Marginella sp.; Mathilda quadricarinata elegantissima; Mesalia brevialis; Meteor (1964); Murex (Bolinus) cornatus; Murex bourgeoisi; Nacca fulminea; Nacca fulminea cruentata; Nassa (Amyclina) sp.; Nassa (Amyclina) trifasciata; Nassa (Hima) denticulata; Nassa (Hima) incrassata; Nassa (Hima) reticulata; Naticarius cf. dillwyni; Naticarius fanel; Naticarius marochiensis; Nisso sp.; Odostomia (Jordaniella) marginata; Odostomia cf.. gilsoni; Opalia (Dentiscala) crenata; Peringia ulvae; Persicula cingulata; Persicula cornea; Philene (Hermania) catena; Philene aperta; Philippia pseudoperspectiva; Polynices lacteus; Pusula (Dolichupis) candidula; Putilla sp.; Raphitoma (Cirillia) linearis; Raphitoma (Philbertia) cf. haullevillei; Raphitoma (Philbertia) papillosa; Raphitoma (Philbertia) thielei; Raphitoma hystrix; Raphitoma reticulata; Raphitoma rudis cylindrica; Retusa truncatula; Rhizorus acuminatus; Ringicula conformis; Rissoa (Zippora) sp.; Scissurella costata; Selia carinata; Semicassis (Tylocassis) saburon; Semicassis (Tylocassis) undulata; Sigaretus bifasciatus; Skenopsis pellucida; Solariella dereimsi; Tectonatica adansoni; Tectonatic flammulata; Terebra senegalensis; Thais (Stramonita) haemastoma; Torinia malani; Tornus subcarinatus; Tricolia pulla; Triphora perversa; Tritonalia decussata; Tudicla porphyrostoma; Turboella (Mutiturboella) prismatica; Turboella cf. plicatula; Turboella radiata; Turbona cf. subsoluta; Turbonilla (Chemnitzia) campanellae; Turbonilla (Pyrgiscus) formosa; Turbonilla (Pyrgiscus) rufa; Turbonilla sp.; Turris undatiruga; Turritella cf. praetermissa; Turritella meta; Turritella torulosa; Turritella ungulina; Typhis (Typhinellus) tetrapterus; van Veen Grab; VGRAB; Xenophora senegalensis
    Type: Dataset
    Format: text/tab-separated-values, 433 data points
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  • 15
    Publication Date: 2024-05-01
    Keywords: Agrostis mertensii; Agrostis mertensii, standard deviation; Alchemilla alpina; Alchemilla alpina, standard deviation; Antennaria alpina; Antennaria alpina, standard deviation; Anthoxanthum nipponicum; Anthoxanthum nipponicum, standard deviation; Astragalus alpinus; Astragalus alpinus, standard deviation; Bartsia alpina; Bartsia alpina, standard deviation; Betula nana; Betula nana, standard deviation; BIO; Biology; Bistorta vivipara; Bistorta vivipara, standard deviation; Calamagrostis lapponica; Calamagrostis lapponica, standard deviation; Calamagrostis neglecta; Calamagrostis neglecta, standard deviation; Cardamine pratensis, standard deviation; Cardamine pratensis angustifolia; Carex bigelowii; Carex bigelowii, standard deviation; Carex sp.; Carex sp., standard deviation; Carex vaginata; Carex vaginata, standard deviation; Cassiope hypnoides; Cassiope hypnoides, standard deviation; Coeloglossum viride; Coeloglossum viride, standard deviation; Comarum palustre; Comarum palustre, standard deviation; Corallorhiza trifida; Corallorhiza trifida, standard deviation; DATE/TIME; Deschampsia alpina; Deschampsia alpina, standard deviation; Deschampsia flexuosa; Deschampsia flexuosa, standard deviation; Empetrum hermaphroditum; Empetrum hermaphroditum, standard deviation; Epilobium sp.; Epilobium sp., standard deviation; Equisetum arvense; Equisetum arvense, standard deviation; Equisetum palustre; Equisetum palustre, standard deviation; Equisetum pratense; Equisetum pratense, standard deviation; Equisetum scirpoides; Equisetum scirpoides, standard deviation; Eriophorum angustifolium; Eriophorum angustifolium, standard deviation; Euphrasia wettsteinii; Euphrasia wettsteinii, standard deviation; Festuca ovina; Festuca ovina, standard deviation; Festuca rubra; Festuca rubra, standard deviation; Gentiana nivalis; Gentiana nivalis, standard deviation; Gnaphalium supinum; Gnaphalium supinum, standard deviation; Hieracium sp.; Hieracium sp., standard deviation; Huperzia selago; Huperzia selago, standard deviation; Juncus biglumis; Juncus biglumis, standard deviation; Juniperus communis; Juniperus communis, standard deviation; Lapland, northern Sweden; Leontodon autumnalis; Leontodon autumnalis, standard deviation; Luzula multiflora, standard deviation; Luzula multiflora frigida; Parnassia palustris; Parnassia palustris, standard deviation; Petasites frigidus; Petasites frigidus, standard deviation; Phleum alpinum; Phleum alpinum, standard deviation; Pinguicula alpina; Pinguicula alpina, standard deviation; PMK_Patjujaure; Poa alpina; Poa alpina, standard deviation; Poa arctica; Poa arctica, standard deviation; Potentilla Crantzii; Potentilla crantzii, standard deviation; Pyrola minor; Pyrola minor, standard deviation; Ranunculus spp.; Ranunculus spp., standard deviation; Rumex acetosella; Rumex acetosella, standard deviation; Salix arbuscula; Salix arbuscula, standard deviation; Salix glauca; Salix glauca, standard deviation; Salix herbacea; Salix herbacea, standard deviation; Salix lanata; Salix lanata, standard deviation; Salix polaris; Salix polaris, standard deviation; Salix reticulata; Salix reticulata, standard deviation; Saussurea alpina; Saussurea alpina, standard deviation; Selaginella selaginoides; Selaginella selaginoides, standard deviation; Sibbaldia procumbens; Sibbaldia procumbens, standard deviation; Taraxacum spp.; Taraxacum spp., standard deviation; Thalictrum alpinum; Thalictrum alpinum, standard deviation; Tofieldia pusilla; Tofieldia pusilla, standard deviation; Trollius europaeus; Trollius europaeus, standard deviation; Vaccinium myrtillus; Vaccinium myrtillus, standard deviation; Vaccinium uliginosum; Vaccinium uliginosum, standard deviation; Vaccinium vitis-idaea; Vaccinium vitis-idaea, standard deviation; Veronica alpina; Veronica alpina, standard deviation; Viola biflora; Viola biflora, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 528 data points
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  • 16
    Publication Date: 2024-05-01
    Description: This study was designed to assess the physiological cost of resilience to acidification in the hard clam (Mercenaria mercenaria, also known as northern quahog). We examined growth and susceptibility to bacterial infection of larval and juvenile clams reared in seawater with altered pCO2. We specifically focused on changes in immune performances, measured as alterations of resistance of larvae and juveniles towards opportunistic Vibrio spp., among clams exposed to acidified seawater. By examining different life history stages, we were able to document differences in exposure time to acidification as well as potential carry-over effects. To determine if increased susceptibility to infection was direct or indirect, we examined the response of the Vibrio species used in the bacterial challenge to different pH treatments and their native presence in the treatment tanks prior to bacterial challenges. Furthermore, we determined if reduced immune function induced by exposure to acidification was permanent or if clams can rebound and restore immunity after transfer to low pCO2/high pH conditions (indicating a plastic response and/or a selection event) and if early survival in OA conditions was related to success at later stages (through either acclimation or carry over effects).
    Keywords: Alkalinity, total; Alkalinity, total, standard deviation; Animalia; Aragonite saturation state; Aragonite saturation state, standard deviation; Bacteria; Bacteria, abundance in colony forming units; Bacterial abundance, standard deviation; Benthic animals; Benthos; Bicarbonate ion; Bicarbonate ion, standard deviation; Biomass/Abundance/Elemental composition; Calcite saturation state; Calcite saturation state, standard deviation; Calculated using seacarb after Nisumaa et al. (2010); Calculated using seacarb after Orr et al. (2018); Calculated with seacarb package in R; Carbon, inorganic, dissolved; Carbon, inorganic, dissolved, standard deviation; Carbonate ion; Carbonate ion, standard deviation; Carbonate system computation flag; Carbon dioxide; Carbon dioxide, standard deviation; Coast and continental shelf; Containers and aquaria (20-1000 L or 〈 1 m**2); Duration; Entire community; EXP; Experiment; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Fugacity of carbon dioxide in seawater, standard deviation; Growth/Morphology; Hampton_Bays; Heterotrophic prokaryotes; Immunology/Self-protection; Individuals; Laboratory experiment; Length; Mercenaria mercenaria; Mollusca; Mortality/Survival; North Atlantic; Northport; OA-ICC; Ocean Acidification International Coordination Centre; Other; Partial pressure of carbon dioxide, standard deviation; Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); Pelagos; pH; pH, standard deviation; Proteobacteria; Riverhead_OA; Salinity; Salinity, standard deviation; Single species; Species, unique identification; Species, unique identification (Semantic URI); Species, unique identification (URI); Temperate; Temperature, water; Temperature, water, standard deviation; Time in days; Time in hours; Treatment; Type of study; Vibrio sp.; Wellfleet; Width; Zooplankton
    Type: Dataset
    Format: text/tab-separated-values, 1334 data points
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  • 17
    Publication Date: 2024-05-01
    Keywords: Aerangis brachycarpa; Aerangis luteo-alba; Aerangis thomsonii; Angraecum humile; Bulbophyllum intertextum; Bulbophyllum josephi; Bulbophyllum sp.; Circumference; Diaphananthe candida; Diaphananthe fragrantissima; Diaphananthe rohrii; Diaphananthe tenuicalcar; Ethiopia; HAND; Identification; Land use; Microcoelia globulosa; Polystachya bennettiana; Polystachya caduca; Polystachya cultriformis; Polystachya eurychila; Polystachya sp.; Polystachya steudneri; Polystachya tessellata; Rhipidoglossum adoxum; Sampling by hand; Stolzia grandiflora; Stolzia repens; SW_Ethiopia; Tree height
    Type: Dataset
    Format: text/tab-separated-values, 8814 data points
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  • 18
    Publication Date: 2024-05-01
    Keywords: Aerangis brachycarpa; Aerangis luteo-alba; Aerangis thomsonii; Angraecum humile; Bulbophyllum intertextum; Bulbophyllum josephi; Bulbophyllum sp.; Circumference; Diaphananthe candida; Diaphananthe fragrantissima; Diaphananthe rohrii; Diaphananthe tenuicalcar; Ethiopia; HAND; Identification; Land use; Microcoelia globulosa; Polystachya bennettiana; Polystachya caduca; Polystachya cultriformis; Polystachya eurychila; Polystachya sp.; Polystachya steudneri; Polystachya tessellata; Rhipidoglossum adoxum; Sampling by hand; Shrubs; Stolzia grandiflora; Stolzia repens; SW_Ethiopia; Tree height
    Type: Dataset
    Format: text/tab-separated-values, 9153 data points
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  • 19
    Publication Date: 2024-05-01
    Keywords: Aerangis brachycarpa; Aerangis luteo-alba; Aerangis thomsonii; Angraecum humile; Bulbophyllum intertextum; Bulbophyllum josephi; Bulbophyllum sp.; Diaphananthe candida; Diaphananthe fragrantissima; Diaphananthe rohrii; Diaphananthe tenuicalcar; Ethiopia; HAND; Identification; Microcoelia globulosa; Polystachya bennettiana; Polystachya caduca; Polystachya cultriformis; Polystachya eurychila; Polystachya sp.; Polystachya steudneri; Polystachya tessellata; Rhipidoglossum adoxum; Sampling by hand; Stolzia grandiflora; Stolzia repens; SW_Ethiopia; Zone
    Type: Dataset
    Format: text/tab-separated-values, 13343 data points
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  • 20
    Publication Date: 2024-05-01
    Keywords: Aerangis brachycarpa; Aerangis luteo-alba; Aerangis thomsonii; Angraecum humile; Bulbophyllum intertextum; Bulbophyllum josephi; Bulbophyllum sp.; Diaphananthe candida; Diaphananthe fragrantissima; Diaphananthe rohrii; Diaphananthe tenuicalcar; Ethiopia; HAND; Identification; Microcoelia globulosa; Polystachya bennettiana; Polystachya caduca; Polystachya cultriformis; Polystachya eurychila; Polystachya sp.; Polystachya steudneri; Polystachya tessellata; Rhipidoglossum adoxum; Sampling by hand; Stolzia grandiflora; Stolzia repens; SW_Ethiopia; Zone
    Type: Dataset
    Format: text/tab-separated-values, 19200 data points
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  • 21
    Publication Date: 2024-05-01
    Keywords: Achillea millefolium; Agrostis capillaris; Agrostis stolonifera; Alchemilla vulgaris; Alopecurus pratensis; Angelica sylvestris; Anthoxanthum odoratum; Arrhenatherum elatius; Bellis perennis; Betonica officinalis; Bistorta officinalis; Brassica rapa; Briza minor; Capsella bursa-pastori; Carex flacca; Carex hostiana; Carex spp.; Carum carvi; Centaurea pseudophrygia; Cerastium holosteoides; Cirsium oleraceum; Cirsium rivulare; Crepis biennis; Crepis mollis; Crepis spp.; Cynosurus cristatus; Dactylis glomerata; Dactylorhiza incarnata; Dactylorhiza lapponica; Date/Time of event; Epipactis palustris; Equisetum palustre; Eriophorum latifolium; Event label; Festuca pratensis; Festuca rubra; Filipendula ulmaria; Galium album; Geum rivale; grassland type; Heracleum sphondylium; Holcus lanatus; Hypericum perforatum; Hypochaeris radicata; Koeleria pyramidata; Lathyrus pratensis; Latitude of event; Leontodon autumnalis; Leucanthemum ircutianum; Linum catharticum; Lolium multiflorum; Lolium perenne; Longitude of event; Lotus corniculatus; Lychnis flos-cuculi; managed grassland; mesic grassland; MULT; Multiple investigations; Myosotis scorpioides; Phleum pratensis; Pimpinella saxifraga; Plantago lanceolata; Plantago major; Poa pratensis; Potentilla reptans; Potentilla vulgaris; Prunella vulgaris; Ranunculus acris; Ranunculus repens; Rhinanthus minor; Rhinanthus serotinus; Rumex acetosa; Rumex crispus; Rumex obtusifolius; Salix repens; Scabiosa columbaria; Site; Southern Germany; Species richness; Sphagnum spp.; Stellaria media; Subplot; Succisa pratensis; SUSALPS; SUSALPS-RS2020_EL1; SUSALPS-RS2020_EL2; SUSALPS-RS2020_EL3; SUSALPS-RS2020_FE1; SUSALPS-RS2020_FE2; SUSALPS-RS2020_FE3; SUSALPS-RS2020_FE4; SUSALPS-RS2020_RB1; SUSALPS-RS2020_RB2; SUSALPS-RS2020_RB3; Sustainable use of alpine and pre-alpine grassland soils in a changing climate; Tarraxacum officinalis; temperate grassland; TERENO; Terrestrial Environmental Observatories; Trifolium dubium; Trifolium pratense; Trifolium pratensis; Trifolium repens; Trisetum flavescens; Type; Valeriana dioica; vegetation survey; Veronica arvensis; Veronica chamaedrys; Veronica filiformis; Vicia spp.; Visual estimation
    Type: Dataset
    Format: text/tab-separated-values, 870 data points
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  • 22
    Publication Date: 2024-05-01
    Keywords: 13C composition; African Humid Period; AGE; Core; CORE; Cyclization ratio of branched tetraethers; DEPTH, sediment/rock; HPLC-MS according to Naafs et al. (2017); isomer ratios; lipid biomarkers; NGaoundaba peatland, Northeastern Cameroon; NGBA19; pH; pH reconstruction
    Type: Dataset
    Format: text/tab-separated-values, 144 data points
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  • 23
    Publication Date: 2024-05-01
    Keywords: 13C composition; African Humid Period; AGE; C30 alpha beta-Hopane, per unit mass total organic carbon; C30 beta beta-Hopane, per unit mass total organic carbon; C30 hopane beta beta/(beta beta+alpha beta) ratio; C31 22S/(22S+22R); C31 alpha beta R homohopane, per unit mass total organic carbon; C31 alpha beta S homohopane, per unit mass total organic carbon; C31 beta beta-Hopane, per unit mass total organic carbon; C31 hopane beta beta/alpha beta+beta beta ratio; Calculated according to Mackenzie et al. (1980); Core; CORE; DEPTH, sediment/rock; isomer ratios; lipid biomarkers; NGaoundaba peatland, Northeastern Cameroon; NGBA19; pH; pH calibration according to Inglis et al. (2018); pH reconstruction
    Type: Dataset
    Format: text/tab-separated-values, 524 data points
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  • 24
    Publication Date: 2024-05-01
    Description: Radiocarbon dating performed on the total organic carbon content of 40 bulk sediments, measured at the MICADAS (Mini Carbon Dating System) Laboratory of AWI in Bremerhaven.
    Keywords: Accelerator mass spectrometry, Ionplus, Mini Carbon Dating System (MiCaDaS AWI); Age, 14C calibrated; Age, dated; Age, dated material; Age, dated standard deviation; AWI Arctic Land Expedition; Calendar age, maximum/old; Calendar age, minimum/young; DEPTH, sediment/rock; EN21103; Laboratory code/label; Lake sediment core; Lake Ulu; Oymyakon; Piston coring system, UWITEC Niederreiter, HYBRID 90 mm UHP 30450; radiocarbon age; RU-Land_2021_Yakutia; Siberia; Yakutsk
    Type: Dataset
    Format: text/tab-separated-values, 240 data points
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  • 25
    Publication Date: 2024-05-01
    Keywords: 13C composition; African Humid Period; AGE; C31 alpha beta-Hopane, δ13C; C31 alpha beta-Hopane, δ13C standard deviation; C31 beta beta-Hopane, δ13C; C31 beta beta-Hopane, δ13C, standard deviation; Core; CORE; DEPTH, sediment/rock; Gas chromatography - isotope ratio mass spectrometry (GC-IRMS); Gas chromatography - isotope ratio mass spectrometry (GC-IRMS), based on duplicate analyses; isomer ratios; lipid biomarkers; NGaoundaba peatland, Northeastern Cameroon; NGBA19; pH reconstruction
    Type: Dataset
    Format: text/tab-separated-values, 170 data points
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  • 26
    Publication Date: 2024-05-01
    Description: Element composition including total carbon (TC), total organic carbon (TOC), total inorganic carbon (TIC), and total nitrogen (TN), measured with a soli TOC cube (Elementar) and a rapid MAX N exceed (Elementar) at the Carbon and Nitrogen Laboratory of AWI in Potsdam. The minimum detectable concentration for natural sediment samples is 0.1% for both machines.
    Keywords: AGE; AWI Arctic Land Expedition; Carbon, inorganic, total; Carbon, organic, total; Carbon, total; Carbon Analyzer, Elementar, soli TOC cube; DEPTH, sediment/rock; EN21103; Geochemical proxies; Lake sediment core; Lake Ulu; Nitrogen, total; Nitrogen Analyzer, Elementar, rapid MAX N exceed; Oymyakon; Piston coring system, UWITEC Niederreiter, HYBRID 90 mm UHP 30450; radiocarbon age; RU-Land_2021_Yakutia; Siberia; TC; TIC; TN; TOC; Yakutsk
    Type: Dataset
    Format: text/tab-separated-values, 288 data points
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  • 27
    Publication Date: 2024-05-01
    Description: This model was established based on the Bayesian method with a hiatus at 138 cm and calibrated using the IntCal20 dataset via the Bacon function in the R-package rbacon. A reservoir effect of approximately 351 ± 24 radiocarbon years has been determined by the dated surface sample (0−0.5 cm). We assumed a constant reservoir effect over time and therefore subtracted a value of 351 years from all radiocarbon ages.
    Keywords: Age model, Bacon (Blaauw & Christen, 2011); AWI Arctic Land Expedition; Calendar age; DEPTH, sediment/rock; EN21103; Geochemical proxies; Lake sediment core; Lake Ulu; Oymyakon; Piston coring system, UWITEC Niederreiter, HYBRID 90 mm UHP 30450; radiocarbon age; RU-Land_2021_Yakutia; Siberia; Yakutsk
    Type: Dataset
    Format: text/tab-separated-values, 2184 data points
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  • 28
    Publication Date: 2024-05-01
    Description: Stable carbon isotopes of organic matter (d13C), measured with a Delta V Advantage Mass Spectrometer at the ISOLAB Facility of AWI in Potsdam. All isotopic values are reported in standard δ-notation in per mil (‰) relative to VPDB.
    Keywords: AGE; AWI Arctic Land Expedition; d13C; DEPTH, sediment/rock; EN21103; Geochemical proxies; Lake sediment core; Lake Ulu; Mass spectrometer Thermo Delta V Advantage; Oymyakon; Piston coring system, UWITEC Niederreiter, HYBRID 90 mm UHP 30450; RU-Land_2021_Yakutia; Siberia; TOC; Yakutsk; δ13C, organic carbon
    Type: Dataset
    Format: text/tab-separated-values, 53 data points
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  • 29
    Publication Date: 2024-05-01
    Description: X-ray fluorescence (XRF) scanning data, scanned with an AvaaTech XRF core scanner at AWI in Potsdam. All elements were measured at X-ray voltages of 10 kV and 30 kV and currents of 0.45 mA and 0.15 mA, respectively, with a step size of 0.5 cm and an exposure time of 10 s. The data are semiquantitative and provide relative fluctuations in the chemical element compositions as counts per second (cps).
    Keywords: AGE; Aluminium; Argon; AWI Arctic Land Expedition; Bromine; Calcium; Chlorine; Copper; DEPTH, sediment/rock; EN21103; Geochemical proxies; Iron; Lake sediment core; Lake Ulu; Magnesium; Manganese; Molybdenum; Nickel; Niobium; Oymyakon; Phosphorus; Piston coring system, UWITEC Niederreiter, HYBRID 90 mm UHP 30450; Potassium; Rhodium, coherent scattering intensity; Rhodium, incoherent scattering intensity; Rubidium; RU-Land_2021_Yakutia; Siberia; Silicon; Strontium; Sulfur; Titanium; Vanadium; X-ray fluorescence core scanner (XRF), Avaatech; XRF; Yakutsk; Yttrium; Zinc; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 57078 data points
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  • 30
    Publication Date: 2024-05-01
    Description: We used a 1D numerical model constrained by radar horizons to find the age-depth profile at the European Beyond EPICA - Oldest Ice project drill site (BELDC; 75.29917 °S, 122.44516 °E) on Little Dome C (LDC), Antarctica. Further details on the model can be found in the associated publication: Chung et al., 2023 (The Cryosphere). The model was constrained by 20 horizons from the radar survey conducted over the Dome C region conducted by the British Antarctic Survey over the 2016-17 and 2017-18 Antarctic field seasons using the sledge-borne DEep LOoking Radio Echo Sounder (DELORES; Mulvaney et al., 2023). The age-depth profile extends to the deepest point where modelled age density 〈 20 ka/m - the threshold for which a paleoclimatic signal can reasonably be extracted.
    Keywords: Accumulation rate in ice equivalent per year; Age, 1D numerical model; Age density; BELDC_site; BE-OI; Beyond EPICA drill site; Beyond EPICA - Oldest Ice; DEPTH, ice/snow; Ice age; Ice age, uncertainty; MULT; Multiple investigations; Thinning function; Velocity, vertical
    Type: Dataset
    Format: text/tab-separated-values, 5316 data points
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  • 31
    Publication Date: 2024-05-01
    Description: We used a 1D numerical model constrained by radar horizons to find the age-depth profile at the European Beyond EPICA - Oldest Ice project drill site (BELDC; 75.29917 °S, 122.44516 °E) on Little Dome C (LDC), Antarctica. Further details on the model can be found in the associated publication: Chung et al., 2023 (The Cryosphere). The model was constrained by 19 horizons from the radar survey conducted during the 2019-20 Antarctic field season in a collaboration between the University of Alabama (UA), the University of Copenhagen (CPH) and the Alfred Wegener Institute (AWI), using the Little Dome C-Very High Frequency radar system (LDC-VHF; Chung et al., 2023, PANGAEA).. The age-depth profile extends to the deepest point where modelled age density 〈 20 ka/m - the threshold for which a paleoclimatic signal can reasonably be extracted.
    Keywords: Accumulation rate in ice equivalent per year; Age, 1D numerical model; Age density; BELDC_site; BE-OI; Beyond EPICA drill site; Beyond EPICA - Oldest Ice; DEPTH, ice/snow; Ice age; Ice age, uncertainty; MULT; Multiple investigations; Thinning function; Velocity, vertical
    Type: Dataset
    Format: text/tab-separated-values, 5268 data points
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  • 32
    Publication Date: 2024-05-01
    Description: We used a 1D numerical model constrained by radar horizons to find the age-depth profile at the the Australian Million Year Ice Core project drill site (MYIC; 75.34132 °S, 122.52059 °E) on Little Dome C (LDC), Antarctica. Further details on the model can be found in the associated publication: Chung et al., 2023 (The Cryosphere). The model was constrained by 19 horizons from the radar survey conducted during the 2019-20 Antarctic field season in a collaboration between the University of Alabama (UA), the University of Copenhagen (CPH) and the Alfred Wegener Institute (AWI), using the Little Dome C-Very High Frequency radar system (LDC-VHF; Chung et al., 2023, PANGAEA).. The age-depth profile extends to the deepest point where modelled age density 〈 20 ka/m - the threshold for which a paleoclimatic signal can reasonably be extracted.
    Keywords: Accumulation rate in ice equivalent per year; Age, 1D numerical model; Age density; BE-OI; Beyond EPICA - Oldest Ice; DEPTH, ice/snow; Ice age; Ice age, uncertainty; Million Year Ice Core drill site; MULT; Multiple investigations; MYIC_site; Thinning function; Velocity, vertical
    Type: Dataset
    Format: text/tab-separated-values, 5998 data points
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  • 33
    Publication Date: 2024-05-01
    Description: Raw major element oxide data for volcanic events analysed from B19 [78.00°N/36.40°W], TUNU2013 [78.04°N/33.88°W], and RECAP [71.3°N/26.7°W] ice cores (Greenland) across the period 750-940 CE. Data was obtained using electron probe micro-analysis (EPMA) at the University of Bern, Switzerland, Queen's University Belfast, UK, and University of Edinburgh, UK. Sample ID, sample depth (m), raw oxide values, and correlating horizon are provided.
    Keywords: Aluminium oxide; B19; Calcium oxide; Date; DEPTH, ice/snow; Depth, ice/snow, bottom/maximum; Depth, ice/snow, top/minimum; Electron Probe Microanalysis (EPMA); Event label; Geochemistry; Greenland; Ice core; ICEDRILL; Ice drill; Iceland; Iron oxide, FeO; Laboratory; Latitude of event; Longitude of event; Magnesium oxide; Manganese oxide; ngt19C93.2; NorthGreenlandTraverse; Oxides, total; Phosphorus pentoxide; Potassium oxide; RECAP; Renland Ice Cap, East Greenland; Sample ID; Sampling/drilling from ice; Silicon dioxide; Sodium oxide; Tephra; Tephra correlative; Titanium dioxide; Tunu13; TUNU2013
    Type: Dataset
    Format: text/tab-separated-values, 2890 data points
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  • 34
    Publication Date: 2024-05-01
    Description: We used a 1D numerical model constrained by radar horizons to find the age-depth profile at the the Australian Million Year Ice Core project drill site (MYIC; 75.34132 °S, 122.52059 °E) on Little Dome C (LDC), Antarctica. Further details on the model can be found in the associated publication: Chung et al., 2023 (The Cryosphere). The model was constrained by 20 horizons from the radar survey conducted over the Dome C region conducted by the British Antarctic Survey over the 2016-17 and 2017-18 Antarctic field seasons using the sledge-borne DEep LOoking Radio Echo Sounder (DELORES; Mulvaney et al., 2023). The age-depth profile extends to the deepest point where modelled age density 〈 20 ka/m - the threshold for which a paleoclimatic signal can reasonably be extracted.
    Keywords: Accumulation rate in ice equivalent per year; Age, 1D numerical model; Age density; BE-OI; Beyond EPICA - Oldest Ice; DEPTH, ice/snow; Ice age; Ice age, uncertainty; Million Year Ice Core drill site; MULT; Multiple investigations; MYIC_site; Thinning function; Velocity, vertical
    Type: Dataset
    Format: text/tab-separated-values, 5268 data points
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  • 35
    Publication Date: 2024-05-01
    Description: Raw major element oxide data for volcanic events analysed from two proximal sites from Iceland across the period 750-940 CE. Tephra (ash) samples were taken from soil outcrops in Iceland [Atley, 63.67295°N/18.68231°W; Quarry Hafid, 64.054°N/19.786°W] for candidate events and this material was analysed using electron probe micro-analysis (EPMA) at the University of Bern, Switzerland. The location of the outcrop, sample depth, raw oxide values, and correlating horizon are provided.
    Keywords: Aluminium oxide; Atley; Calcium oxide; Date; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Electron Probe Microanalysis (EPMA); Event label; Geochemistry; Greenland; Ice core; Iceland; Iron oxide, FeO; Laboratory; Latitude of event; Longitude of event; Magnesium oxide; Manganese oxide; Oxides, total; Phosphorus pentoxide; Potassium oxide; Quarry_Hafid; Sample ID; Silicon dioxide; Site; Sodium oxide; Soil outcrop; Tephra; Tephra correlative; Titanium dioxide
    Type: Dataset
    Format: text/tab-separated-values, 2682 data points
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  • 36
    Publication Date: 2024-05-01
    Description: Raw Trace element data of analysed proximal samples from Iceland across the period 751-763 CE. Tephra (ash) samples were taken from a soil outcrop in Iceland [Atley, Iceland; 63.67295°N/18.68231°W] for candidate events. Trace element data was obtained by LA-ICP-MS at the University of St Andrews using a beam diameter of 20µm, laser energy of 3.5 J cm-2 (4 Hz repetition rate), 30-s ablation time and 20-s background measurement.
    Keywords: Atley; Barium; Cerium; Date; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Dysprosium; Erbium; Europium; Event label; Gadolinium; Geochemistry; Greenland; Hafnium; Holmium; Ice core; Iceland; Laboratory; LA-ICP-MS, Laser-ablation inductively coupled plasma mass spectrometer; Lanthanum; Latitude of event; Lead; Longitude of event; Lutetium; Neodymium; Niobium; Praseodymium; Rubidium; Samarium; Sample ID; Site; Soil outcrop; Strontium; Tantalum; Tephra; Tephra correlative; Terbium; Thorium; Thulium; Uranium; Ytterbium; Yttrium; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 5664 data points
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  • 37
    Publication Date: 2024-05-01
    Description: Secondary Standards of Cannetto Lami Lava, Lipari and BCR-2Ga for major element oxide tephra glass analyses obtained across the period 750-940 CE. Data was obtained using electron probe micro-analysis (EPMA) at the University of Bern, Switzerland, Queen's University Belfast, UK, and University of Edinburgh, UK.
    Keywords: Accelerating voltage; Aluminium oxide; Beam current; Beam size; Calcium oxide; Chlorine; Date; Electron Probe Microanalysis (EPMA); Geochemistry; Greenland; Ice core; Iceland; Identification; Iron oxide, FeO; Laboratory; Magnesium oxide; Manganese oxide; Oxides, total; Phosphorus pentoxide; Potassium oxide; Silicon dioxide; Sodium oxide; Standard; Tephra; Titanium dioxide
    Type: Dataset
    Format: text/tab-separated-values, 3411 data points
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  • 38
    Publication Date: 2024-05-01
    Description: Secondary Standards of Old Crow, Sheep Track, ML3B, NIST610, and T1G for Trace element glass analyses obtained across the period 751-763 CE. Analyses were obtained by LA-ICP-MS at the University of St Andrews, UK.
    Keywords: Barium; Beam size; Caesium; Cerium; Date; Dysprosium; Energy, laser; Erbium; Europium; Gadolinium; Geochemistry; Greenland; Hafnium; Holmium; Ice core; Iceland; Identification; Laboratory; LA-ICP-MS, Laser-ablation inductively coupled plasma mass spectrometer; Lanthanum; Lead; Lutetium; Neodymium; Niobium; Praseodymium; Repetition rate; Rubidium; Samarium; Standard; Strontium; Tantalum; Tephra; Terbium; Thorium; Thulium; Time, ablation; Time, background measurement; Uranium; Ytterbium; Yttrium; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 3710 data points
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  • 39
    Publication Date: 2024-05-01
    Description: Raw Trace element data of analysed ice core samples from B19 [78.00°N/36.40°W] and TUNU2013 [78.04°N/33.88°W] ice cores (Greenland) across the period 751-763 CE. Trace element data was obtained by LA-ICP-MS at the University of St Andrews, UK using a beam diameter of 20µm, laser energy of 3.5 J cm-2 (4 Hz repetition rate), 30-s ablation time and 20-s background measurement.
    Keywords: B19; Barium; Cerium; Date; DEPTH, ice/snow; Depth, ice/snow, bottom/maximum; Depth, ice/snow, top/minimum; Dysprosium; Erbium; Europium; Event label; Gadolinium; Geochemistry; Greenland; Hafnium; Holmium; Ice core; ICEDRILL; Ice drill; Iceland; Laboratory; LA-ICP-MS, Laser-ablation inductively coupled plasma mass spectrometer; Lanthanum; Latitude of event; Lead; Longitude of event; Lutetium; Neodymium; ngt19C93.2; Niobium; NorthGreenlandTraverse; Praseodymium; Rubidium; Samarium; Sample ID; Sampling/drilling from ice; Strontium; Tantalum; Tephra; Tephra correlative; Terbium; Thorium; Thulium; Tunu13; TUNU2013; Uranium; Ytterbium; Yttrium; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 1665 data points
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  • 40
    facet.materialart.
    Unknown
    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Description: This is a compilation of all short-wave and long-wave radiation datasets from Ny-Ålesund that were and are published in the frame of BSRN. New data will be added regularly. The data are subject to the data release guidelines of BSRN (https://bsrn.awi.de/data/conditions-of-data-release/).
    Keywords: Baseline Surface Radiation Network; BSRN
    Type: Dataset
    Format: application/zip, 215 datasets
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  • 41
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Henkel, Susann; Kasten, Sabine; Hartmann, Jan; Silva Busso, A; Staubwasser, Michael (2018): Iron cycling and stable Fe isotope fractionation in Antarctic shelf sediments, King George Island. Geochimica et Cosmochimica Acta, https://doi.org/10.1016/j.gca.2018.06.042
    Publication Date: 2024-04-30
    Description: Geochemical data were gained for short sediment cores from Maxwell Bay and Potter Cove (King George Island, Antarctica) in 2012 and 2013. We investigated the influence of different iron transport pathways and their effect on the early diagenetic cycling of this nutrient. The dataset includes pore water data (alkalinity, sulfate, Fe2+, NH4+) for 14 sites and solid phase data (including stable iron isotope data for sequentially extracted Fe pools) as well as pore water stable iron isotope data for two contrasting sites: one located at the glacier terminus and the other one at the discharge of a surficial oxic meltwater stream draining the ice-free Potter Peninsula.
    Keywords: GCUWI; Gravity corer, UWITEC; IMCOAST/IMCONet; Impact of climate induced glacier melt on marine coastal systems, Antarctica; Maxwell_Bay_STA05; Maxwell_Bay_STA06; Maxwell_Bay_STA08; Maxwell_Bay_STA09; Maxwell Bay, King George Island, Antarctic Peninsula; Potter_Cove_STA01; Potter_Cove_STA03; Potter_Cove_STA04; Potter_Cove_STA10; Potter_Cove_STA11; Potter_Cove_STA13; Potter_Cove_STA14; Potter_Cove_STA15; Potter_Cove_STA16; Potter_Cove_STA17; Potter Cove, King George Island, Antarctic Peninsula; Priority Programme 1158 Antarctic Research with Comparable Investigations in Arctic Sea Ice Areas; PUC; Push corer; SPP1158
    Type: Dataset
    Format: application/zip, 16 datasets
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  • 42
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Henkel, Susann; Kasten, Sabine; Poulton, Simon W; Staubwasser, Michael (2016): Determination of the stable iron isotopic composition of sequentially leached iron phases in marine sediments. Chemical Geology, 421, 93-102, https://doi.org/10.1016/j.chemgeo.2015.12.003
    Publication Date: 2024-04-30
    Description: Reactive iron (oxyhydr)oxide minerals preferentially undergo early diagenetic redox cycling which can result in the production of dissolved Fe(II), adsorption of Fe(II) onto particle surfaces, and the formation of authigenic Fe minerals. The partitioning of iron in sediments has traditionally been studied by applying sequential extractions that target operationally-defined iron phases. Here, we complement an existing sequential leaching method by developing a sample processing protocol for d56Fe analysis, which we subsequently use to study Fe phase-specific fractionation related to dissimilatory iron reduction in a modern marine sediment. Carbonate-Fe was extracted by acetate, easily reducible oxides (e.g. ferrihydrite and lepidocrocite) by hydroxylamine-HCl, reducible oxides (e.g. goethite and hematite) by dithionite-citrate, and magnetite by ammonium oxalate. Subsequently, the samples were repeatedly oxidized, heated and purified via Fe precipitation and column chromatography. The method was applied to surface sediments collected from the North Sea, south of the Island of Helgoland. The acetate-soluble fraction (targeting siderite and ankerite) showed a pronounced downcore d56Fe trend. This iron pool was most depleted in 56Fe close to the sediment-water interface, similar to trends observed for pore-water Fe(II). We interpret this pool as surface-reduced Fe(II), rather than siderite or ankerite, that was open to electron and atom exchange with the oxide surface. Common extractions using 0.5 M HCl or Na-dithionite alone may not resolve such trends, as they dissolve iron from isotopically distinct pools leading to a mixed signal. Na-dithionite leaching alone, for example, targets the sum of reducible Fe oxides that potentially differ in their isotopic fingerprint. Hence, the development of a sequential extraction Fe isotope protocol provides a new opportunity for detailed study of the behavior of iron in a wide-range of environmental settings.
    Keywords: AWI_Paleo; HE337; HE337/001-1; HE337-1_MUC-1; Heincke; MUC; MultiCorer; North Sea; Paleoenvironmental Reconstructions from Marine Sediments @ AWI
    Type: Dataset
    Format: application/zip, 4 datasets
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  • 43
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Vance, Derek; Scrivner, Adam E; Beney, Patricia; Staubwasser, Michael; Henderson, Gideon M; Slowey, Niall C (2004): The use of foraminifera as a record of the past neodymium isotope composition of seawater. Paleoceanography, 19(2), PA2009, https://doi.org/10.1029/2003PA000957
    Publication Date: 2024-04-30
    Description: We present new isotopic data for sedimentary planktonic foraminifera, as well as for potential water column and sedimentary sources of neodymium (Nd), which confirm that the isotopic composition of the foraminifera is the same as surface seawater and very different from deep water and sedimentary Nd. The faithfulness with which sedimentary foraminifera record the isotopic signature of surface seawater Nd is difficult to explain given their variable and high Nd/Ca ratios, ratios that are often sedimentary foraminifera, ratios that are often much higher than is plausible for direct incorporation within the calcite structure. We present further data that demonstrate a similarly large range in Nd/Ca ratios in plankton tow foraminifera, a range that may be controlled by redox conditions in the water column. Cleaning experiments reveal, in common with earlier work, that large amounts of Nd are released by cleaning with both hydrazine and diethylene triamine penta-acetic acid, but that the Nd released at each step is of surface origin. While further detailed studies are required to verify the exact location of the surface isotopic signature and the key controls on foraminiferal Nd isotope systematics, these new data place the use of planktonic foraminifera as recorders of surface water Nd isotope ratios, and thus of variations in the past supply of Nd to the oceans from the continents via weathering and erosion, on a reasonably sure footing.
    Keywords: Ocean Drilling Program; ODP
    Type: Dataset
    Format: application/zip, 5 datasets
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  • 44
    Publication Date: 2024-04-30
    Description: At Ny-Ålesund (78.9° N), Svalbard, surface radiation measurements of up- and downward short- and longwave radiation are operated since August 1992 in the frame of the Baseline Surface Radiation Network (BSRN), complemented with surface and upper air meteorology since August 1993. The long-term observations are the base for a climatological presentation of the surface radiation data. Over the 21-year observation period, ongoing changes in the Arctic climate system are reflected. Particularly, the observations indicate a strong seasonality of surface warming and related changes in different radiation parameters. The annual mean temperature at Ny-Ålesund has risen by +1.3 ± 0.7 K per decade, with a maximum seasonal increase during the winter months of +3.1 ± 2.6 K per decade. At the same time, winter is also the season with the largest long-term changes in radiation, featuring an increase of +15.6 ± 11.6 W/m**2 per decade in the downward longwave radiation. Furthermore, changes in the reflected solar radiation during the months of snow melt indicate an earlier onset of the warm season by about 1 week compared to the beginning of the observations. The online available dataset of Ny-Ålesund surface radiation measurements provides a valuable data source for the validation of satellite instruments and climate models.
    Keywords: AC3; Arctic Amplification; AWIPEV; AWIPEV_based; Baseline Surface Radiation Network; BSRN; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen
    Type: Dataset
    Format: 253 datasets
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  • 45
    Publication Date: 2024-04-30
    Description: This dataset includes stable iron isotope data (δ56Fe ) of dissolved iron (Fe) as well as for sequentially extracted Fe pools of sediment cores that were retrieved from Site C0023 (Hole A) during International Ocean Discovery Program (IODP) Expedition 370 in the Nankai Trough offshore Japan in the Pacific Ocean (Drilling vessel Chikyu). Site C0023 was established on 17 September 2016. Coring terminated on 3 November 2016. Furthermore, the dataset comprises solid-phase data of discrete ash layers from Site C0023. The solid-phase data include bulk aluminum (Al), titanium (Ti) and Fe contents, sequentially extracted Fe contents as well as stable Fe isotope data for the sequentially extracted Fe pools.
    Keywords: Integrated Ocean Drilling Program / International Ocean Discovery Program; IODP
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 46
    facet.materialart.
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    PANGAEA
    In:  Supplement to: Arnold, Thomas; Mealey, Christopher; Leahey, Hannah; Miller, A Whitman; Hall-Spencer, Jason M; Milazzo, Marco; Maers, Kelly (2012): Ocean Acidification and the Loss of Phenolic Substances in Marine Plants. PLoS ONE, 7(4), e35107, https://doi.org/10.1371/journal.pone.0035107.t004
    Publication Date: 2024-04-30
    Description: Rising atmospheric CO2 often triggers the production of plant phenolics, including many that serve as herbivore deterrents, digestion reducers, antimicrobials, or ultraviolet sunscreens. Such responses are predicted by popular models of plant defense, especially resource availability models which link carbon availability to phenolic biosynthesis. CO2 availability is also increasing in the oceans, where anthropogenic emissions cause ocean acidification, decreasing seawater pH and shifting the carbonate system towards further CO2 enrichment. Such conditions tend to increase seagrass productivity but may also increase rates of grazing on these marine plants. Here we show that high CO2 / low pH conditions of OA decrease, rather than increase, concentrations of phenolic protective substances in seagrasses and eurysaline marine plants. We observed a loss of simple and polymeric phenolics in the seagrass Cymodocea nodosa near a volcanic CO2 vent on the Island of Vulcano, Italy, where pH values decreased from 8.1 to 7.3 and pCO2 concentrations increased ten-fold. We observed similar responses in two estuarine species, Ruppia maritima and Potamogeton perfoliatus, in in situ Free-Ocean-Carbon-Enrichment experiments conducted in tributaries of the Chesapeake Bay, USA. These responses are strikingly different than those exhibited by terrestrial plants. The loss of phenolic substances may explain the higher-than-usual rates of grazing observed near undersea CO2 vents and suggests that ocean acidification may alter coastal carbon fluxes by affecting rates of decomposition, grazing, and disease. Our observations temper recent predictions that seagrasses would necessarily be "winners" in a high CO2 world.
    Keywords: Acetovanillone; Acetovanillone, standard error; Aeolian_archipelago; Alkalinity, total; Alkalinity, total, standard error; Aragonite saturation state; Benthos; Bicarbonate ion; Calcite saturation state; Calculated using seacarb after Nisumaa et al. (2010); Carbon, inorganic, dissolved; Carbonate ion; Carbonate system computation flag; Carbon dioxide; CO2 vent; Coast and continental shelf; Coumaric acid; Coumaric acid, standard error; Cymodocea nodosa; Description; Distance; Event label; EXP; Experiment; Ferulic acid; Ferulic acid, standard error; Field experiment; Field observation; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Gallic acid; Gallic acid, standard error; Identification; Immunology/Self-protection; Mediterranean Sea; Mediterranean Sea Acidification in a Changing Climate; MedSeA; Mesocosm or benthocosm; North Atlantic; OA-ICC; Ocean Acidification International Coordination Centre; Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); Partial pressure of carbon dioxide (water) at sea surface temperature (wet air), standard error; pH; pH, standard error; Phenolic acids, standard error; Phenolic acids, total; Phenolics, all; Phenolics, all, standard error; Phenolics, reactive, total; Phenolics, reactive, total, standard error; Plantae; Potamogeton perfoliatus; Potentiometric titration; Proanthocyanidins; Proanthocyanidins, standard error; Ruppia maritima; Salinity; Salinity, standard error; Seagrass; Severn_River; Single species; Species; St_Mary_River; Syringaldehyde and 4-hydroxybenzoic acid; Syringaldehyde and 4-hydroxybenzoic acid, standard error; Temperate; Temperature, water; Tracheophyta; Vanillin; Vanillin, standard error
    Type: Dataset
    Format: text/tab-separated-values, 497 data points
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  • 47
    Publication Date: 2024-04-30
    Description: The dataset includes solid-phase geochemistry data of sediment cores from Site C0023 (Hole A) that was recovered during International Ocean Discovery Program (IODP) Expedition 370 in the Nankai Trough offshore Japan in the Pacific Ocean (Drilling vessel Chikyu). Site C0023 was established on 17 September 2016. Coring terminated on 3 November 2016. Solid-phase geochemistry data include bulk iron (Fe), sulfur (S) and aluminum (Al) contents, chromium reducible sulfur (CRS) as well as algal lipid biomarker concentrations and stable carbon isotopes of total organic carbon (δ13C-TOC). The bulk element contents were determined by performing total acid digestions (dissolution of dry sediment in a mixture of 65% HNO3 (3 ml), 30% HCl (2 ml), and 40% suprapur® HF (0.5 ml) in a CEM Mars Xpress microwave system). Sequential iron extractions were performed after Poulton and Canfield (2005) and Henkel et al. (2016) to quantify the reactive iron pools (Fe aca, sodium acetate extraction; Fe hyam, hydroxylamine-HCl extraction; Fe di-ct, sodium dithionite/sodium citrate extraction; Fe oxa, oxalate/oxalic acid extraction). We further determined the amounts of Al (Al aca, Al hyam, Al di-ct, Al oxa) and silicon (Si; Si aca, Si hyam, Si di-ct, Si oxa) released by the different extraction steps for a selection of samples. All elemental contents (except for CRS) were measured by inductively coupled plasma – optical emission spectroscopy (ICP-OES; iCAP 7400, Thermo Fisher Scientific Inc.). CRS was extracted using a CrCl2 solution after Canfield et al. (1986) and Zhabina & Volkov (1978). All values are given in wt%. Algal lipid biomarker analysis was performed after Sturt et al. (2004) and HPLC-MS analyses after Becker et al. (2015). Biomarker concentrations are reported as the integrated peak area of the sum of all detected diols normalized to kg extracted sediment (PA/kg). Stable carbon isotopes of total organic carbon measurement occurred on an EA-IRMS system after complete decalcification of homogenized sediment samples with 10% HCl. The δ13C-TOC values are expressed relative to VPDB (Vienna Pee Dee Belemnite).
    Keywords: Hole A; Integrated Ocean Drilling Program / International Ocean Discovery Program; IODP; IODP Expedition 370; Nankai Trough; Site C0023
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 48
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Staubwasser, Michael; Sirocko, Frank; Grootes, Pieter Meiert; Erlenkeuser, Helmut (2002): South Asian monsoon climate change and radiocarbon in the Arabian Sea during early and middle Holocene. Paleoceanography, 17(4), 1063, https://doi.org/10.1029/2000PA000608
    Publication Date: 2024-04-30
    Description: The 14C ages of planktonic foraminifers Globigerinoides sacculifer bracketing the Younger Dryas in a d18O record of Globigerinoides ruber from a laminated sediment core on the Pakistani continental margin suggest that surface reservoir ages in the Arabian Sea were in excess of 1000 years during the deglaciation. A least squares error fit of a detailed 14C chronology to the (atmospheric) tree ring record gave variable early Holocene reservoir ages between 780 and 1120 years, well above the prebomb value of 640 years. Mid-Holocene reservoir ages are less well constrained but were probably closer to the prebomb value. The method used to fit individual core sections to the tree ring record was designed to require only a rough a priori estimate of the time spans, which in the core presented here were taken from each section's range of 14C ages. A significant 220-year quasi-oscillation was present in the d18O record during the early Holocene but not thereafter. This frequency and amplitude pattern resembles an early Holocene 207- to 227-year oscillation previously observed in the atmospheric 14C record, which is generally interpreted as reflecting solar irradiance variability. An early Holocene climate event at 8150-8400 calendar years B.P. observed elsewhere within the Asian-East African monsoon system was again found in our record, suggesting a reduction in precipitation over NW India and Pakistan.
    Keywords: Age, 14C AMS; Age, 14C calibrated; Age, comment; Age, dated; Age, dated material; Age, dated standard deviation; Arabian Sea; Calendar age; COMPCORE; Composite Core; DEPTH, sediment/rock; PAKOMIN; Reservoir age; Reservoir age, standard error; Section; SO90; SO90-41KL/63KA; Sonne
    Type: Dataset
    Format: text/tab-separated-values, 362 data points
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  • 49
    Publication Date: 2024-04-30
    Keywords: CT; File format; File name; File size; GEOTRACES; Global marine biogeochemical cycles of trace elements and their isotopes; M81/1; M81/1-track; Meteor (1986); subtropical - tropical Atlantic; Underway cruise track measurements; Uniform resource locator/link to file
    Type: Dataset
    Format: text/tab-separated-values, 5 data points
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  • 50
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Poigner, Harald; Wilhelms-Dick, Dorothee; Abele, Doris; Staubwasser, Michael; Henkel, Susann (2015): Iron assimilation by the clam Laternula elliptica: Do stable isotopes (d56Fe) help to decipher the sources? Chemosphere, 134, 294-300, https://doi.org/10.1016/j.chemosphere.2015.04.067
    Publication Date: 2024-04-30
    Description: Iron stable isotope signatures (d56Fe) in hemolymph (bivalve blood) of the Antarctic bivalve Laternula elliptica were analyzed by Multiple Collector-Inductively Coupled Plasma-Mass Spectrometry (MC-ICP-MS) to test whether the isotopic fingerprint can be tracked back to the predominant sources of the assimilated Fe. An earlier investigation of Fe concentrations in L. elliptica hemolymph suggested that an assimilation of reactive and bioavailable Fe (oxyhydr)oxide particles (i.e. ferrihydrite), precipitated from pore water Fe around the benthic boundary, is responsible for the high Fe concentration in L. elliptica (Poigner et al., 2013, doi:10.1016/j.ecss.2013.10.027). At two stations in Potter Cove (King George Island, Antarctica) bivalve hemolymph showed mean d56Fe values of -1.19 ± 0.34 per mil and -1.04 ± 0.39 per mil, respectively, which is between 0.5 per mil and 0.85 per mil lighter than the pool of easily reducible Fe (oxyhydr)oxides of the surface sediments (-0.3 per mil to -0.6 per mil). This is in agreement with the enrichment of lighter Fe isotopes at higher trophic levels, resulting from the preferential assimilation of light isotopes from nutrition. Nevertheless, d56Fe hemolymph values from both stations showed a high variability, ranging between -0.21 per mil (value close to unaltered/primary Fe(oxyhydr)oxide minerals) and -1.91 per mil (typical for pore water Fe or diagenetic Fe precipitates), which we interpret as a "mixed" d56Fe signature caused by Fe assimilation from different sources with varying Fe contents and d56Fe values. Furthermore, mass dependent Fe fractionation related to physiological processes within the bivalve cannot be ruled out. This is the first study addressing the potential of Fe isotopes for tracing back food sources of bivalves.
    Keywords: Date/Time of event; DEPTH, sediment/rock; Elevation of event; Event label; ICP-OES after acid digestion (Poigner et al, 2013); IMCOAST/IMCONet; Impact of climate induced glacier melt on marine coastal systems, Antarctica; Iron, haemolymph fluid and hemocytes; Laternula elliptica, height of valve; Laternula elliptica, length of valve; Laternula elliptica, width of valve; Latitude of event; Longitude of event; MC-ICP-MS after acid digestion, anion-exchange chromatography (Schönberg, 2005); MULT; Multiple investigations; PotterCove_Laternula_STA04; PotterCove_Laternula_STA11; Potter Cove, King George Island, Antarctic Peninsula; Sample code/label; Vernier caliper; δ56Fe
    Type: Dataset
    Format: text/tab-separated-values, 114 data points
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  • 51
    Publication Date: 2024-04-30
    Keywords: Canarias Sea; CTD/Rosette; CTD001; CTD002; CTD003; CTD004; CTD005; CTD006; CTD007; CTD008; CTD009; CTD010; CTD011; CTD012; CTD013; CTD014; CTD015; CTD016; CTD017; CTD018; CTD019; CTD020; CTD021; CTD022; CTD023; CTD024; CTD025; CTD026; CTD027; CTD028; CTD029; CTD030; CTD031; CTD032; CTD033; CTD034; CTD035; CTD036; CTD037; CTD038; CTD039; CTD040; CTD041; CTD042; CTD043; CTD044; CTD045; CTD046; CTD047; CTD048; CTD-RO; DATE/TIME; Density, sigma, in situ; DEPTH, water; Event label; Fluorescence; Latitude of event; Longitude of event; M81/1; M81/1_107; M81/1_110; M81/1_113; M81/1_115; M81/1_119; M81/1_121; M81/1_125; M81/1_126; M81/1_128; M81/1_130; M81/1_133; M81/1_136; M81/1_138; M81/1_140; M81/1_142; M81/1_145; M81/1_148; M81/1_150; M81/1_152; M81/1_153; M81/1_155; M81/1_158; M81/1_161; M81/1_163; M81/1_165; M81/1_167; M81/1_169; M81/1_171; M81/1_173; M81/1_175; M81/1_179; M81/1_181; M81/1_183; M81/1_185; M81/1_186; M81/1_188; M81/1_190; M81/1_192; M81/1_194; M81/1_195; M81/1_197; M81/1_199; M81/1_200; M81/1_204; M81/1_206; M81/1_207; M81/1_209; M81/1_210; Meteor (1986); Oxygen; Pressure, water; Salinity; Sound velocity in water; South Atlantic Ocean; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 634122 data points
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  • 52
    Publication Date: 2024-04-30
    Keywords: ADCP; ARK-XXXI/2; AWI_PhyOce; CTD; Current direction; Current velocity, east-west; Current velocity, horizontal; Current velocity, north-south; DATE/TIME; DEPTH, water; FRAM; Fram Strait; FRontiers in Arctic marine Monitoring; Gear identification number; Hausgarten; HG-IV-FEVI-36; Long-term Investigation at AWI-Hausgarten off Svalbard; Mooring; Mooring (long time); MOORY; Oxygen; Physical Oceanography @ AWI; Polarstern; Pressure, water; PS107; PS107_38-1, PS114_2-1; Salinity; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 2653532 data points
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  • 53
    Publication Date: 2024-04-30
    Keywords: ARK-XIV/2; ARK-XIX/4b; ARK-XV/3; ARK-XVI/2; ARK-XVII/1; ARK-XVIII/1; ARK-XX/2; ARK-XXI/1b; ARK-XXIII/2; ARK-XXIV/1; ARK-XXIX/2.1; ARK-XXV/1; ARK-XXV/2; ARK-XXVI/1; ARK-XXVII/1; ARK-XXVIII/2; AWI_PhyOce; F10-1; F10-10; F10-11; F10-12; F10-13; F10-2; F10-3; F10-4; F10-5; F10-6; F10-7; F10-9; F1-1; F1-10; F1-11; F11-2; F11-3; F1-15; F1-2; F12-1; F12-2; F12-3; F1-3; F13-1; F13-2; F13-3; F1-4; F14-1; F14-2; F14-3; F1-5; F15-1; F15-2; F15-3; F15-4; F15-5; F15-6; F15-7; F15-8; F15-9; F1-6; F16-1; F16-2; F16-3; F16-4; F16-5; F16-6; F16-7; F16-8; F16-9; F1-7; F1-8; F2-1; F2-10; F2-11; F2-12; F2-13; F2-14; F2-15; F2-17; F2-2; F2-3; F2-4; F2-5; F2-6; F2-7; F2-8; F2-9; F3-1; F3-10; F3-11; F3-12; F3-13; F3-14; F3-15; F3-16; F3-2; F3-3; F3-5; F3-6; F3-7; F3-8; F3-9; F4-1; F4-10; F4-11; F4-12; F4-13; F4-14; F4-15; F4-16; F4-2; F4-3; F4-4; F4-5; F4-6; F4-7; F4-8; F4-9; F5-1; F5-10; F5-11; F5-12; F5-13; F5-14; F5-15; F5-16; F5-2; F5-3; F5-4; F5-5; F5-6; F5-7; F5-8; F5-9; F6-1; F6-10; F6-11; F6-12; F6-13; F6-14; F6-15; F6-17; F6-2; F6-3; F6-4; F6-5; F6-6; F6-7; F6-8; F6-9; F7-1; F7-10; F7-11; F7-12; F7-2; F7-3; F7-4; F7-5; F7-6; F7-7; F7-8; F7-9; F8-1; F8-10; F8-11; F8-12; F8-13; F8-2; F8-3; F8-4; F8-5; F8-6; F8-7; F8-8; F8-9; F9-1; F9-10; F9-12; F9-2; F9-3; F9-4; F9-5; F9-6; F9-7; F9-8; F9-9; FRAM; FRontiers in Arctic marine Monitoring; HE451-2; Heincke; L97; LA07/9; LA97/2; Lance; Maria S. Merian; MOOR; Mooring; Mooring (long time); MOORY; MSM02/4; North Greenland Sea; Physical Oceanography @ AWI; Polarstern; PS52; PS55; PS57; PS59; PS62; PS64; PS66; PS68; PS72; PS74; PS76; PS78; PS80; PS85; PS93.1
    Type: Dataset
    Format: 168 datasets
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  • 54
    Publication Date: 2024-04-30
    Keywords: ARK-XXX/1.2; AWI_PhyOce; Current direction; Current velocity, east-west; Current velocity, horizontal; Current velocity, north-south; DATE/TIME; DEPTH, water; FRAM; Fram Strait; FRontiers in Arctic marine Monitoring; Gear identification number; Hausgarten; HG-IV-FEVI-34; Long-term Investigation at AWI-Hausgarten off Svalbard; Mooring (long time); MOORY; Oxygen; Physical Oceanography @ AWI; Polarstern; Pressure, water; PS99/072-1, PS107_3-2; PS99.2; Salinity; see comment for gear; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 3108866 data points
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  • 55
    Publication Date: 2024-04-30
    Keywords: ADCP; ARK-XXX/1.2; AWI_PhyOce; CTD; FRAM; Fram Strait; FRontiers in Arctic marine Monitoring; Hausgarten; HG-IV-FEVI-34; Long-term Investigation at AWI-Hausgarten off Svalbard; Mooring; Mooring (long time); MOORY; Physical Oceanography @ AWI; Polarstern; PS99/072-1, PS107_3-2; PS99.2
    Type: Dataset
    Format: application/zip, 600.9 MBytes
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  • 56
    Publication Date: 2024-04-30
    Keywords: ADCP; ARK-XXXI/2; AWI_PhyOce; CTD; FRAM; Fram Strait; FRontiers in Arctic marine Monitoring; Hausgarten; HG-IV-FEVI-36; Long-term Investigation at AWI-Hausgarten off Svalbard; Mooring; Mooring (long time); MOORY; Physical Oceanography @ AWI; Polarstern; PS107; PS107_38-1, PS114_2-1
    Type: Dataset
    Format: application/zip, 648.6 MBytes
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  • 57
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Saher, Margot; Jung, S J A; Elderfield, Henry; Greaves, Mervyn; Kroon, Dick (2007): Sea surface temperatures of the western Arabian Sea during the last deglaciation. Paleoceanography, 22(2), PA2208, https://doi.org/10.1029/2006PA001292
    Publication Date: 2024-04-30
    Description: In this study we present a sea surface temperature (SST) record from the western Arabian Sea for the last 20,000 years. We produced centennial-scale d18O and Mg/Ca SST time series of core NIOP929 with focus on the glacial-interglacial transition. The western Arabian Sea is influenced by the seasonal NE and SW monsoon wind systems. Lowest SSTs occur during the SW monsoon season because of upwelling of cold water, and highest SSTs can be found in the low-productivity intermonsoon season. The Mg/Ca-based temperature record reflects the integrated SST of the SW and NE monsoon seasons. The results show a glacial-interglacial SST difference of ~2°C, which is corroborated by findings from other Arabian Sea cores. At 19 ka B.P. a yet undescribed warm event of several hundred years duration is found, which is also reflected in the d18O record. A second centennial-scale high SST/low d18O event is observed at 17 ka B.P. This event forms the onset of the stepwise yet persistent trend toward Holocene temperatures. Highest Mg/Ca-derived SSTs in the NIOP929 record occurred between 13 and 10 ka B.P. Interglacial SST is ~24°C, indicating influence of upwelling. The onset of Arabian Sea warming occurs when the North Atlantic is experiencing minimum temperatures. The rapid temperature variations at 19, 17, and 13 ka B.P. are difficult to explain with monsoon changes alone and are most likely also linked to regional hydrographic changes, such as trade wind induced variations in warm water advection.
    Keywords: Age, 14C AMS; Age, 14C calibrated, CALIB (Stuiver & Reimer, 1993); Age, comment; Age, dated; Age, dated material; Age, dated standard deviation; Arabian Sea; Calendar age; Core; CORE; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; NIOP929; NIOP-C2; NIOP-C2_929; Sample amount; Size fraction; Tyro
    Type: Dataset
    Format: text/tab-separated-values, 74 data points
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  • 58
    Publication Date: 2024-04-30
    Keywords: Age, mineral; Amo; Area/locality; Australia; Barite; Barite-Valley; Continental crust; Dharwar; Dresser-FM; Event label; India; Londozi; Morphology; MULT; Multiple investigations; Oxygen isotopes; Paleoarchean; Reference/source; Sample ID; seawater; South Africa; Stentor; Strontium-87/Strontium-86 ratio; Strontium-87/Strontium-86 ratio, standard deviation; strontium isotopes; Sulfur isotopes; Swaziland; Vergelegen; Weathering; Δ33S; Δ33S, standard deviation; δ18O, barite; δ18O, standard deviation; δ34S, barite; δ34S, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 599 data points
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  • 59
    Publication Date: 2024-04-30
    Keywords: ADCP; ARK-XXX/1.2; ARK-XXX/2, GN05; ARK-XXXI/2; AWI_PhyOce; B_LANDER; Bottom lander; CTD; F2-18; F3-17; F4-17; F4-S-1; F4-S-2; F5-17; FRAM; Fram Strait; FRontiers in Arctic marine Monitoring; Hausgarten; HG-EGC-3; HG-EGC-4; HG-IV-FEVI-34; HG-IV-FEVI-36; HG-IV-S-1; HG-IV-S-2; HG-IV-SWIPS-2016; HG-IV-SWIPS-2017; HG-N-FEVI-33; HG-N-FEVI-35; Lander-2016; Lander-2017; Long-term Investigation at AWI-Hausgarten off Svalbard; Mooring; Mooring (long time); MOORY; North Greenland Sea; Physical Oceanography @ AWI; Polarstern; PS100; PS100/016-1, MSM76_203-1; PS100/017-1, MSM76_202-1; PS100/018-1, PS114_11-1; PS100/019-1, MSM76_198-1; PS100/039-2, PS114_25-1,ARKR02-01; PS100/045-1, PS114_29-2; PS100/047-1, PS114_40-2; PS100/053-1, PS114_36-1; PS100/106-1, PS114_23-2; PS107; PS107_23-1, PS114_43-1; PS107_35-1, PS114_32-1; PS107_38-1, PS114_2-1; PS107_38-2, PS114_1-1; PS107_38-4, PS114_3-1; PS107_38-7, MSM77_4-9; PS107_49-1, PS114_10-1; PS99/048-7, PS107_23-1; PS99/055-6, PS107_33-8; PS99/067-1, PS107_44-1; PS99/070-1, PS107_3-1; PS99/072-1, PS107_3-2; PS99/076-1, PS107_5-1; PS99/077-1, PS107_4-1; PS99.2; R1-1; R2-1; R3-1; R4-1; R5-1
    Type: Dataset
    Format: 46 datasets
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  • 60
    Publication Date: 2024-04-30
    Description: This data product contains dissolved silicon concentrations and isotopic composition, major ion concentrations and discharge for streams in Potter Peninsula, King George Island and Commonwealth Stream, McMurdo Dry Valleys, Antarctica.
    Keywords: Antarctica; Calcium; Chloride; CommonwealthStreamGauge; CommonwealthStreamMouth; DATE/TIME; Day of the year; Discharge; Event label; IMCOAST/IMCONet; Impact of climate induced glacier melt on marine coastal systems, Antarctica; LATITUDE; LONGITUDE; Magnesium; Potassium; PotterPeninsula_W19; PotterPeninsula_W20; PotterPeninsula_W21; PotterPeninsula_W22; PotterPeninsula_W23; PotterPeninsula_W24; PotterPeninsula_W25; PotterPeninsula_W35; PotterPeninsula_W39; PotterPeninsula_W40; PotterPeninsula_W41; PotterPeninsula_W45; PotterPeninsula_W49; PotterPeninsula_W50; Potter Peninsula, King George Island, Western Antarctica; Priority Programme 1158 Antarctic Research with Comparable Investigations in Arctic Sea Ice Areas; Ratio; Sample code/label; Silicon; Silicon Isotope Geochemistry; Site; Sodium; SPP1158; Stream Weathering; Subglacial Weathering; Sulfate; Water sample; WS; δ30Si, error; δ30Si, silicon dissolved
    Type: Dataset
    Format: text/tab-separated-values, 608 data points
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  • 61
    Publication Date: 2024-04-30
    Description: This is a dataset that has been acquired in 1995 as part of the U.S.-ROC Deep Seismic Imaging Study of the Taiwan Arc-Continent Collision (TAICRUST) project. This particular line was measured in the Taiwan Strait in September 1995 to image the shallow sediments and upper crust. Additional information from the Cruise EW9509 is stored at the Marine Geoscience Data System (MGDS).
    Keywords: Binary Object; EW9509; EW9509_Line38; Maurice Ewing; multi-channel seismic reflection; raw data; SEIS; Seismic
    Type: Dataset
    Format: text/tab-separated-values, 19 data points
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  • 62
    Publication Date: 2024-04-30
    Description: International Ocean Discovery Program (IODP) Site U1490 in the Western Pacific Warm Pool (05°48.95ʹN, 142°39.27ʹE, 2341 m water depth) provides the opportunity to directly compare an astronomically tuned benthic foraminiferal isotope cyclostratigraphy with biostratigraphic datums and paleomagnetic reversals over the interval 13.7 to 8.6 Ma as well as to reconstruct the evolution of intermediate-deep water masses across the middle to late Miocene Carbonate Crash. The astronomically tuned delta 18O derived ages for magnetochrons identified between 13.6 and 9.3 Ma during IODP Expedition 363 are in good agreement (mean deviation of 17 ±4 kyr) with ages reported in the Geomagnetic Polarity Time Scale of the Geologic Time Scale (GPTS2020), except over the interval 11.7 to 11.0 Ma that is characterized by poorly defined magnetization. The delta 18O based astrochronology at Site U1490 also closely matches that from Ocean Drilling Program (ODP) Site 1146 in the South China Sea and IODP Site U1443 in the equatorial Indian Ocean, allowing evaluation of middle to late Miocene changes of inter-ocean intermediate to deep water delta 13C gradients on orbital timescales. An increase in the delta 13C gradient between Sites 1146 and U1490 from ~12.4 to 10.4 Ma suggests that changes in Pacific Ocean circulation contributed to carbonate depletion during the Carbonate Crash. After 10.5 Ma, a decrease in the meridional delta 13C gradient between Sites U1490 and 1146 indicates spreading of a more uniform central Pacific intermediate-deep water mass, exhibiting similarity to the equatorial Indian Ocean deep water mass at Site U1443. Improved preservation of thin-walled foraminiferal tests and increases in sedimentation rates and coarse fraction percentages mark the recovery of the marine carbonate system and the onset of the Biogenic Bloom after ~9.3 Ma.
    Keywords: 363-U1490A; 363-U1490B; Age; AGE; Carbonate Crash; CDRILL; Cibicidoides mundulus, δ13C; Cibicidoides mundulus, δ18O; Cibicidoides spp., δ13C; Cibicidoides spp., δ18O; Cibicidoides wuellerstorfi, δ13C; Cibicidoides wuellerstorfi, δ18O; Core drilling; Cyclostratigraphy; Depth, composite; Depth, composite revised; DEPTH, sediment/rock; DSDP/ODP/IODP sample designation; Event label; Exp363; Integrated Ocean Drilling Program / International Ocean Discovery Program; IODP; IODP Depth Scale Terminology; Joides Resolution; Magnetostratigraphy; Mass spectrometer Finnigan MAT 251; middle to late Miocene; ocean circulation; Sample code/label; Sample comment; Sample mass; Stable isotopes; Western Pacific; West Pacific Warm Pool
    Type: Dataset
    Format: text/tab-separated-values, 5234 data points
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  • 63
    Publication Date: 2024-04-30
    Description: Mesoscale eddies are important for many aspects of the dynamics of the Arctic Ocean. These include the maintenance of the halocline and the Atlantic Water boundary current through lateral eddy fluxes, shelf-basin exchanges, transport of biological material and sea ice, and the modification of the sea-ice distribution. Here we review what is known about the mesoscale variability and its impacts in the Arctic Ocean in the context of an Arctic Ocean responding rapidly to climate change. In addition, we present the first quantification of eddy kinetic energy (EKE) from moored observations across the entire Arctic Ocean, which we compare to output from an eddy resolving numerical model. We show that EKE is largest in the northern Nordic Seas/Fram Strait and it is also elevated along the shelfbreak of the Arctic Circumpolar Boundary Current, especially in the Beaufort Sea. In the central basins it is 100-1000 times lower. Except for the region affected by southward sea-ice export south of Fram Strait, EKE is stronger when sea-ice concentration is low compared to dense ice cover. Areas where conditions typical in the Atlantic and Pacific prevail will increase. Hence, we conclude that the future Arctic Ocean will feature more energetic mesoscale variability. This table provides (eddy) kinetic energy in the Arctic Ocean calculated from moorings and a numerical model across the entire record and averaged over certain conditions (seasons, ice concentration). The calculations are explained in the manuscript (Eddies and the distribution of eddy kinetic energy in the Arctic Ocean). The used mooring data was compiled from six different sources as listed below and identified in the table based on the Source ID.
    Keywords: 250_MOOR; 293-S1_MOOR; 293-X1_MOOR; 293-X2_MOOR; 293-X3_MOOR; 295-S2_MOOR; A01_MOOR; AK1-1_MOOR; AK2-1_MOOR; AK3-1_MOOR; AK4-1_MOOR; AK5-1_MOOR; AK6-1_MOOR; AK7-1_MOOR; Akademik Tryoshnikov; AM1-91_MOOR; AM2-91_MOOR; AO1-92_MOOR; Arctic Ocean; ARK-XIV/2; ARK-XVIII/1; ARK-XXIX/3; ARK-XXX/1.2; ARK-XXX/2, GN05; ARK-XXXI/4; ATWAIN200_MOOR; AWI_PhyOce; AWI401-1_MOOR; AWI402-1_MOOR; AWI403-1_MOOR; AWI403-2_MOOR; AWI404-1_MOOR; AWI406-1_MOOR; AWI410-2_MOOR; AWI411-2_MOOR; AWI412-4_MOOR; AWI413-4_MOOR; AWI415-1_MOOR; AWI416-1_MOOR; AWI417-1_MOOR; AWI418-1_MOOR; BaffinBay_2_MOOR; BaffinBay_MOOR; BarrowSt_81_MOOR; BarrowSt_C_MOOR; BarrowSt_N_MOOR; BarrowSt_S_MOOR; BarrowSt_SC_MOOR; BarrowSt_Ss_MOOR; BG_a_MOOR; BG_b_MOOR; BG_c_MOOR; BG_d_MOOR; BI3_MOOR; BR1_MOOR; BR2_MOOR; BR3_MOOR; BRA_MOOR; BRB_MOOR; BRG_MOOR; BRK_MOOR; BS2_MOOR; BS3_MOOR; BS4_MOOR; BS5_MOOR; BS6_MOOR; BSO1_MOOR; BSO2_MOOR; BSO3_MOOR; BSO4_MOOR; BSO5_MOOR; C1_MOOR; C2_MOOR; C3_MOOR; C4_MOOR; C5_MOOR; C6_MOOR; CA04_MOOR; CA05_MOOR; CA06_MOOR; CA07_MOOR; CA08_MOOR; CA10_MOOR; CA11_MOOR; CA12_MOOR; CA13_MOOR; CA15_MOOR; CA16_MOOR; CA20_MOOR; CM-1_MOOR; CM-2_MOOR; CS1_MOOR; CS-1A_MOOR; CS2_MOOR; CS-2A_MOOR; CS3_MOOR; CS-3A_MOOR; CS4_MOOR; CS5_MOOR; Depth, bottom/max; Depth, top/min; DEPTH, water; DS_TUBE8_MOOR; Duration; EA1_MOOR; EA2_MOOR; EA3_MOOR; EA4_MOOR; EBC_MOOR; eddies; eddy kinetic energy; Eddy kinetic energy, 2000-2010; Eddy kinetic energy, 2010-2020; Eddy kinetic energy, at depth; Eddy kinetic energy, autumn; Eddy kinetic energy, ice; Eddy kinetic energy, mean; Eddy kinetic energy, model bandpass; Eddy kinetic energy, model online; Eddy kinetic energy, no ice; Eddy kinetic energy, some ice; Eddy kinetic energy, spring; Eddy kinetic energy, summer; Eddy kinetic energy, winter; EGN-1; EGS-1; EGS1-2; EGS2-1; EGS4-1; ELEVATION; F10-1; F1-1; F11_MOOR; F11-2; F12_MOOR; F12-1; F13_MOOR; F13-1; F14_MOOR; F14-1; F15-1; F16-1; F17_MOOR; F2-1; F3-1; F4-1; F5-1; F6-1; F7-1; F8-1; F9-1; FB2b_MOOR; FB6_MOOR; First year of observation; FRAM; FRontiers in Arctic marine Monitoring; FRS782_MOOR; FSC1_MOOR; FSC2_MOOR; FSC3_MOOR; FSC4_MOOR; GS-3_2_MOOR; HG-IV-S-1; High-frequency kinetic energy; HSNE60_MOOR; HudsonBay_MOOR; HudsonStrait_MOOR; I1_MOOR; I2_MOOR; I3_MOOR; IdF1-1; IdF2-1; IdF3-1; IdF4-1; ISWRIG_MOOR; Karasik-2015; KS02_MOOR; KS04_MOOR; KS06_MOOR; KS08_MOOR; KS10_MOOR; KS12_MOOR; KS14_MOOR; L97; LA97/2; Lance; Last year of observation; LATITUDE; LM3_MOOR; LONGITUDE; Low-frequency kinetic energy; M11_MOOR; M12_MOOR; M13_MOOR; M14_MOOR; M15_MOOR; M16_MOOR; M3_MOOR; M5_MOOR; M6_MOOR; M9a_MOOR; MA2B_MOOR; MB1B_MOOR; MB2B_MOOR; MB4B_MOOR; Mean kinetic energy; MOOR; Mooring; Mooring (long time); MOORY; N198_2_MOOR; N198_MOOR; N525_MOOR; N541_MOOR; NABOS_2015_AK1-1, NABOS_2018_AK1-1; NABOS_2015_AK2-1, NABOS_2018_AK2-1; NABOS_2015_AK3-1, NABOS_2018_AK3-1; NABOS_2015_AK4-1, NABOS_2018_AK4-1; NABOS_2015_AK5-1, NABOS_2018_AK5-1; NABOS_2015_AK6-1,NABOS_2018_AK6-1; NABOS_2015_AK7-1, NABOS_2018_AK7-1; NABOS, AT2015; NABOS 2015; Nansen-2015; North Greenland Sea; NPEO_MOOR; NWNA_MOOR; NWNB_MOOR; NWNC_MOOR; NWND_MOOR; NWNE_MOOR; NWNF_MOOR; NWNG_MOOR; NWSB_MOOR; NWSD_MOOR; NWSE_2_MOOR; NWSE_MOOR; OLIK-1_MOOR; OSL2a_MOOR; OSL2f_MOOR; Physical Oceanography @ AWI; Polarstern; PS100; PS100/039-2, PS114_25-1,ARKR02-01; PS100/045-1, PS114_29-2; PS100/047-1, PS114_40-2; PS100/053-1, PS114_36-1; PS100/073-1, PS109_20-1; PS100/106-1, PS114_23-2; PS100/142-1, PS109_139-1; PS100/180-2, PS109_111-1; PS100/181-1, PS109_112-1; PS100/182-1, PS109_113-1; PS100/183-1, PS109_114-1; PS109; PS109_133-1, PS114_52-1; PS109_138-2, PS114_53-1; PS109_148-1, PS114_60-2; PS114; PS52; PS62; PS94; PS99/070-1, PS107_3-1; PS99.2; R071_MOOR; R1-1; R2-1; R290_MOOR; R3-1; R333_MOOR; R356_MOOR; R4-1; R5-1; Reference/source; SS-5_MOOR; StA_MOOR; Station label; Stor_MOOR; Total kinetic energy; V-319_MOOR; Velocity, east; Velocity, north; Vilk_MOOR; WBC_MOOR; WG1_MOOR; WG15_MOOR; WG4_MOOR; Wunsch-NN1_MOOR; Wunsch-NN2_MOOR; Y1_MOOR; Y2_MOOR; YP_MOOR
    Type: Dataset
    Format: text/tab-separated-values, 4806 data points
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  • 64
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: AC3; Air temperature at 2 m height; Arctic Amplification; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CMP22, SN 100218, WRMC No. 11024; Pyranometer, Kipp & Zonen, CMP22, SN 140005, WRMC No. 11027; Pyranometer, Kipp & Zonen, CMP22, SN 140005, WRMC No. 11028; Pyrgeometer, Eppley, PIR, SN 28859 F3, WRMC No. 11003; Pyrgeometer, Eppley, PIR, SN 28895 F3, WRMC No. 11004; Pyrheliometer, Kipp & Zonen, CHP 1, SN 100441, WRMC No. 11019; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 401760 data points
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  • 65
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: AC3; Air temperature at 2 m height; Arctic Amplification; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CMP22, SN 100218, WRMC No. 11024; Pyranometer, Kipp & Zonen, CMP22, SN 140005, WRMC No. 11027; Pyranometer, Kipp & Zonen, CMP22, SN 140005, WRMC No. 11028; Pyrgeometer, Eppley, PIR, SN 28859 F3, WRMC No. 11003; Pyrgeometer, Eppley, PIR, SN 28895 F3, WRMC No. 11004; Pyrheliometer, Kipp & Zonen, CHP 1, SN 100441, WRMC No. 11019; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 388015 data points
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  • 66
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: AC3; Air temperature at 2 m height; Arctic Amplification; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CMP22, SN 100218, WRMC No. 11024; Pyranometer, Kipp & Zonen, CMP22, SN 140005, WRMC No. 11027; Pyranometer, Kipp & Zonen, CMP22, SN 140005, WRMC No. 11028; Pyrgeometer, Eppley, PIR, SN 28859 F3, WRMC No. 11003; Pyrgeometer, Eppley, PIR, SN 28895 F3, WRMC No. 11004; Pyrheliometer, Kipp & Zonen, CHP 1, SN 100441, WRMC No. 11019; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 401760 data points
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  • 67
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: AC3; Air temperature at 2 m height; Arctic Amplification; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CMP22, SN 100218, WRMC No. 11024; Pyranometer, Kipp & Zonen, CMP22, SN 140005, WRMC No. 11027; Pyranometer, Kipp & Zonen, CMP22, SN 140005, WRMC No. 11028; Pyrgeometer, Eppley, PIR, SN 28859 F3, WRMC No. 11003; Pyrgeometer, Eppley, PIR, SN 28895 F3, WRMC No. 11004; Pyrheliometer, Kipp & Zonen, CHP 1, SN 100441, WRMC No. 11019; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 362769 data points
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  • 68
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: AC3; Air temperature at 2 m height; Arctic Amplification; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CMP22, SN 100218, WRMC No. 11024; Pyranometer, Kipp & Zonen, CMP22, SN 140005, WRMC No. 11027; Pyranometer, Kipp & Zonen, CMP22, SN 140005, WRMC No. 11028; Pyrgeometer, Eppley, PIR, SN 28859 F3, WRMC No. 11003; Pyrgeometer, Eppley, PIR, SN 28895 F3, WRMC No. 11004; Pyrheliometer, Kipp & Zonen, CHP 1, SN 100441, WRMC No. 11019; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 401760 data points
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  • 69
    Publication Date: 2024-04-30
    Keywords: Alkalinity, total; AWI_Paleo; DEPTH, sediment/rock; HE337; HE337/001-1; HE337-1_MUC-1; Heincke; Iron; MUC; MultiCorer; North Sea; Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Sulfate
    Type: Dataset
    Format: text/tab-separated-values, 75 data points
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  • 70
    Publication Date: 2024-04-30
    Description: On 20 March 2015, a total solar eclipse occurred over Ny-Ålesund (78.9° N, 11.9° E), Svalbard, in the high Arctic. It was the first time that the surface radiation components during the totality of a solar eclipse were measured by a Baseline Surface Radiation Network (BSRN) station. With the Ny-Ålesund long-term radiation data set as background (available at doi:10.1594/PANGAEA.150000), we present here the peculiarities of the radiation components and basic meteorology observed during the eclipse event. The supplementary data set contains the basic BSRN radiation and surface meteorological data in 1 min resolution for March 2015, and is available at doi:10.1594/PANGAEA.854326. The eclipse radiation data will be a useful auxiliary data set for further studies on micrometeorological surface-atmosphere exchange processes in the Svalbard environment, and may serve as a test case for radiative transfer studies.
    Keywords: AC3; Air temperature at 2 m height; Arctic Amplification; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CMP22, SN 100218, WRMC No. 11024; Pyranometer, Kipp & Zonen, CMP22, SN 140005, WRMC No. 11027; Pyranometer, Kipp & Zonen, CMP22, SN 140005, WRMC No. 11028; Pyrgeometer, Eppley, PIR, SN 28859 F3, WRMC No. 11003; Pyrgeometer, Eppley, PIR, SN 28895 F3, WRMC No. 11004; Pyrheliometer, Kipp & Zonen, CHP 1, SN 100441, WRMC No. 11019; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 400829 data points
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  • 71
    Publication Date: 2024-04-30
    Keywords: AWI_Paleo; DEPTH, sediment/rock; Fe extraction after Poulton and Canfield (2005); HE337; HE337/001-1; HE337-1_MUC-1; Heincke; Iron, acetate-leached; Iron, dithionite-citrate-leached; Iron, hydroxylamine-HCl-leached; Iron, oxalate-leached; MUC; MultiCorer; North Sea; Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Sample code/label; Sum; δ56/54Fe; δ56/54Fe, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 422 data points
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  • 72
    Publication Date: 2024-04-30
    Keywords: AWI_Paleo; DEPTH, sediment/rock; HE337; HE337/001-1; HE337-1_MUC-1; Heincke; MUC; MultiCorer; North Sea; Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Sample code/label; δ56/54Fe; δ56/54Fe, standard deviation; δ57/54Fe; δ57/54Fe, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 105 data points
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  • 73
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM22, SN 100216, WRMC No. 11021; Pyranometer, Kipp & Zonen, CM22, SN 100217, WRMC No. 11022; Pyranometer, Kipp & Zonen, CM22, SN 100219, WRMC No. 11023; Pyrgeometer, Eppley, PIR, SN 28858 F3, WRMC No. 11002; Pyrgeometer, Eppley, PIR, SN 28897 F3, WRMC No. 11001; Pyrheliometer, Kipp & Zonen, CHP 1, SN 100440, WRMC No. 11018; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 366850 data points
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  • 74
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM22, SN 100216, WRMC No. 11021; Pyranometer, Kipp & Zonen, CM22, SN 100217, WRMC No. 11022; Pyranometer, Kipp & Zonen, CM22, SN 100219, WRMC No. 11023; Pyrgeometer, Eppley, PIR, SN 28858 F3, WRMC No. 11002; Pyrgeometer, Eppley, PIR, SN 28897 F3, WRMC No. 11001; Pyrheliometer, Kipp & Zonen, CHP 1, SN 100440, WRMC No. 11018; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 401705 data points
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  • 75
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM22, SN 100216, WRMC No. 11021; Pyranometer, Kipp & Zonen, CM22, SN 100217, WRMC No. 11022; Pyranometer, Kipp & Zonen, CM22, SN 100219, WRMC No. 11023; Pyrgeometer, Eppley, PIR, SN 28858 F3, WRMC No. 11002; Pyrgeometer, Eppley, PIR, SN 28897 F3, WRMC No. 11001; Pyrheliometer, Kipp & Zonen, CHP 1, SN 100440, WRMC No. 11018; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 401740 data points
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  • 76
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM22, SN 100216, WRMC No. 11021; Pyranometer, Kipp & Zonen, CM22, SN 100217, WRMC No. 11022; Pyranometer, Kipp & Zonen, CM22, SN 100219, WRMC No. 11023; Pyrgeometer, Eppley, PIR, SN 28858 F3, WRMC No. 11002; Pyrgeometer, Eppley, PIR, SN 28897 F3, WRMC No. 11001; Pyrheliometer, Kipp & Zonen, CHP 1, SN 100440, WRMC No. 11018; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 388800 data points
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  • 77
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM22, SN 100216, WRMC No. 11021; Pyranometer, Kipp & Zonen, CM22, SN 100217, WRMC No. 11022; Pyranometer, Kipp & Zonen, CM22, SN 100219, WRMC No. 11023; Pyrgeometer, Eppley, PIR, SN 28858 F3, WRMC No. 11002; Pyrgeometer, Eppley, PIR, SN 28897 F3, WRMC No. 11001; Pyrheliometer, Kipp & Zonen, CHP 1, SN 100440, WRMC No. 11018; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 401229 data points
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  • 78
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM22, SN 100216, WRMC No. 11021; Pyranometer, Kipp & Zonen, CM22, SN 100217, WRMC No. 11022; Pyranometer, Kipp & Zonen, CM22, SN 100219, WRMC No. 11023; Pyrgeometer, Eppley, PIR, SN 28858 F3, WRMC No. 11002; Pyrgeometer, Eppley, PIR, SN 28897 F3, WRMC No. 11001; Pyrheliometer, Kipp & Zonen, CHP 1, SN 100440, WRMC No. 11018; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 388800 data points
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  • 79
    Publication Date: 2024-04-30
    Description: Here we provide dissolved inorganic nutrient data generated via the analysis of samples collected by autonomous instruments, in particular Remote Access Samplers (RAS) and associated sensor data (CTD-O2, PAR, Fluorescence, pH, pCO2). Data was collected within the frame of the AWI Frontiers in Arctic Marine Monitoring (FRAM) Programme and HAUSGARTEN LTO. A report is also provided, which includes basic data about the data, which are associated with two Polarstern expeditions; PS99 (grant AWI_PS99_0) and PS107 (AWI_PS107_05).
    Keywords: Arctic Ocean nutrients; ARK-XXX/1.2; Carbon dioxide, partial pressure; Chlorophyll a; Corrected; Cruise/expedition; Date/time end; Density, sigma-theta (0); DEPTH, water; derived from AMSR-2 and Sentinel 3A OLCI satellites; Event label; F4-S-1; FRAM; FRAM Moorings; FRAM sensor data; Fram Strait; Fram Strait Nutrients; FRontiers in Arctic marine Monitoring; HAUSGARTEN Long Term Observatory; HG-EGC-3; HG-IV-FEVI-34; HG-IV-S-1; Identification; LATITUDE; LONGITUDE; Method comment; Mooring (long time); MOORY; Name; Nitrate and Nitrite; Nitrate and Nitrite, correction factor; Nitrate and Nitrite, standard deviation; Nitrite; Nitrite, correction factor; Nitrite, standard deviation; North Greenland Sea; Oxygen; Oxygen saturation; Persistent Identifier; pH; Phosphate; Phosphate, correction factor; Phosphate, standard deviation; Polarstern; PS99/048-7, PS107_23-1; PS99/067-1, PS107_44-1; PS99/070-1, PS107_3-1; PS99/072-1, PS107_3-2; PS99.2; Quality flag; Remote Access Samplers (RAS); Salinity; Sea ice concentration; Silicate; Silicate, correction factor; Silicate, standard deviation; Station label; Temperature, water; Uncorrected
    Type: Dataset
    Format: text/tab-separated-values, 4254 data points
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  • 80
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM11, SN 913708, WRMC No. 11011; Pyranometer, Kipp & Zonen, CM11, SN 913711, WRMC No. 11009; Pyranometer, Kipp & Zonen, CM11, SN 913712, WRMC No. 11016; Pyrgeometer, Eppley, PIR, SN 28858 F3, WRMC No. 11002; Pyrgeometer, Eppley, PIR, SN 28897 F3, WRMC No. 11001; Pyrheliometer, Eppley, NIP, SN 28058 E6, WRMC No. 13017; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 401269 data points
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  • 81
    Publication Date: 2024-04-30
    Description: This dataset includes physiological parameters of three Hawaiian coral species (Porites compressa, Porites lobata, and Montipora capitata) over 22-month mesocosm experiment. The corals were exposed to one of four treatments: control, ocean acidification, ocean warming, or combined future ocean conditions.
    Keywords: Alkalinity, total; Alkalinity, total, standard deviation; Animalia; Aragonite saturation state; Aragonite saturation state, standard deviation; Behaviour; Benthic animals; Benthos; Bicarbonate ion; Bicarbonate ion, standard deviation; Biomass; Biomass/Abundance/Elemental composition; Calcification/Dissolution; Calcification rate of calcium carbonate; Calcite saturation state; Calcite saturation state, standard deviation; Calculated using CO2SYS; Calculated using seacarb after Nisumaa et al. (2010); Calculated using seacarb after Orr et al. (2018); Carbon, inorganic, dissolved; Carbon, inorganic, dissolved, standard deviation; Carbon, organic, total, flux; Carbon, organic, total, per dry mass, flux; Carbonate ion; Carbonate ion, standard deviation; Carbonate system computation flag; Carbon dioxide; Carbon dioxide, standard deviation; Cnidaria; Coast and continental shelf; Code; Containers and aquaria (20-1000 L or 〈 1 m**2); Contribution; Entire community; EXP; Experiment; Feeding rate; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Fugacity of carbon dioxide in seawater, standard deviation; Gross photosynthesis rate, oxygen; Haleiwa; Identification; Laboratory experiment; Lipid content; Lipids; Lipids, per unit dry mass; MokuoLoe_OA; Montipora capitata; Mortality/Survival; Net photosynthesis rate, oxygen; North Pacific; OA-ICC; Ocean Acidification International Coordination Centre; Partial pressure of carbon dioxide, standard deviation; Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); pH; pH, standard deviation; Porites compressa; Porites lobata; Potentiometric titration; Primary production/Photosynthesis; Protein per surface area; Proteins; Proteins, per unit dry mass; Respiration; Respiration rate, oxygen; Rocky-shore community; Salinity; Salinity, standard deviation; Sampan_Channel; Single species; Site; Species, unique identification; Species, unique identification (Semantic URI); Species, unique identification (URI); Spectrophotometric; Symbiodiniaceae; Symbiodiniaceae, per dry mass; Temperature; Temperature, water; Temperature, water, standard deviation; Treatment; Tropical; Type of study; Waimanalo; Whiteness
    Type: Dataset
    Format: text/tab-separated-values, 16188 data points
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  • 82
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM11, SN 913704, WRMC No. 11010; Pyranometer, Kipp & Zonen, CM11, SN 913707, WRMC No. 11014; Pyranometer, Kipp & Zonen, CM11, SN 913709, WRMC No. 11015; Pyrgeometer, Eppley, PIR, SN 28859 F3, WRMC No. 11003; Pyrgeometer, Eppley, PIR, SN 28895 F3, WRMC No. 11004; Pyrheliometer, Eppley, NIP, SN 28692 E6, WRMC No. 11005; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 371996 data points
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  • 83
    Publication Date: 2024-04-30
    Description: This data set contains the benthic foraminifera counts of 190 samples off NW Africa. 100 samples come from gravity core GeoB9512-5 (15.33 N, 17.36 W, 793 mbsl), 64 from core GeoB9506-1 (15.61 N, 18.35 W, 2956 mbsl), 9 from core tops of the NE Atlantic (GeoB9506-3, GeoB9508-4, GeoB9535-5, GeoB9534-4, GeoB9529-1, GeoB9532-1, GeoB9533-3, GeoB9512-4, GeoB9510-3) and 17 from core tops of the SE Atlantic (T89-14, T89-16, T89-11, T89-12, T89-15, T89-16, T89-17, T89-19, T89-20, T89-21, T89-22, T89-13, T89-23, T89-24, T89-25, T89-28, T89-47). The samples from the gravity cores were obtained from working and in some cases archive halves with the help of the GeoB Core Collection at the MARUM – Center for Marine Environmental Sciences, University of Bremen, Germany. 100 fresh samples from GeoB9512-5 and 31 samples of GeoB9506-1 were (1) washed with deionized water through a 63 µm sieve, then (2) dried for less than 24 hours at 45°C, and (3) dry sieved through 63 µm, 125 µm, 150 µm, and 250 µm. Finally, the washed sediment with a size 〉150 µm was used to retrieve at least 250 specimens when possible for each sample. The remaining number of analyzed samples from GeoB9506-1 (33 samples) and core tops included in this research were provided by the GeoB Core Repository collection archive and consisted of washed sediments 〉150 µm. Washed samples from the SE Atlantic were kindly provided by Dr. Enno Schefuss (Scheefuss et al., 2004). Taxonomy identification was made at a genus level based on Loeblich, A. R. and Tappan, H. (1987) and Rönnfeld, W. (2020)), while species identification was based on various references including Brady, H. B. (1884), Van Morkhoven et al. (1986) and Holbourn et al. (2013). A total of 48.297 benthic foraminifera were recovered and analyzed. 238 taxonomical units were identified, including 112 genera and 182 species. The data was used to reconstruct the paleoenvironmental conditions of bottom water during the last deglaciation in the NE Atlantic. The reported microhabitats and oxygen conditions for most species were extracted from various references including Murray (1991), Murray (2006) Kaiho (1994) and Kranner et al. (2022) among others.
    Keywords: 291; 293; 295; 297; 314; 317; 318; 319; 320; Adelosina spp.; Adercotryma glomeratum; Ammobaculites agglutinans; Ammodiscus incertus; Ammoglobigerina globigeriniformis; Ammonia falsobeccarii; Amphicoryna cf. scalaris; Anomalina sp.; Anomalinoides globulosus; Aschemonella sp.; Astacolus albatrossi; Astacolus sp.; Astrononion cf. stelligerum; Astrononion sp.; Astrorhiza spp.; BC; Benthic foraminifera; Bolivina cf. advena; Bolivina cf. dilatata; Bolivina cf. punctata; Bolivina cf. spathulata; Bolivina lobata; Bolivina sp.; Bolivina subaenariensis var. mexicana; Box corer; Brizalina alata; Bulimina aculeata; Bulimina buchiana; Bulimina elegans; Bulimina exilis; Bulimina marginata; Bulimina spp.; Bulimina striata; Buzasina galeata; Buzasina ringens; Cancris auriculus; Cassidulina laevigata; Cassidulina teretis; Center for Marine Environmental Sciences; Ceratobulimina contraria; Chilostomella oolina; Chilostomella ovoidea; Cibicidoides cicatricosus; Cibicidoides grosseperforatus; Cibicidoides mundulus; Cibicidoides pachyderma; Cibicidoides robertsonianus; Cibicidoides sp.; Cibicidoides subhaidingerii; Cibicidoides wuellerstorfi; Core tops; Cornuspira carinata; Cornuspira cf. involvens; Cornuspira cf. selseyensis; Counting 〉150 µm fraction; Cribroelphidium cf. williamsoni; Cushmanina plumigera; Cushmanina sp.; Cyclammina cancellata; Cyclammina trullisata; Cystammina pauciloculata; Dentalina mutabilis; Dentalina sp.; DEPTH, sediment/rock; Discammina compressa; Discorbis sp.; Dorothia cf. pseudoturris; Eggerella bradyi; Eggerelloides cf. scaber; Ehrenbergina trigona; Elevation of event; Elphidium cf. articulatum; Elphidium crispum; Elphidium macellum; Epistominella exigua; Eratidus foliaceus; Event label; Evolvocassidulina bradyi; Favulina hexagona; Fissurina cf. claricurta; Fissurina cf. laevigata; Fissurina cf. pacifica; Fissurina cf. staphyllearia; Fissurina longispina; Fissurina marginata; Fissurina orbignyana; Fissurina sp.; Fissurina spinosa; Fissurina stschedrinae; Foraminifera, benthic, total; Fursenkoina bradyi; Fursenkoina complanata; Fursenkoina sp.; Gaudryina spp.; GeoB9506-3; GeoB9508-4; GeoB9510-3; GeoB9512-4; GeoB9529-1; GeoB9532-1; GeoB9533-3; GeoB9534-4; GeoB9535-5; Glandulina laevigata; Glandulina ovula; Glandulina sp.; Globobulimina affinis; Globobulimina pacifica; Globobulimina sp.; Globobulimina turgida; Globocassidulina cf. subglobosa; Globocassidulina sp.; Glomospira charoides; Gravity core; Grigelis pyrula; Gyroidina sp.; Gyroidina spp.; Hansenisca soldanii; Hanzawaia boueana; Haplophragmium cf. fontinense; Haplophragmoides emaciatus; Haplophragmoides latidorsatus; Haplophragmoides spp.; Heterolepa bradyi; Hoeglundina elegans; Hormosina bacillaris; Hormosina globulifera; Hormosina sp.; Hyalinea balthica; Hyalinonetrion gracillimum; Karreriella bradyi; Karreriella siphonella; Karreriella sp.; Laevidentalina communis; Laevidentalina emaciata; Laevidentalina haueri; Lagena cf. stelligera; Lagena cf. substriata; Lagena cf. sulcata; Lagena hispida; Lagenammina arenulata; Lagenammina cf. difflugiformis; Lagenammina planktonica; Lagenammina sp.; Lagena nebulosa; Lagena semistriata; Lagena sp.; Lagena striata; Lagena sulcata; Lagenosolenia cf. pacifica; Laticarinina pauperata; Latitude of event; Lenticulina cf. cushmani; Lenticulina cf. denticulifera; Lenticulina cf. thalmanni; Lenticulina gibba; Lenticulina iota; Lenticulina orbicularis; Lenticulina sp.; Lingulina carinata; Lobatula lobatula; Longitude of event; M65/1; Marginulina sp.; Martinottiella communis; MARUM; Melonis barleeanus; Melonis pompilioides; Melonis sp.; Meteor (1986); Miliolinella cf. circularis; Miliolinella valvularis; MUC; MultiCorer; Neolenticulina variabilis; NIOZ89; Nodellum membranaceum; Nodosaria cf. vertebralis; Nonion cf. polystomum; Nonion cf. victoriense; Nonionella turgida; Nonion fabum; Nonionina sp.; North Atlantic; North Atlantic Deep Water; NW Africa; Oolina cf. globosa; Oolina seminuda; Oridorsalis umbonatus; Osangularia culter; Planorbulina spp.; Planularia magnifica; Planulina ariminensis; Pleurostomella spp.; Procerolagena distoma; Pseudonodosaria sp.; Pseudopyrgo millettii; Pullenia bulloides; Pullenia quinqueloba; Pyrgo cf. simplex; Pyrgo cf. subsphaerica; Pyrgo comata; Pyrgo depressa; Pyrgoella sphaera; Pyrgo elongata; Pyrgo murrhina; Pyrgo serrata; Pyrgo sp.; Pyrgo williamsoni; Quinqueloculina cf. suborbicularis; Quinqueloculina laevigata; Quinqueloculina seminulum; Quinqueloculina sp.; Rectuvigerina cf. elongatastriata; Recurvoides turbinatus; Reophax cf. dentaliniformis; Reophax sp.; Rhabdammina sp.; Rhizammina algaeformis; Rhizammina spp.; Robertinoides bradyi; Rutherfordoides rotundata; Saccammina sp.; Saccammina sphaerica; Saccorhiza spp.; Saracenaria cf. italica; Saracenaria italica; Saracenaria sp.; Sigmoilopsis schlumbergeri; Siphonina cf. reticulata; Southeast Atlantic; Sphaeroidina bulloides; Spiroloculina depressa; Spiroloculina rotunda; Spiroplectinella spp.; Spirosigmoilina tenuis; Subreophax aduncus; T89-11; T89-12; T89-13; T89-14; T89-15; T89-16; T89-17; T89-19; T89-20; T89-21; T89-22; T89-23; T89-24; T89-25; T89-28; T89-47; Taxonomy; Textularia cf. turris; Textularia hystrix; Textularia sp.; Trifarina angulosa; Trifarina sp.; Triloculina insignis; Triloculina sp.; Triloculina tricarinata; Triloculina trigonula; Tyro; Uvigerina cf. tenuistriata; Uvigerina hispida; Uvigerina mediterranea; Uvigerina peregrina; Uvigerina proboscidea; Uvigerina sp.; Vaginulina spinigera; Vaginulina spp.; Valvulineria bradyana; Veleroninoides scitulus; Virgulina subsquamosa
    Type: Dataset
    Format: text/tab-separated-values, 45030 data points
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  • 84
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM11, SN 913704, WRMC No. 11010; Pyranometer, Kipp & Zonen, CM11, SN 913707, WRMC No. 11014; Pyranometer, Kipp & Zonen, CM11, SN 913709, WRMC No. 11015; Pyrgeometer, Eppley, PIR, SN 28859 F3, WRMC No. 11003; Pyrgeometer, Eppley, PIR, SN 28895 F3, WRMC No. 11004; Pyrheliometer, Eppley, NIP, SN 28692 E6, WRMC No. 11005; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 398559 data points
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  • 85
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM11, SN 913704, WRMC No. 11010; Pyranometer, Kipp & Zonen, CM11, SN 913707, WRMC No. 11014; Pyranometer, Kipp & Zonen, CM11, SN 913709, WRMC No. 11015; Pyrgeometer, Eppley, PIR, SN 28859 F3, WRMC No. 11003; Pyrgeometer, Eppley, PIR, SN 28895 F3, WRMC No. 11004; Pyrheliometer, Eppley, NIP, SN 28692 E6, WRMC No. 11005; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 401586 data points
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  • 86
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM11, SN 913704, WRMC No. 11010; Pyranometer, Kipp & Zonen, CM11, SN 913707, WRMC No. 11014; Pyranometer, Kipp & Zonen, CM11, SN 913709, WRMC No. 11015; Pyrgeometer, Eppley, PIR, SN 28859 F3, WRMC No. 11003; Pyrgeometer, Eppley, PIR, SN 28895 F3, WRMC No. 11004; Pyrheliometer, Eppley, NIP, SN 28692 E6, WRMC No. 11005; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 401546 data points
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  • 87
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM11, SN 913704, WRMC No. 11010; Pyranometer, Kipp & Zonen, CM11, SN 913707, WRMC No. 11014; Pyranometer, Kipp & Zonen, CM11, SN 913709, WRMC No. 11015; Pyrgeometer, Eppley, PIR, SN 28859 F3, WRMC No. 11003; Pyrgeometer, Eppley, PIR, SN 28895 F3, WRMC No. 11004; Pyrheliometer, Eppley, NIP, SN 28692 E6, WRMC No. 11005; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 388800 data points
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  • 88
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM11, SN 913704, WRMC No. 11010; Pyranometer, Kipp & Zonen, CM11, SN 913707, WRMC No. 11014; Pyranometer, Kipp & Zonen, CM11, SN 913709, WRMC No. 11015; Pyrgeometer, Eppley, PIR, SN 28859 F3, WRMC No. 11003; Pyrgeometer, Eppley, PIR, SN 28895 F3, WRMC No. 11004; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 345104 data points
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  • 89
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM11, SN 913704, WRMC No. 11010; Pyranometer, Kipp & Zonen, CM11, SN 913707, WRMC No. 11014; Pyranometer, Kipp & Zonen, CM11, SN 913709, WRMC No. 11015; Pyrgeometer, Eppley, PIR, SN 28859 F3, WRMC No. 11003; Pyrgeometer, Eppley, PIR, SN 28895 F3, WRMC No. 11004; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 356669 data points
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  • 90
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM11, SN 913704, WRMC No. 11010; Pyranometer, Kipp & Zonen, CM11, SN 913707, WRMC No. 11014; Pyranometer, Kipp & Zonen, CM11, SN 913709, WRMC No. 11015; Pyrgeometer, Eppley, PIR, SN 28859 F3, WRMC No. 11003; Pyrgeometer, Eppley, PIR, SN 28895 F3, WRMC No. 11004; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 356882 data points
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  • 91
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM11, SN 913704, WRMC No. 11010; Pyranometer, Kipp & Zonen, CM11, SN 913707, WRMC No. 11014; Pyranometer, Kipp & Zonen, CM11, SN 913709, WRMC No. 11015; Pyrgeometer, Eppley, PIR, SN 28859 F3, WRMC No. 11003; Pyrgeometer, Eppley, PIR, SN 28895 F3, WRMC No. 11004; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 322558 data points
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  • 92
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM11, SN 913704, WRMC No. 11010; Pyranometer, Kipp & Zonen, CM11, SN 913707, WRMC No. 11014; Pyranometer, Kipp & Zonen, CM11, SN 913709, WRMC No. 11015; Pyrgeometer, Eppley, PIR, SN 28859 F3, WRMC No. 11003; Pyrgeometer, Eppley, PIR, SN 28895 F3, WRMC No. 11004; Pyrheliometer, Eppley, NIP, SN 28692 E6, WRMC No. 11005; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 387264 data points
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  • 93
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    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM11, SN 913708, WRMC No. 11011; Pyranometer, Kipp & Zonen, CM11, SN 913711, WRMC No. 11009; Pyranometer, Kipp & Zonen, CM11, SN 913712, WRMC No. 11016; Pyrgeometer, Eppley, PIR, SN 28858 F3, WRMC No. 11002; Pyrgeometer, Eppley, PIR, SN 28897 F3, WRMC No. 11001; Pyrheliometer, Eppley, NIP, SN 28058 E6, WRMC No. 13017; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 401446 data points
    Location Call Number Expected Availability
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  • 94
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    Unknown
    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM11, SN 913708, WRMC No. 11011; Pyranometer, Kipp & Zonen, CM11, SN 913711, WRMC No. 11009; Pyranometer, Kipp & Zonen, CM11, SN 913712, WRMC No. 11016; Pyrgeometer, Eppley, PIR, SN 28858 F3, WRMC No. 11002; Pyrgeometer, Eppley, PIR, SN 28897 F3, WRMC No. 11001; Pyrheliometer, Eppley, NIP, SN 28058 E6, WRMC No. 13017; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 388572 data points
    Location Call Number Expected Availability
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  • 95
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    Unknown
    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM11, SN 913708, WRMC No. 11011; Pyranometer, Kipp & Zonen, CM11, SN 913711, WRMC No. 11009; Pyranometer, Kipp & Zonen, CM11, SN 913712, WRMC No. 11016; Pyrgeometer, Eppley, PIR, SN 28858 F3, WRMC No. 11002; Pyrgeometer, Eppley, PIR, SN 28897 F3, WRMC No. 11001; Pyrheliometer, Eppley, NIP, SN 28058 E6, WRMC No. 13017; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 401516 data points
    Location Call Number Expected Availability
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  • 96
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    Unknown
    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM11, SN 913708, WRMC No. 11011; Pyranometer, Kipp & Zonen, CM11, SN 913711, WRMC No. 11009; Pyranometer, Kipp & Zonen, CM11, SN 913712, WRMC No. 11016; Pyrgeometer, Eppley, PIR, SN 28858 F3, WRMC No. 11002; Pyrgeometer, Eppley, PIR, SN 28897 F3, WRMC No. 11001; Pyrheliometer, Eppley, NIP, SN 28058 E6, WRMC No. 13017; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 388800 data points
    Location Call Number Expected Availability
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  • 97
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    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-04-30
    Keywords: Alkalinity, total; Ammonium; Comment; Core; DEPTH, sediment/rock; GCUWI; Gravity corer, UWITEC; IMCOAST/IMCONet; Impact of climate induced glacier melt on marine coastal systems, Antarctica; Ion chromatography (Metrohm IC Net 2.3); Iron, colorimetric, Ferrozine (Stookey, 1970); Iron 2+; Potter_Cove_STA16; Potter Cove, King George Island, Antarctic Peninsula; Priority Programme 1158 Antarctic Research with Comparable Investigations in Arctic Sea Ice Areas; Spectrophotometry (Sarazin et al., 1999), Multiskan microplate reader; SPP1158; Sulfate
    Type: Dataset
    Format: text/tab-separated-values, 90 data points
    Location Call Number Expected Availability
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  • 98
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    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-04-30
    Keywords: Alkalinity, total; Ammonium; Comment; Comment 2 (continued); Conductometry; Core; DEPTH, sediment/rock; IMCOAST/IMCONet; Impact of climate induced glacier melt on marine coastal systems, Antarctica; Ion chromatography (Metrohm IC Net 2.3); Iron, colorimetric, Ferrozine (Stookey, 1970); Iron 2+; MC-ICP-MS Thermo-Finnigan Neptune; Potter_Cove_STA10; Potter Cove, King George Island, Antarctic Peninsula; Priority Programme 1158 Antarctic Research with Comparable Investigations in Arctic Sea Ice Areas; PUC; Push corer; SPP1158; Sulfate; Titration with HCl; δ56/54Fe; δ56/54Fe, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 199 data points
    Location Call Number Expected Availability
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  • 99
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    Unknown
    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM22, SN 100216, WRMC No. 11021; Pyranometer, Kipp & Zonen, CM22, SN 100217, WRMC No. 11022; Pyranometer, Kipp & Zonen, CM22, SN 100219, WRMC No. 11023; Pyrgeometer, Eppley, PIR, SN 28858 F3, WRMC No. 11002; Pyrgeometer, Eppley, PIR, SN 28897 F3, WRMC No. 11001; Pyrheliometer, Kipp & Zonen, CHP 1, SN 100440, WRMC No. 11018; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 356809 data points
    Location Call Number Expected Availability
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  • 100
    facet.materialart.
    Unknown
    PANGAEA
    In:  Alfred Wegener Institute - Research Unit Potsdam
    Publication Date: 2024-04-30
    Keywords: Air temperature at 2 m height; AWIPEV; AWIPEV_based; BARO; Barometer; Baseline Surface Radiation Network; BSRN; DATE/TIME; Diffuse radiation; Direct radiation; HEIGHT above ground; Humidity, relative; HYGRO; Hygrometer; Long-wave downward radiation; Long-wave upward radiation; Monitoring station; MONS; NYA; Ny-Ålesund; Ny-Ålesund, Spitsbergen; Pyranometer, Kipp & Zonen, CM22, SN 100216, WRMC No. 11021; Pyranometer, Kipp & Zonen, CM22, SN 100217, WRMC No. 11022; Pyranometer, Kipp & Zonen, CM22, SN 100219, WRMC No. 11023; Pyrgeometer, Eppley, PIR, SN 28858 F3, WRMC No. 11002; Pyrgeometer, Eppley, PIR, SN 28897 F3, WRMC No. 11001; Pyrheliometer, Kipp & Zonen, CHP 1, SN 100440, WRMC No. 11018; Short-wave downward (GLOBAL) radiation; Short-wave upward (REFLEX) radiation; Station pressure; Thermometer
    Type: Dataset
    Format: text/tab-separated-values, 371146 data points
    Location Call Number Expected Availability
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