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  • PANGAEA  (9,651)
  • Elsevier  (2,549)
  • American Association for the Advancement of Science
  • Cambridge University Press
  • Springer Science + Business Media
  • 2020-2024  (12,206)
  • 2000-2004  (2)
  • 1995-1999  (2)
  • 2020  (12,206)
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Language
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Year
  • 1
    Electronic Resource
    Electronic Resource
    Amsterdam : Elsevier
    Physics Letters B 294 (1992), S. 466-478 
    ISSN: 0370-2693
    Source: Elsevier Journal Backfiles on ScienceDirect 1907 - 2002
    Topics: Physics
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Amsterdam : Elsevier
    Physics Letters B 317 (1993), S. 474-484 
    ISSN: 0370-2693
    Source: Elsevier Journal Backfiles on ScienceDirect 1907 - 2002
    Topics: Physics
    Type of Medium: Electronic Resource
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  • 3
    Publication Date: 2023-03-16
    Description: Data underlying figures 1, 2, 3 and 5. Figure 1: Monthly mass changes of the Greenland Ice Sheet from GRACE/GRACE-FO and SMB-D (2003-2019) Figure 2: Biennial mass balance and its components from GRACE/GRACE-FO and SMB-D (2003-2018) for the Greenland Ice Sheet, along with regional estimates for 2017-2018 for East and West. Figure 3: Rate of mass change for year 2019 from GRACE/GRACE-FO and SMB-D Figure 5: Annual mass balance and its main components from SMB-D (1948-2019) and GRACE/GRACE-FO (2003-2019)
    Keywords: GRACE; GRACE-FO; Greenland; Helmholtz-Verbund Regionale Klimaänderungen = Helmholtz Climate Initiative (Regional Climate Change); ice dynamic discharge; ice sheet mass balance; REKLIM; sea-level rise; surface mass balance
    Type: Dataset
    Format: application/zip, 6 datasets
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  • 4
    Publication Date: 2023-03-16
    Description: Here, we provide the raw pollen data archived in three Siberian lake sediment cores spanning the mid-Holocene to the present (7.6-0 cal ka BP), from northern typical tundra to southern open larch forest in the Omoloy region. There are three cores: 1. 14-OM-20B, Lat. / °: 70.53, Lon. / °: 132.91, Ele. / m a.s.l.: 52, Modern vegetation: open larch forest, Lake area / km2: 0.26, Maximal depth / m: 3.4 2. 14-OM-02B, Lat. / °: 70.72, Lon. / °: 132.67, Ele. / m a.s.l.: 58, Modern vegetation: forest tundra, Lake area / km2: 0.08, Maximal depth / m: 3.5 3. 14-OM-12A, Lat. / °: 70.96, Lon. / °: 132.57, Ele. / m a.s.l.: 60, Modern vegetation: tundra, Lake area / km2: 0.09, Maximal depth / m: 4.5 Three lake sediment cores, 14OM12A (33 cm long), 14OM02B (49.5 cm long) and 14OM20B (86 cm long), were recovered from three sites using a UWITEC gravity corer (6 cm internal diameter) equipped with a hammer tool in July 2014. From the three cores, 16 bulk organic carbon samples were selected because of the lack of macrofossil remains and radiocarbon dated using accelerator mass spectrometry (AMS) at Poznań radiocarbon laboratory of Adam Mickiewicz University, Poland. In addition, 30 freeze-dried samples per core at 0.25 or 0.5 cm intervals between 0 and 15 cm were analysed for 210Pb/137Cs at the Liverpool University Environmental Radioactivity Laboratory. In this project, we analyse pollen and sedaDNA (Liu et al., 2020; doi:10.5061/dryad.69p8cz900) from three lake sediment cores from the Omoloy region in north-eastern Siberia (northern Yakutia), which are currently surrounded by different vegetation types ranging from typical tundra to open larch forest. First, our aim is to compare sedaDNA with the pollen data to see whether both methods track the same pattern with respect to compositional changes and diversity changes across the northern Russian treeline zone or are complementary to each other. Second, we reconstruct the mid- to late-Holocene changes of vegetation composition along a north–south transect. Third, we use the sedaDNA data to reconstruct variations in species richness and relate this to vegetation and climate change.
    Keywords: AWI_Envi; dating; Lake Omoloy; mid-holocene; north-eastern Siberia; Polar Terrestrial Environmental Systems @ AWI; Pollen
    Type: Dataset
    Format: application/zip, 5 datasets
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  • 5
    Publication Date: 2023-03-14
    Description: Here we present soil characteristics from Alpine European larch and Swiss pine forests, as well as mixed forests. The forests are located in the LTSER area "Val Mazia/Matschertal" in the Vinschgau Valley, South Tyrol, Italy. Each three replicates from each forest type (larch, pine, and mixed) were sampled in late summer 2017.
    Keywords: Alpine forests; Calculated, see reference(s); Carbon/Nitrogen ratio; DEPTH, soil; Elevation of event; Event label; Exposition; Forest composition; HydroSenseII (Campbell Scientific, Logan, Utah); Inclination; L100_1; L100_2; L100_3; Larch; Latitude of event; Layer thickness; Longitude of event; LTER Italy; LZ50_1; LZ50_2; LZ50_3; Moisture; MULT; Multiple investigations; Organic content; pH; pH-multimeter (HI2020 edge, Hanna Instruments, Woonsocket, Rhode Island); Sample ID; soil macro-invertebrates; South Tyrol, Italy; Swiss pine; Z100_1; Z100_2; Z100_3
    Type: Dataset
    Format: text/tab-separated-values, 243 data points
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  • 6
    Publication Date: 2023-03-14
    Keywords: Center for Marine Environmental Sciences; CO2; DATE/TIME; MARUM; Massachusetts, United States of America; Microoptode; Oxygen; pH; Plum_Island_Estuary; profiles; salt marsh; tidal pond
    Type: Dataset
    Format: text/tab-separated-values, 2741 data points
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  • 7
    Publication Date: 2023-03-14
    Keywords: Center for Marine Environmental Sciences; CO2; DATE/TIME; MARUM; Massachusetts, United States of America; Microoptode; Oxygen; pH; Plum_Island_Estuary; profiles; salt marsh; tidal pond
    Type: Dataset
    Format: text/tab-separated-values, 2691 data points
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  • 8
    Publication Date: 2023-03-14
    Keywords: Center for Marine Environmental Sciences; CO2; DATE/TIME; MARUM; Massachusetts, United States of America; Microoptode; Oxygen; pH; Plum_Island_Estuary; profiles; Radiation, photosynthetically active; salt marsh; tidal pond
    Type: Dataset
    Format: text/tab-separated-values, 105 data points
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  • 9
    Publication Date: 2023-03-14
    Keywords: Center for Marine Environmental Sciences; CO2; DATE/TIME; MARUM; Massachusetts, United States of America; Microoptode; Oxygen; pH; Plum_Island_Estuary; profiles; salt marsh; Temperature, water; tidal pond
    Type: Dataset
    Format: text/tab-separated-values, 1426 data points
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  • 10
    Publication Date: 2023-03-14
    Keywords: Center for Marine Environmental Sciences; CO2; DATE/TIME; MARUM; Massachusetts, United States of America; Microoptode; Oxygen; pH; Plum_Island_Estuary; profiles; Salinity; salt marsh; tidal pond
    Type: Dataset
    Format: text/tab-separated-values, 3 data points
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  • 11
    Publication Date: 2023-03-14
    Keywords: Center for Marine Environmental Sciences; CO2; DEPTH, water; Event label; Great_Sippewissett_marsh; Habitat; MARUM; Massachusetts, United States of America; Michigan, United States; Oxygen; Parker_River; pH; Plum_Island_Estuary_marshes; profiles; salt marsh; tidal pond; Vegetation type
    Type: Dataset
    Format: text/tab-separated-values, 2144 data points
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  • 12
    Publication Date: 2023-03-14
    Keywords: Barium/Calcium ratio; Carbon dioxide, partial pressure; Growth rate per area; Identification; Linear extension; Lithium/Calcium ratio; Magnesium/Calcium ratio; Magnesium/Lithium ratio; pH; pH, standard deviation; Salinity; Species; Temperature, water; Temperature, water, standard deviation; δ11B, borate; δ11B, carbonate; δ11B, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 708 data points
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  • 13
    Publication Date: 2023-03-14
    Keywords: 337-YuV; ALTITUDE; Ayon Island; Bicarbonate ion; Calcium ion; Calculated; Chaun-Chukotka; Chloride ion; Chukotka, Russia; Deposit type; deuterium; heavy oxygen; Holocene; ice wedge; Late Pleistocene; Magnesium ion; pH; Sample ID; Sodium and potassium ions; Stable isotope; Sulfate ion; Total dissolved solids
    Type: Dataset
    Format: text/tab-separated-values, 170 data points
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  • 14
    Publication Date: 2023-03-14
    Keywords: 337-YuV; ALTITUDE; Ayon Island; Bicarbonate ion; Calcium; Chaun-Chukotka; Chloride; Chukotka, Russia; deuterium; Event label; heavy oxygen; Holocene; ice wedge; Late Pleistocene; Latitude of event; Longitude of event; Magnesium; pH; Sample comment; Sample ID; Sodium and potassium ions; Stable isotope; Sulfate; Titration; Total dissolved solids
    Type: Dataset
    Format: text/tab-separated-values, 435 data points
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  • 15
    Publication Date: 2023-03-14
    Description: This dataset includes alkalinity measurements of a loess weathering column experiment, which was conducted under laboratory conditions with atmospheric pCO2.
    Keywords: Alkalinity, total; Alkalinity, total, standard deviation; DATE/TIME; Duration, number of days; Paleo Modelling; PalMod; pH; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 179 data points
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  • 16
    Publication Date: 2023-03-14
    Description: This dataset includes alkalinity measurements of a loess weathering column experiment, which was conducted under laboratory conditions with saturated pCO2.
    Keywords: Alkalinity, total; Alkalinity, total, standard deviation; DATE/TIME; Duration, number of days; Paleo Modelling; PalMod; pH; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 175 data points
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  • 17
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; BC; BOX_1BC04; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; EMIGAS; EMIGAS-I; Greenhouse gas emission zones in coastal systems: influence of coastal runoff and benthic metabolism; Gulf of Cadiz; Gulf of Cádiz, Atlantic Ocean; Mytilus; North East Atlantic; pH; porewater; Porosity, fractional; Potentiometric; Salinity; sediment; Sediment porosity, determined by water loss after drying to constant temperature; Temperature, water; Titration potentiometric, 794 Basic Titrino (Metrohm); total alkalinity (TA)
    Type: Dataset
    Format: text/tab-separated-values, 54 data points
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  • 18
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; BC; BOX_1GL01; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; EMIGAS; EMIGAS-I; Greenhouse gas emission zones in coastal systems: influence of coastal runoff and benthic metabolism; Gulf of Cadiz; Gulf of Cádiz, Atlantic Ocean; Mytilus; North East Atlantic; pH; porewater; Porosity, fractional; Potentiometric; Salinity; sediment; Sediment porosity, determined by water loss after drying to constant temperature; Temperature, water; Titration potentiometric, 794 Basic Titrino (Metrohm); total alkalinity (TA)
    Type: Dataset
    Format: text/tab-separated-values, 99 data points
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  • 19
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; BC; BOX_1GL02; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; EMIGAS; EMIGAS-I; Greenhouse gas emission zones in coastal systems: influence of coastal runoff and benthic metabolism; Gulf of Cadiz; Gulf of Cádiz, Atlantic Ocean; Mytilus; North East Atlantic; pH; porewater; Porosity, fractional; Potentiometric; Salinity; sediment; Sediment porosity, determined by water loss after drying to constant temperature; Temperature, water; Titration potentiometric, 794 Basic Titrino (Metrohm); total alkalinity (TA)
    Type: Dataset
    Format: text/tab-separated-values, 94 data points
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  • 20
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; BC; BOX_1GL03; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; EMIGAS; EMIGAS-I; Greenhouse gas emission zones in coastal systems: influence of coastal runoff and benthic metabolism; Gulf of Cadiz; Gulf of Cádiz, Atlantic Ocean; Mytilus; North East Atlantic; pH; porewater; Porosity, fractional; Potentiometric; Salinity; sediment; Sediment porosity, determined by water loss after drying to constant temperature; Temperature, water; Titration potentiometric, 794 Basic Titrino (Metrohm); total alkalinity (TA)
    Type: Dataset
    Format: text/tab-separated-values, 78 data points
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  • 21
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; BC; BOX_1GL04; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; EMIGAS; EMIGAS-I; Greenhouse gas emission zones in coastal systems: influence of coastal runoff and benthic metabolism; Gulf of Cadiz; Gulf of Cádiz, Atlantic Ocean; Mytilus; North East Atlantic; pH; porewater; Porosity, fractional; Potentiometric; Salinity; sediment; Sediment porosity, determined by water loss after drying to constant temperature; Temperature, water; Titration potentiometric, 794 Basic Titrino (Metrohm); total alkalinity (TA)
    Type: Dataset
    Format: text/tab-separated-values, 74 data points
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  • 22
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; BC; BOX_2BC05; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; EMIGAS; EMIGAS-I; Greenhouse gas emission zones in coastal systems: influence of coastal runoff and benthic metabolism; Gulf of Cadiz; Gulf of Cádiz, Atlantic Ocean; Mytilus; North East Atlantic; pH; porewater; Porosity, fractional; Potentiometric; Salinity; sediment; Sediment porosity, determined by water loss after drying to constant temperature; Temperature, water; Titration potentiometric, 794 Basic Titrino (Metrohm); total alkalinity (TA)
    Type: Dataset
    Format: text/tab-separated-values, 64 data points
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  • 23
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; BC; BOX_2BC04; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; EMIGAS; EMIGAS-I; Greenhouse gas emission zones in coastal systems: influence of coastal runoff and benthic metabolism; Gulf of Cadiz; Gulf of Cádiz, Atlantic Ocean; Mytilus; North East Atlantic; pH; porewater; Porosity, fractional; Potentiometric; Salinity; sediment; Sediment porosity, determined by water loss after drying to constant temperature; Temperature, water; Titration potentiometric, 794 Basic Titrino (Metrohm); total alkalinity (TA)
    Type: Dataset
    Format: text/tab-separated-values, 53 data points
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  • 24
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; BC; BOX_2GL02; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; EMIGAS; EMIGAS-I; Greenhouse gas emission zones in coastal systems: influence of coastal runoff and benthic metabolism; Gulf of Cadiz; Gulf of Cádiz, Atlantic Ocean; Mytilus; North East Atlantic; pH; porewater; Porosity, fractional; Potentiometric; Salinity; sediment; Sediment porosity, determined by water loss after drying to constant temperature; Temperature, water; Titration potentiometric, 794 Basic Titrino (Metrohm); total alkalinity (TA)
    Type: Dataset
    Format: text/tab-separated-values, 89 data points
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  • 25
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; BC; BOX_2GL01; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; EMIGAS; EMIGAS-I; Greenhouse gas emission zones in coastal systems: influence of coastal runoff and benthic metabolism; Gulf of Cadiz; Gulf of Cádiz, Atlantic Ocean; Mytilus; North East Atlantic; pH; porewater; Porosity, fractional; Potentiometric; Salinity; sediment; Sediment porosity, determined by water loss after drying to constant temperature; Temperature, water; Titration potentiometric, 794 Basic Titrino (Metrohm); total alkalinity (TA)
    Type: Dataset
    Format: text/tab-separated-values, 91 data points
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  • 26
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; BC; BOX_2GL03; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; EMIGAS; EMIGAS-I; Greenhouse gas emission zones in coastal systems: influence of coastal runoff and benthic metabolism; Gulf of Cadiz; Gulf of Cádiz, Atlantic Ocean; Mytilus; North East Atlantic; pH; porewater; Porosity, fractional; Potentiometric; Salinity; sediment; Sediment porosity, determined by water loss after drying to constant temperature; Temperature, water; Titration potentiometric, 794 Basic Titrino (Metrohm); total alkalinity (TA)
    Type: Dataset
    Format: text/tab-separated-values, 81 data points
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  • 27
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; BC; BOX_3BC01; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; EMIGAS; EMIGAS-I; Greenhouse gas emission zones in coastal systems: influence of coastal runoff and benthic metabolism; Gulf of Cadiz; Gulf of Cádiz, Atlantic Ocean; Mytilus; North East Atlantic; pH; porewater; Porosity, fractional; Potentiometric; Salinity; sediment; Sediment porosity, determined by water loss after drying to constant temperature; Temperature, water; Titration potentiometric, 794 Basic Titrino (Metrohm); total alkalinity (TA)
    Type: Dataset
    Format: text/tab-separated-values, 56 data points
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  • 28
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; BC; BOX_3BC02; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; EMIGAS; EMIGAS-I; Greenhouse gas emission zones in coastal systems: influence of coastal runoff and benthic metabolism; Gulf of Cadiz; Gulf of Cádiz, Atlantic Ocean; Mytilus; North East Atlantic; pH; porewater; Porosity, fractional; Potentiometric; Salinity; sediment; Sediment porosity, determined by water loss after drying to constant temperature; Temperature, water; Titration potentiometric, 794 Basic Titrino (Metrohm); total alkalinity (TA)
    Type: Dataset
    Format: text/tab-separated-values, 59 data points
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  • 29
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; BC; BOX_3BC04; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; EMIGAS; EMIGAS-I; Greenhouse gas emission zones in coastal systems: influence of coastal runoff and benthic metabolism; Gulf of Cadiz; Gulf of Cádiz, Atlantic Ocean; Mytilus; North East Atlantic; pH; porewater; Porosity, fractional; Potentiometric; Salinity; sediment; Sediment porosity, determined by water loss after drying to constant temperature; Temperature, water; Titration potentiometric, 794 Basic Titrino (Metrohm); total alkalinity (TA)
    Type: Dataset
    Format: text/tab-separated-values, 19 data points
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  • 30
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; BC; BOX_3BC03; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; EMIGAS; EMIGAS-I; Greenhouse gas emission zones in coastal systems: influence of coastal runoff and benthic metabolism; Gulf of Cadiz; Gulf of Cádiz, Atlantic Ocean; Mytilus; North East Atlantic; pH; porewater; Porosity, fractional; Potentiometric; Salinity; sediment; Sediment porosity, determined by water loss after drying to constant temperature; Temperature, water; Titration potentiometric, 794 Basic Titrino (Metrohm); total alkalinity (TA)
    Type: Dataset
    Format: text/tab-separated-values, 14 data points
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  • 31
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; BC; BOX_3BC05; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; EMIGAS; EMIGAS-I; Greenhouse gas emission zones in coastal systems: influence of coastal runoff and benthic metabolism; Gulf of Cadiz; Gulf of Cádiz, Atlantic Ocean; Mytilus; North East Atlantic; pH; porewater; Porosity, fractional; Potentiometric; Salinity; sediment; Sediment porosity, determined by water loss after drying to constant temperature; Temperature, water; Titration potentiometric, 794 Basic Titrino (Metrohm); total alkalinity (TA)
    Type: Dataset
    Format: text/tab-separated-values, 34 data points
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  • 32
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; BC; BOX_3GL01; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; EMIGAS; EMIGAS-I; Greenhouse gas emission zones in coastal systems: influence of coastal runoff and benthic metabolism; Gulf of Cadiz; Gulf of Cádiz, Atlantic Ocean; Mytilus; North East Atlantic; pH; porewater; Porosity, fractional; Potentiometric; Salinity; sediment; Sediment porosity, determined by water loss after drying to constant temperature; Temperature, water; Titration potentiometric, 794 Basic Titrino (Metrohm); total alkalinity (TA)
    Type: Dataset
    Format: text/tab-separated-values, 67 data points
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  • 33
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; BC; BOX_3GL02; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; EMIGAS; EMIGAS-I; Greenhouse gas emission zones in coastal systems: influence of coastal runoff and benthic metabolism; Gulf of Cadiz; Gulf of Cádiz, Atlantic Ocean; Mytilus; North East Atlantic; pH; porewater; Porosity, fractional; Potentiometric; Salinity; sediment; Sediment porosity, determined by water loss after drying to constant temperature; Temperature, water; Titration potentiometric, 794 Basic Titrino (Metrohm); total alkalinity (TA)
    Type: Dataset
    Format: text/tab-separated-values, 89 data points
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  • 34
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; BC; BOX_3GL03; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; EMIGAS; EMIGAS-I; Greenhouse gas emission zones in coastal systems: influence of coastal runoff and benthic metabolism; Gulf of Cadiz; Gulf of Cádiz, Atlantic Ocean; Mytilus; North East Atlantic; pH; porewater; Porosity, fractional; Potentiometric; Salinity; sediment; Sediment porosity, determined by water loss after drying to constant temperature; Temperature, water; Titration potentiometric, 794 Basic Titrino (Metrohm); total alkalinity (TA)
    Type: Dataset
    Format: text/tab-separated-values, 69 data points
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  • 35
    Publication Date: 2023-03-14
    Keywords: Carbon, inorganic, dissolved; Carbon, organic, particulate; Carbon/Nitrogen ratio; Carbon dioxide, partial pressure; Chlorophyll a; CTD; Date/Time of event; DEPTH, water; Environment; Event label; Latitude of event; Longitude of event; LowpHOX-II; Lowphox-II_T3; Lowphox-II_T5; Nitrate; Nitrite; Nitrogen, organic, particulate; Oxygen, dissolved; pH; Phosphate; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 221 data points
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  • 36
    Publication Date: 2023-03-14
    Keywords: Belyy_Island; Belyy Island; Bicarbonate ion; Calcium; Chloride; cryopegs; DEPTH, sediment/rock; highly mineralized ice wedges; Magnesium; pH; Pollen; polygonal landscapes; Sample ID; Sample type; Sodium and potassium ions; soil temperature changes; spores; Sulfate; Total dissolved solids; Yamal Peninsula, northwestern Siberia
    Type: Dataset
    Format: text/tab-separated-values, 144 data points
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  • 37
    Publication Date: 2023-03-14
    Keywords: Bicarbonate ion; Calcium cation; Chloride/sulfate ratio; Chloride anion; DEPTH, sediment/rock; geochemical conditions; Ice wedges; Magnesium cation; pH; Pollen; polygonal landscapes; Sample ID; Sodium and potassium ions; soil temperature; Soil type; spores; Sulfate anion; Tambey_River; Tambey River; Total dissolved solids; Yamal-Nenets, Russia; Yamal Peninsula
    Type: Dataset
    Format: text/tab-separated-values, 66 data points
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  • 38
    Publication Date: 2023-03-14
    Keywords: Belyy_Island; Belyy Island; Bicarbonate ion; Calcium; Chloride; cryopegs; DEPTH, sediment/rock; highly mineralized ice wedges; Iron; Magnesium; pH; Pollen; polygonal landscapes; Sample ID; Sodium and potassium ions; soil temperature changes; spores; Sulfate; Total dissolved solids; Yamal Peninsula, northwestern Siberia
    Type: Dataset
    Format: text/tab-separated-values, 238 data points
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  • 39
    Publication Date: 2023-03-14
    Keywords: Belyy_Island; Belyy Island; Bicarbonate ion; Calcium; Chloride; cryopegs; DEPTH, sediment/rock; highly mineralized ice wedges; Iron; Magnesium; pH; Pollen; polygonal landscapes; Sample ID; Sodium and potassium ions; soil temperature changes; spores; Sulfate; Total dissolved solids; Yamal Peninsula, northwestern Siberia
    Type: Dataset
    Format: text/tab-separated-values, 85 data points
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  • 40
    Publication Date: 2023-03-14
    Keywords: Bicarbonate ion; Calcium; Chloride; Chloride/sulfate ratio; DEPTH, sediment/rock; Distance, relative; geochemical conditions; Ice wedges; Iron; Magnesium; pH; Pollen; polygonal landscapes; Sample comment; Sample ID; Sodium and potassium ions; soil temperature; spores; Sulfate; Tambey_River; Tambey River; Total dissolved solids; Yamal-Nenets, Russia; Yamal Peninsula
    Type: Dataset
    Format: text/tab-separated-values, 345 data points
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  • 41
    Publication Date: 2023-03-14
    Keywords: Belyy_Island; Belyy Island; Bicarbonate ion; Calcium; Calcium ion; Chloride; Chloride ion; cryopegs; highly mineralized ice wedges; Location; Magnesium; Magnesium ion; pH; Pollen; polygonal landscapes; Sample ID; Sample type; Sodium and potassium ions; soil temperature changes; spores; Sulfate; Sulfate ion; Total dissolved solids; Yamal Peninsula, northwestern Siberia
    Type: Dataset
    Format: text/tab-separated-values, 34 data points
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  • 42
    Publication Date: 2023-03-14
    Keywords: acidification; Bermuda, Atlantic Ocean; Date; flat tree oyster; Handheld Multiparameter Instrument, YSI Incorporated, YSI 556 MPS; Isognomon alatus; Knife; KNIFE; manipulated CO2; MulletBay; Oxygen, dissolved; pH; Salinity; seawater flow through system; Tank number; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 9548 data points
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  • 43
    Publication Date: 2023-03-14
    Keywords: acidified seawater; Bermuda, Atlantic Ocean; bivalves growth; Buoyant mass; Date; Height; Knife; KNIFE; Length; Measured using callipers; MulletBay; Oysters; pH; Shell morphometrics; Tank number; Thickness; Weighted
    Type: Dataset
    Format: text/tab-separated-values, 750 data points
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  • 44
    Publication Date: 2023-03-14
    Keywords: alkaline springs; Alkalinity, total; Barium; Calcium; Carbon, inorganic, dissolved; carbonates; Chloride ion; Conductivity, electrolytic; Date/Time of event; Event label; HAND; HI9813-5; ICP-OES, Varian Vista Pro; Ion chromatography (Metrohm 882 Compact IC plus); ITN-ABYSS; Latitude of event; Location; Longitude of event; Magnesium; Multiparameter probe (HI9813-5, Hanna Instruments, Woonsocket, Rhode Island); OM15-1; OM15-11; OM15-12; OM15-2; OM15-3; OM15-4; OM15-5; OM15-6; OM15-8; OM15-9; OM15K-1; OM15K-10; OM15K-11; OM15K-13; OM15K-14; OM15K-16; OM15K-18; OM15K-19; OM15K-2; OM15K-20; OM15K-21; OM15K-22; OM15K-23; OM15K-3; OM15K-4; OM15K-5; OM15K-6; OM15K-7; OM15K-8; OM15K-9; Oman; pH; Potassium; PROMETHEUS; Sample ID; Sampling by hand; Serpentinization; Silicon; Sodium; Strontium; Sulfate; Temperature, water; Water description
    Type: Dataset
    Format: text/tab-separated-values, 510 data points
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  • 45
    Publication Date: 2023-03-14
    Keywords: Bermuda; Bermuda, Atlantic Ocean; coastal estuarine; Date; Environmental variables; Event label; EXP; Experiment; Handheld Multiparameter Instrument, YSI Incorporated, YSI 556 MPS; Mangrove Bay; MangroveBay_A; MangroveBay_B; MangroveBay_C; Oxygen, dissolved; pH; pH variation; Salinity; Station A; Station B; Station C; Station label; Temperature, water; Tidal regime; Tide
    Type: Dataset
    Format: text/tab-separated-values, 480 data points
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  • 46
    Publication Date: 2023-03-14
    Keywords: Conductivity, electrical; DATE/TIME; endorheic lake; hydrologic changes; Lake_George; Lake George, NSW, Australia; Landsat; long record; pH; remote sensing; Sentinel; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 1029 data points
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  • 47
    Publication Date: 2023-03-14
    Keywords: anoxia; arsenic; Atacama Desert; Chile; DEPTH, sediment/rock; Laguna-La-Brava; lithification; Microbial mat; MULT; Multiple investigations; Needle-encased glass electrodes with PA-2000 picoammeter (Unisense); Oxygen; pH; Sulfide; Sulfur
    Type: Dataset
    Format: text/tab-separated-values, 246 data points
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  • 48
    Publication Date: 2023-03-14
    Keywords: anoxia; arsenic; Atacama Desert; Chile; DEPTH, sediment/rock; Laguna-La-Brava; lithification; Microbial mat; MULT; Multiple investigations; Needle-encased glass electrodes with PA-2000 picoammeter (Unisense); Oxygen; pH; Sulfide; Sulfur
    Type: Dataset
    Format: text/tab-separated-values, 234 data points
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  • 49
    Publication Date: 2023-03-14
    Keywords: Bolivian Amazon; climate; Density, dry bulk; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Lake level; land use change; Livingstone piston corer; Llanos de Moxos; LPC; LR398; Multi-Sensor Core Logger (MSCL-XYZ), GEOTEK; Shallow lake
    Type: Dataset
    Format: text/tab-separated-values, 447 data points
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  • 50
    Publication Date: 2023-03-14
    Keywords: Bolivian Amazon; climate; Density, dry bulk; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; GCUWI; Gravity corer, UWITEC; Lake level; land use change; Llanos de Moxos; LR400; Multi-Sensor Core Logger (MSCL-XYZ), GEOTEK; Shallow lake
    Type: Dataset
    Format: text/tab-separated-values, 372 data points
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  • 51
    Publication Date: 2023-03-14
    Keywords: Bolivian Amazon; Carbon, total; Carbon/Nitrogen ratio; climate; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Element analyser CNS, vario EL Cube; Isotope Ratio Mass Spectrometer, IsoPrime; Lake level; land use change; Livingstone piston corer; Llanos de Moxos; LPC; LR398; Nitrogen, total; Shallow lake; δ13C, organic carbon
    Type: Dataset
    Format: text/tab-separated-values, 358 data points
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  • 52
    Publication Date: 2023-03-14
    Keywords: Bolivian Amazon; Carbon, total; Carbon/Nitrogen ratio; climate; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Element analyser CNS, vario EL Cube; GCUWI; Gravity corer, UWITEC; Lake level; land use change; Llanos de Moxos; LR400; Nitrogen, total; Shallow lake
    Type: Dataset
    Format: text/tab-separated-values, 625 data points
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  • 53
    Publication Date: 2023-03-14
    Keywords: Bolivian Amazon; climate; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Grain size, Mastersizer 2000, Malvern Instrument Inc., Corg free; Grain size, mean; Lake level; land use change; Livingstone piston corer; Llanos de Moxos; LPC; LR398; Median, grain size; Mode, grain size; Shallow lake; Size fraction 0.002-0.00002 mm; Size fraction 0.063-0.002 mm, silt, mud; Size fraction 2.000-0.063 mm, sand
    Type: Dataset
    Format: text/tab-separated-values, 456 data points
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  • 54
    Publication Date: 2023-03-14
    Keywords: Bolivian Amazon; climate; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; GCUWI; Grain size, Mastersizer 2000, Malvern Instrument Inc., Corg free; Grain size, mean; Gravity corer, UWITEC; Lake level; land use change; Llanos de Moxos; LR400; Median, grain size; Mode, grain size; Shallow lake; Size fraction 0.002-0.00002 mm; Size fraction 0.063-0.002 mm, silt, mud; Size fraction 2.000-0.063 mm, sand
    Type: Dataset
    Format: text/tab-separated-values, 1000 data points
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  • 55
    Publication Date: 2023-03-14
    Keywords: Bolivian Amazon; climate; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Lake level; land use change; Livingstone piston corer; Llanos de Moxos; LPC; LR398; Shallow lake; Water content, wet mass; Weight loss after drying
    Type: Dataset
    Format: text/tab-separated-values, 447 data points
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  • 56
    Publication Date: 2023-03-14
    Keywords: Aluminium; Argon; Barium; Bolivian Amazon; Calcium; Chromium; climate; Copper; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Elements, total; Iron; Lake level; land use change; Livingstone piston corer; Llanos de Moxos; LPC; LR398; Manganese; Mean squared error; Neodymium; Nickel; Potassium; Rubidium; Samarium; Shallow lake; Silicon; Strontium; Terbium; Thulium; Titanium; X-ray fluorescence ITRAX core scanner, Mo-tube 35kV 35mA 10s; Yttrium; Zinc; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 19604 data points
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  • 57
    Publication Date: 2023-03-14
    Keywords: Bolivian Amazon; climate; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; GCUWI; Gravity corer, UWITEC; Lake level; land use change; Llanos de Moxos; LR400; Shallow lake; Water content, wet mass; Weight loss after drying
    Type: Dataset
    Format: text/tab-separated-values, 372 data points
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  • 58
    Publication Date: 2023-03-14
    Keywords: Aluminium; Argon; Barium; Bolivian Amazon; Calcium; Chromium; climate; Copper; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Elements, total; GCUWI; Gravity corer, UWITEC; Iron; Lake level; land use change; Llanos de Moxos; LR400; Manganese; Mean squared error; Neodymium; Nickel; Potassium; Rubidium; Samarium; Shallow lake; Silicon; Strontium; Terbium; Thulium; Titanium; X-ray fluorescence ITRAX core scanner, Mo-tube 35kV 35mA 10s; Yttrium; Zinc; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 15834 data points
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  • 59
    Publication Date: 2023-03-14
    Keywords: Aluminium; Bolivian Amazon; climate; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; GCUWI; Gravity corer, UWITEC; ICP-OES; Iron; Lake level; land use change; Llanos de Moxos; LR400; Sample ID; Shallow lake; Silicon
    Type: Dataset
    Format: text/tab-separated-values, 216 data points
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  • 60
    Publication Date: 2023-03-14
    Keywords: aragonite saturation state; Aragonite saturation state; Calculated based on the ƒCO2 and the pH; Carbon, inorganic, dissolved; Carbon dioxide, partial pressure; Corals; Costa Rica; DATE/TIME; DEPTH, water; dissolved oxygen; Gulf of Papagayo; Gulf of Papagayo, Culebra Bay, Costa Rica; Leibniz Centre for Tropical Marine Research; Marina_Papagayo; Multiprobe, WTW 340i; Orion ROSS electrode and an Orion StarTM; Oxygen; pCO2; pH; Salinity; Sea surface temperature; SUNDANS; Surface UNderway carbon Dioxide partial pressure ANalySer; Time in days; Upwelling; WTW Cond 3310; ZMT
    Type: Dataset
    Format: text/tab-separated-values, 504 data points
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  • 61
    Publication Date: 2023-03-13
    Description: Swiftia phaeton, a new species, is described for Mauritania where it is endemic at the upper bathyal. This azooxanthellate octocoral is distinctive from congeneric species in the NE Atlantic and Mediterranean Sea by the dark red coloration of the colonies and polyps, the presence of a layer of rod sclerites on top of the calyces and different sizes of polyps and sclerites. Coral gardens dominated by a species of the genus Swiftia Duchassaing & Michelotti, 1864 were filmed for the first time it the southern NE Atlantic Ocean. The extensive Swiftia phaeton sp. nov. dominated habitats were recorded during the Phaeton expedition onboard Maria S. Merian in 2010 at the Mauritanian Slope between 20°24N and 17°54N in 470 - 640 m depth, co-occurring with the framework-forming scleractinians Lophelia pertusa (Linnaeus, 1758) and Madrepora oculata (Linnaeus, 1758). ROV video annotation based on size and density distribution of Swiftia enabled the characterization of the new biotope.
    Keywords: ATLAS; A Trans-Atlantic assessment and deep-water ecosystem-based spatial management plan for Europe; Coral garden; Mauritania; NW Africa; Octocorallia; Plexauridae; Taxonomy.; vulnerable marine ecosystem (VME).
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 62
    Publication Date: 2023-03-13
    Keywords: Ablation; ALTITUDE; Antarctic Peninsula; Center; Center_Stake_2014to2015; DATE/TIME; Event label; Front; Front_Stake_2014to2015; Glaciological mass balance; James Ross Island; LATITUDE; Latitude 2; LONGITUDE; Longitude 2; North; North_Stake_2014to2015; Optional event label; S-C-1; S-C-1_Stake_2014to2015; S-C-2; S-C-2_Stake_2014to2015; S-C-2-1; S-C-2-1_Stake_2014to2015; S-C-3; S-C-3_Stake_2014to2015; S-C-4; S-C-4_Stake_2014to2015; S-C-5; S-C-5_Stake_2014to2015; S-F-3; S-F-3_Stake_2014to2015; S-F-4; S-F-4_Stake_2014to2015; S-F-5; S-F-5_Stake_2014to2015; SMB; South; South_Stake_2014to2015; Surface mass balance, ice equivalent; S-W-1; S-W-1_Stake_2014to2015; S-W-2; S-W-2_Stake_2014to2015; S-W-3; S-W-3_Stake_2014to2015; S-W-4; S-W-4_Stake_2014to2015; S-W-5; S-W-5_Stake_2014to2015; S-W-6; S-W-6_Stake_2014to2015; West; West_Stake_2014to2015
    Type: Dataset
    Format: text/tab-separated-values, 60 data points
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  • 63
    Publication Date: 2023-03-13
    Keywords: Calculated after Friedman & O'Neil (1977); Carbon; Cava_dei_Marmi; Cava_Galli_2; Event label; Latitude of event; Location; Longitude of event; major and trace element data; ophicalcites; Oxygen; Sample ID; serpentinites; Strontium, particulate; Strontium-87/Strontium-86 ratio; Strontium-87/Strontium-86 ratio, standard deviation; Temperature, calculated; Type; Vein; δ13C; δ13C, standard deviation; δ18O; δ18O, water; δ18O, water, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 243 data points
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  • 64
    Publication Date: 2023-03-13
    Keywords: Ablation; ALTITUDE; Antarctic Peninsula; Center; Center_Stake_2016to2017; Center-2; Center-2_Stake_2016to2017; DATE/TIME; Event label; Glaciological mass balance; James Ross Island; LATITUDE; Latitude 2; LONGITUDE; Longitude 2; Optional event label; S-C-3; S-C-3_Stake_2016to2017; S-C-4; S-C-4_Stake_2016to2017; SMB; Surface mass balance, ice equivalent; S-W-2; S-W-2_Stake_2016to2017; S-W-3; S-W-3_Stake_2016to2017; S-W-4; S-W-4_Stake_2016to2017; S-W-5; S-W-5_Stake_2016to2017; SWW6; SWW6_Stake_2016to2017
    Type: Dataset
    Format: text/tab-separated-values, 27 data points
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  • 65
    Publication Date: 2023-03-13
    Keywords: Bonassola_1; Bonassola_2; Bracco_Pass; Carbon; Carro_old_mining_site; Castagnola; Cava_dei_Marmi; Cava_Galli_2; Cava_Piazza; Event label; Latitude of event; Libiola_old_mining_site; Location; Longitude of event; major and trace element data; ophicalcites; Oxygen; Punta_dei_Marmi; Reference/source; Road_SS332_Profile_2; Road_SS332_Profile_4; Road_SS332_Profile_5; Rock type; Sample ID; serpentinites; Strontium, particulate; Strontium-87/Strontium-86 ratio; Strontium-87/Strontium-86 ratio, standard deviation; Unit; δ18O; δ18O, standard deviation; δ Deuterium
    Type: Dataset
    Format: text/tab-separated-values, 435 data points
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  • 66
    Publication Date: 2023-03-10
    Description: Data set of current meter and temperature logger mooring deployed at position 30°29.04'N, 30°11.7'W, in 4530m water depth. Record starts on Aug 8, 2017, ends May, 10, 2018. Instruments at 299m (ADCP/SBE56), 609m (Aquadopp/SBE56), 1027m (Aquadopp/SBE56), 1426m (Aquadopp/SBE39+), 2053m (Aquadopp/SBE39+), 2889m (Aquadopp/SBE39+), 3729m (Aquadopp/SBE39+), 4566m (Aquadopp/SBE39+).
    Keywords: currents; Current velocity, east-west; Current velocity, north-south; Current velocity, vertical; DATE/TIME; DEPTH, water; Device type; ENERGY TRANSFER; MOOR; Moor_ET1; Mooring; POS516; POS516_4-1; POS523; POS523_2-1; Poseidon; Pressure, water; See Device type column; South Atlantic Ocean; Temperature; Temperature, water; Time series; TRR181; TRR181 Energy transfers in Atmosphere and Ocean
    Type: Dataset
    Format: text/tab-separated-values, 5535740 data points
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  • 67
    Publication Date: 2023-03-10
    Description: Dissolved zirconium (Zr) is present in open-ocean seawater in low pmol/kg concentrations and studies for the Pacific Ocean reported an increase in concentration with depth although Zr is characterized as being particle-reactive. We observed the same pattern in this study and report the first data on dissolved Zr in the (sub)tropical Atlantic Ocean. We analyzed dissolved Zr in 194 Atlantic seawater samples (0.2 µm filtered) collected at 16 stations located in the (sub)tropical Atlantic during GEOTRACES cruise M81/1 (GEOTRACES cruise GA11, RV Meteor, 04.02.-08.03.2010). Seawater samples were collected with a trace metal clean CTD and filtration, subsampling and acidification was performed in the clean laboratory container onboard. Measurements were done using our newly developed online-preconcentration method for the SeaFAST-system (ESI, seaFAST 1) with subsequent analysis by quadrupole inductively coupled plasma-mass spectrometry (Perkin-Elmer, ELAN DRC-e). Details on the preconcentration of Zr and the analytical measurement are provided in Poehle et al. 2015 (doi:10.1016/j.dsr.2014.11.014). Our results showed an increase in dissolved Zr with depth with some distinct maxima at intermediate depths along a NE-SW transect (30°N to 12°S) in the Atlantic. Surface depletion was less pronounced along the Atlantic SE-NW transect (12°S to 8°N) and disappeared almost completely at the northernmost station at 8°N. We suggest that dust deposited off West Africa scavenged Zr from surface waters and riverine discharge from the Amazon may represent a source to the West Atlantic. The correlation of Zr with Si hints to a coupling of Zr to the uptake and release on and from Si particles such as biogenic opal. Remineralization of Si-particulates in deep waters release Zr which seems to be stabilized in the dissolved phase by complexation with e.g. organic ligands. This is supported by a sequential filtration approach (0.2 µm and 0.015 µm filter pore size) on seawater samples collected in the Pacific Ocean (research cruise SO229, 2011) showing that up to 91% of dissolved Zr in deep waters are present in the fraction 〈 0.015 µm. Hence, truly dissolved or colloidally bound Zr seems to a reasonable explanation for the observed increase in concentration with depth. Submitted data include the date of sample collection, geographic coordinates, depth and the concentration of dissolved Zr in pmol/kg.
    Keywords: biogeochemistry; Canarias Sea; Comment; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; GEOTRACES; high field strength elements (HFSE); Latitude of event; Longitude of event; M81/1; M81/1_106; M81/1_114; M81/1_118; M81/1_124; M81/1_129; M81/1_137; M81/1_141; M81/1_149; M81/1_156; M81/1_162; M81/1_170; M81/1_174; M81/1_180; M81/1_189; M81/1_202; M81/1_205; Meteor (1986); Sample code/label; Sample ID; South Atlantic Ocean; Station label; water depth profiles; Zirconium, dissolved
    Type: Dataset
    Format: text/tab-separated-values, 772 data points
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  • 68
    Publication Date: 2023-03-13
    Keywords: Ablation; ALTITUDE; Antarctic Peninsula; Center; Center_Stake_2015to2016; Center-2; Center-2_Stake_2015to2016; DATE/TIME; Event label; Front; Front_Stake_2015to2016; Glaciological mass balance; James Ross Island; LATITUDE; Latitude 2; LONGITUDE; Longitude 2; North; North_Stake_2015to2016; Optional event label; S-C-2-1; S-C-2-1_Stake_2015to2016; S-C-3; S-C-3_Stake_2015to2016; SMB; South; South_Stake_2015to2016; Surface mass balance, ice equivalent; S-W-1; S-W-1_Stake_2015to2016; S-W-2; S-W-2_Stake_2015to2016; S-W-3; S-W-3_Stake_2015to2016; S-W-4; S-W-4_Stake_2015to2016; S-W-6; S-W-6_Stake_2015to2016; West; West_Stake_2015to2016; West-2; West-2_Stake_2015to2016
    Type: Dataset
    Format: text/tab-separated-values, 42 data points
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  • 69
    Publication Date: 2023-03-13
    Description: These data report surface mass balance (SMB) stake measurements at the frontal part of Gourdon Glacier on James Ross Island, northern Antarctic Peninsula. The measurements were conducted by drilling stakes made of bamboo or aluminium into the ice. Changes in the height above the glacier surface were measured in yearly field campaigns during January/February from 2014 until 2017. The resulting height differences in meter ice equivalents [SMB (m i.e.)] are presented together with the coordinates [Latitude Start (°)], [Longitude Start (°)], [Latitude End (°)], [Longitude End (°)] and the elevation in regard to the WGS84 ellipsoid [Altitude Start (m)] and [Altitude End (m)] for the start and the end date of each measurement period. GNSS measurements were done with a single-frequency hand-held Garmin GPS 60. The mass balance measurements were not corrected for movement within one yearly measurement period.
    Keywords: Ablation; Antarctic Peninsula; Glaciological mass balance; James Ross Island; SMB
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 70
    Publication Date: 2023-03-13
    Description: Surface current drifters were deployed east of Brava island (Cape Verde archipelago, Atlantic ocean) from the RV Meteor during the cruise M160, which took place between 22. November and 20. December 2019. The drifters were deployed in 3 clusters with 3 drifters per cluster. The utilized drifters are the MD03i from Albatros Marine Technologies, Spain. They have a cylinder shape with a 10 cm diameter and 32 cm length. About 8 cm protrude from the water surface and a drogue of both 50 cm length and diameter is attached to each drifter 50 cm below the sea surface so that difter represent currents in the upper 1 m surface layer. The drifter obtains the GPS position and transmits it via the satellite communication system Iridium to the vessel. The overall ratio of drag area inside to drag area outside the water is 33.2.
    Keywords: GEOMAR; Helmholtz Centre for Ocean Research Kiel; Helmholtz-Zentrum Geesthacht, Institute of Coastal Research; HZG
    Type: Dataset
    Format: application/zip, 9 datasets
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  • 71
    Publication Date: 2023-03-13
    Description: This data set includes the supplementary data to Schwarzenbach et al., subm., Journal of Geophysical Research. I includes major and trace element bulk rock data, rare earth element bulk rock data, bulk rock radiogenic strontium isotope, stable oxygen and hydrogen isotope data of serpentinites and ophicalcites from the Northern Apennine ophiolite sequence in Italy. In situ mineral data include rare earth element data and electron microprobe data of serpentine, amphibole, chlorite and talc. Carbonate vein data of microdrilled veins include radiogenic strontium isotope data and stable carbon and oxygen data.
    Keywords: Carbon; major and trace element data; ophicalcites; Oxygen; serpentinites
    Type: Dataset
    Format: application/zip, 8 datasets
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  • 72
    Publication Date: 2023-03-14
    Description: Profiles and time-series of Oxygen, pH and CO2 was measured in situ in shallow (〈10cm) tidal ponds located in the salt marshes of the Plum Island Estuary, MA, USA. The investigation was conducted using a novel needle optode profiling system from PreSens GmBH with an Automated Micromanipulator and needle-type optodes for measurements of oxygen (PM-PSt7), pH (PM-HP5), and CO2 (PM-CDM1 prototypes), respectively. The data provide novel information about the spatial and temporal variation of oxygen, pH and CO2 in water and sediment, driven by microphytobenthic photosynthesis and respiration. These parameters vary markedly throughout the day due to changes in light availability and temperature. The data characterizes salt marsh tidal ponds as a habitat with extreme oxygen dynamics. Data includes 1) In situ Oxygen, pH and CO2 profiles across the sediment-water interface in shallow salt marsh tidal ponds at 3 different times of the day; morning, afternoon and night, respectively; 2) Oxygen and pH profiles across the sediment-water interface under different light regimes; 0. 25, 150, 350 PAR (0 μmol photons m−2 s−1), respectively; 3) In situ time series of Oxygen, pH and temperature in shallow salt marsh tidal ponds.; 4) Oxygen profiles across the sediment-water interface in shallow salt marsh tidal ponds under different in situ light regimes, determined by a natural layer of seafoam covering the water surface.; 5) In situ oxygen profiles across the sediment-water interface in 3 different tidal ponds in the Plum Island Estuary.; 6) Oxygen profiles across the sediment-water interface in three different habitats in salt marshes: a) Tidal river; submerged sediment. b) Tidal ponds; submerged sediment and c) Vegetated marsh platform; intertidal.
    Keywords: Center for Marine Environmental Sciences; CO2; MARUM; Oxygen; pH; profiles; salt marsh; tidal pond
    Type: Dataset
    Format: application/zip, 13 datasets
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  • 73
    Publication Date: 2023-03-14
    Description: The emission of anthropogenic carbon dioxide leads to the lowering of seawater pH. Ocean acidification is a major problem for marine calcifying organisms. There is a need to study short- and long-term effects of lowered pH on marine organisms such as oysters. Oysters are an important food source and useful for nutrients recycling in the coastal estuarine environments. The coastal estuarine environment such as mangrove ecosystems connected to the Sargasso Sea, Ferry Reach, Bermuda, has a natural variation of pH according to the changes in tidal regime (thus low and high tide activities). The unique environment serves as a model place to carry out the effect of changing pH on a marine organism such as flat tree oysters inhabiting this coastal ecosystem. For the laboratory experiment, a total of 84 specimens of the flat tree oyster, Isognomon alatus, were randomly collected on 21 January 2009 from rocks exposed at low tide in Mullet Bay, an intertidal mudflat, St. George, Bermuda (latitude: 32° 22' 30'' N, longitude: 64° 41' 35''W). An experiment was performed to test the effect of projected future pH decrease in a seawater flow-through system at Bermuda Institute of Ocean Sciences (BIOS) for a short period (February to April 2009). Physicochemical conditions (seawater temperature, salinity, pH and oxygen concentration) in three control tanks (C1, C2, C3, pH = 8.1 - 8.2) and three acidification tanks (T1, T2, T3, pH = 7.8 - 7.9) used for the culture of the oysters were recorded. Changes in shell morphometrics of the oysters were determined. For the field experiment, 42 specimens of I. alatus were randomly placed in 6 tanks (approx. n = 7 oysters/tank). Two tanks were then positioned along the transect at each station (A, B ,C) in Mangrove Bay, Bermuda. The shell parameters of flat tree oysters and physicochemical conditions were monitored biweekly.
    Keywords: acidification; Bermuda; Bermuda, Atlantic Ocean; bivalves growth; coastal estuarine; Environmental variables; EXP; Experiment; flat tree oyster; Isognomon alatus; Knife; KNIFE; Mangrove Bay; MangroveBay_A; MangroveBay_B; MangroveBay_C; manipulated CO2; MulletBay; pH variation; seawater flow through system; Shell morphometrics; Station A; Station B; Station C; Tidal regime
    Type: Dataset
    Format: application/zip, 4 datasets
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  • 74
    Publication Date: 2023-03-14
    Description: In this work we used controlled microcosms to study the effect of temperature and pH on brGDGTs in lake water. We collected surface water from Kennedy Lake, Tucson, AZ, a shallow eutrophic artificial reservoir previously described by Martínez-Sosa & Tierney (2019). From the collected samples we set up a series of microcosms, consisting of 1L glass flasks filled with lake water, and manipulated single environmental factors including temperature and pH. For our temperature incubations, we selected four conditions (9C, 18C, 27C and 35C) and incubated 3 1L flasks under each condition for two periods of time (4 or 6 weeks). For the pH incubations, we used commercially available freshwater aquarium non-phosphate buffers (Proprietary composition, Seachem, Madison, GA, USA) to manipulate the pH of the microcosms. For these experiments we targeted four pH conditions (4, 5, 6 and 7), and included two control samples: one where we added enough buffer to maintain the initial pH (Control + Buffer), and another to which we added no buffer (Control - Buffer). GDGTs were analyzed on an Agilent 1260 Infinity HPLC coupled to an Agilent 6120 single quadrupole mass spectrometer using two BEH HILIC silica columns (2.1 x 150 mm, 1.7 um; Waters) and the methodology of Hopmans et al. (2016). We calculated peak areas using the MATLAB package software ORIGAmI (Fleming et al. 2016) and estimated the concentration of brGDGTs by comparing the obtained peaks with a C46 internal standard (Huguet et al. 2006) normalized to the volume of each sample.
    Keywords: Branched glycerol dialkyl glycerol tetraether; Branched glycerol dialkyl glycerol tetraether, Ia; Branched glycerol dialkyl glycerol tetraether, Ib; Branched glycerol dialkyl glycerol tetraether, Ic; Branched glycerol dialkyl glycerol tetraether, IIa; Branched glycerol dialkyl glycerol tetraether, IIa'; Branched glycerol dialkyl glycerol tetraether, IIb; Branched glycerol dialkyl glycerol tetraether, IIb'; Branched glycerol dialkyl glycerol tetraether, IIIa; Branched glycerol dialkyl glycerol tetraether, IIIa'; brGDGTs; Calculated; Cyclization ratio of branched tetraethers; Degree of cyclisation; Experiment; Incubation duration; Isomer ratio; Kennedy_Lake_water_microcosm; Laboratory experiment; lakes; Methylation index of 5-methyl branched glycerol dialkyl glycerol tetraether; microcosms; pH; Sample ID; Standard deviation; Temperature; Temperature, water; Tucson, Arizona, USA
    Type: Dataset
    Format: text/tab-separated-values, 528 data points
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  • 75
    Publication Date: 2023-03-14
    Description: A high-resolution carbonate C-isotope (δ13Ccarb) stratigraphy for the Aptian is presented for the Cau core from Alicante, Spain. The studied succession, lower to upper Aptian, embraces the record of the Early Aptian OAE 1a. The data provided includes δ13Ccarb, δ18O isotopes, Total Organic Carbon (TOC) and CaCO3. Four overlapping cores (D1 to D4) were drilled with an almost 100% recovery of a total (corrected for dip) thickness of 143 m. The cores were split in two parts. One half was described, photographed and scanned, and then sampled with a drill to obtain powdered samples for geochemical analyses. Also, small solid samples were taken from the drill for biostratigraphic characterization of the nannofossil and planktonic foraminifera associations. Second half was stored for archive and future research.
    Keywords: Almadich formation; Aptian; Automatic calcimeter (DREAM Électronique SAS , Pessac, France); Calcium carbonate; C and O isotopes; Carbon, organic, total; Cau_Core-D1; Cau_Core-D2; Cau_Core-D3; Cau_Core-D4; Cau-core; CO3Ca; DEPTH, sediment/rock; Event label; Hemipelagic sedimentation; Mass spectrometer, Finnigan, MAT 253; coupled with Carbonate preparation device, Finnigan, KIEL IV; OAE 1a; RDC; Rock drill core; Sample ID; Shimadzu TOC-V CSH total organic carbon analyzer; TOC; δ13C; δ18O
    Type: Dataset
    Format: text/tab-separated-values, 3121 data points
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  • 76
    Publication Date: 2023-03-14
    Description: Measured electrical conductivity and pH are given from 119 dug- and drill wells (Gili Air). The data was obtained during the fieldwork for a Master Thesis (Hydrogeology, University Bremen) in cooperation with the Leibniz Centre for Tropical Marine Research during February and June 2020.
    Keywords: Calculated average/mean values; Calculated standard error; Conductivity, electrical; Date/Time of event; DEPTH, water; Depth, well; Event label; Gili_Air_Well1; Gili_Air_Well10; Gili_Air_Well100; Gili_Air_Well101; Gili_Air_Well102; Gili_Air_Well103; Gili_Air_Well104; Gili_Air_Well105; Gili_Air_Well106; Gili_Air_Well107; Gili_Air_Well108; Gili_Air_Well109; Gili_Air_Well11; Gili_Air_Well110; Gili_Air_Well111; Gili_Air_Well112; Gili_Air_Well113; Gili_Air_Well114; Gili_Air_Well115; Gili_Air_Well116; Gili_Air_Well117; Gili_Air_Well118; Gili_Air_Well12; Gili_Air_Well13; Gili_Air_Well14; Gili_Air_Well15; Gili_Air_Well16; Gili_Air_Well18; Gili_Air_Well19; Gili_Air_Well2; Gili_Air_Well20; Gili_Air_Well21; Gili_Air_Well22; Gili_Air_Well23; Gili_Air_Well24; Gili_Air_Well25; Gili_Air_Well26; Gili_Air_Well27; Gili_Air_Well28; Gili_Air_Well29; Gili_Air_Well3; Gili_Air_Well30; Gili_Air_Well31; Gili_Air_Well32; Gili_Air_Well4; Gili_Air_Well40; Gili_Air_Well41; Gili_Air_Well42; Gili_Air_Well43; Gili_Air_Well44; Gili_Air_Well46; Gili_Air_Well47; Gili_Air_Well48; Gili_Air_Well49; Gili_Air_Well50; Gili_Air_Well51; Gili_Air_Well52; Gili_Air_Well53; Gili_Air_Well54; Gili_Air_Well55; Gili_Air_Well56; Gili_Air_Well57; Gili_Air_Well58; Gili_Air_Well59; Gili_Air_Well6; Gili_Air_Well60; Gili_Air_Well61; Gili_Air_Well62; Gili_Air_Well63; Gili_Air_Well64; Gili_Air_Well64B; Gili_Air_Well65; Gili_Air_Well66; Gili_Air_Well67; Gili_Air_Well68; Gili_Air_Well69; Gili_Air_Well7; Gili_Air_Well70; Gili_Air_Well71; Gili_Air_Well72; Gili_Air_Well73; Gili_Air_Well74; Gili_Air_Well76; Gili_Air_Well77; Gili_Air_Well78; Gili_Air_Well79; Gili_Air_Well8; Gili_Air_Well80; Gili_Air_Well81; Gili_Air_Well82; Gili_Air_Well83; Gili_Air_Well84; Gili_Air_Well85; Gili_Air_Well86; Gili_Air_Well87; Gili_Air_Well88; Gili_Air_Well89; Gili_Air_Well9; Gili_Air_Well90; Gili_Air_Well91; Gili_Air_Well92; Gili_Air_Well93; Gili_Air_Well94; Gili_Air_Well95; Gili_Air_Well96; Gili_Air_Well97; Gili_Air_Well98; Gili_Air_Well99; groundwater; Latitude of event; Leibniz Centre for Tropical Marine Research; Lombok, Indonesia; Longitude of event; pH; Sample comment; Sampling Well; SE; Waterhead, below ground; WELL; ZMT
    Type: Dataset
    Format: text/tab-separated-values, 721 data points
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  • 77
    Publication Date: 2023-03-14
    Description: The chemical analysis of major and minor ions of groundwater from dug- and drill wells (8 Wells in Gili Air, 5 Wells in Gili Trawangan, and Rain) is presented. The data was collected during the fieldwork for a Master Thesis (Hydrogeology, University Bremen) in cooperation with the Leibniz Centre for Tropical Marine Research in June 2020.
    Keywords: Bicarbonate ion; Bromide; Calcium; Chloride; Date/Time of event; Event label; Fluoride; Gili_Air_A; Gili_Air_B; Gili_Air_C; Gili_Air_D; Gili_Air_E; Gili_Air_F; Gili_Air_G; Gili_Air_H; Gili_Air_I; Gili_Air_Rain; Gili_Trawangan_T1; Gili_Trawangan_T2; Gili_Trawangan_T3; Gili_Trawangan_T4; Gili_Trawangan_T5; groundwater; Latitude of event; Leibniz Centre for Tropical Marine Research; Location; Lombok, Indonesia; Longitude of event; Magnesium; Nitrate; pH; Potassium; Salinity; Sample comment; Sample method; Sampling Well; Sodium; Sulfate; Temperature, water; WELL; ZMT
    Type: Dataset
    Format: text/tab-separated-values, 255 data points
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  • 78
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    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2023-03-16
    Keywords: DATE/TIME; DEPTH, water; File name; File size; LATITUDE; LONGITUDE; Ocean Floor Observation System; OFOS; Polarstern; PS118; PS118_7-1; Type; Uniform resource locator/link to file; Uniform resource locator/link to image; Weddell Sea
    Type: Dataset
    Format: text/tab-separated-values, 1435 data points
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  • 79
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    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2023-03-16
    Keywords: DATE/TIME; DEPTH, water; File name; File size; LATITUDE; LONGITUDE; Ocean Floor Observation System; OFOS; Polarstern; PS118; PS118_6-9; Type; Uniform resource locator/link to file; Uniform resource locator/link to image; Weddell Sea
    Type: Dataset
    Format: text/tab-separated-values, 7010 data points
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  • 80
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    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2023-03-16
    Keywords: Antarctica; Antarctic Peninsula; Corals; DATE/TIME; DEPTH, water; File name; File size; LATITUDE; LONGITUDE; Ocean Floor Observation System; OFOBS; OFOS; Polarstern; PS118; PS118_8-1; seafloor images; Sponges; Type; Uniform resource locator/link to file; Uniform resource locator/link to image; Weddell Sea
    Type: Dataset
    Format: text/tab-separated-values, 4805 data points
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  • 81
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    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2023-03-16
    Keywords: Antarctica; Antarctic Peninsula; Corals; DATE/TIME; DEPTH, water; File name; File size; LATITUDE; LONGITUDE; Ocean Floor Observation System; OFOBS; OFOS; Polarstern; PS118; PS118_77-1; Scotia Sea; seafloor images; Sponges; Type; Uniform resource locator/link to file; Uniform resource locator/link to image
    Type: Dataset
    Format: text/tab-separated-values, 790 data points
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  • 82
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    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2023-03-16
    Keywords: Antarctica; Antarctic Peninsula; Corals; DATE/TIME; DEPTH, water; File name; File size; LATITUDE; LONGITUDE; Ocean Floor Observation System; OFOBS; OFOS; Polarstern; PS118; PS118_11-2; seafloor images; Sponges; Type; Uniform resource locator/link to file; Uniform resource locator/link to image; Weddell Sea
    Type: Dataset
    Format: text/tab-separated-values, 3490 data points
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  • 83
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    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2023-03-16
    Keywords: Antarctica; Antarctic Peninsula; Corals; DATE/TIME; DEPTH, water; File name; File size; LATITUDE; LONGITUDE; Ocean Floor Observation System; OFOBS; OFOS; Polarstern; PS118; PS118_38-13; seafloor images; Sponges; Type; Uniform resource locator/link to file; Uniform resource locator/link to image; Weddell Sea
    Type: Dataset
    Format: text/tab-separated-values, 1950 data points
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  • 84
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    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2023-03-16
    Keywords: Antarctica; Antarctic Peninsula; Corals; DATE/TIME; DEPTH, water; File name; File size; LATITUDE; LONGITUDE; Ocean Floor Observation System; OFOBS; OFOS; Polarstern; PS118; PS118_39-1; Scotia Sea; seafloor images; Sponges; Type; Uniform resource locator/link to file; Uniform resource locator/link to image
    Type: Dataset
    Format: text/tab-separated-values, 19035 data points
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  • 85
    Publication Date: 2023-03-17
    Keywords: Bottle number; Center for Marine Environmental Sciences; Conductivity; CTD, Sea-Bird, SBE 9; CTD, Sea-Bird, SBE 9; measured with Conductivity sensor [SN: 4058]; CTD, Sea-Bird, SBE 9; measured with temperature sensor [SN: 5288]; CTD/Rosette; CTD-RO; density; Density, sigma-theta (0); Depth; DEPTH, water; Fluorescence; GeoB23001-1; LATITUDE; LONGITUDE; M149; M149_1; MARUM; Meteor (1986); Optional event label; Oxygen; Oxygen saturation; Oxygen Saturation; Salinity; Sound Velocity; Sound velocity in water; Temperature; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 193040 data points
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  • 86
    Publication Date: 2023-03-17
    Keywords: Bottle number; Center for Marine Environmental Sciences; Conductivity; CTD, Sea-Bird, SBE 9; CTD, Sea-Bird, SBE 9; measured with Conductivity sensor [SN: 4058]; CTD, Sea-Bird, SBE 9; measured with temperature sensor [SN: 5288]; CTD/Rosette; CTD-RO; density; Density, sigma-theta (0); Depth; DEPTH, water; Fluorescence; GeoB23045-2; LATITUDE; LONGITUDE; M149; M149_58; MARUM; Meteor (1986); Optional event label; Oxygen; Oxygen saturation; Oxygen Saturation; Salinity; Sound Velocity; Sound velocity in water; Temperature; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 610744 data points
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  • 87
    Publication Date: 2023-03-17
    Keywords: Bottle number; Center for Marine Environmental Sciences; Conductivity; CTD, Sea-Bird, SBE 9; CTD, Sea-Bird, SBE 9; measured with Conductivity sensor [SN: 4058]; CTD, Sea-Bird, SBE 9; measured with temperature sensor [SN: 5288]; CTD/Rosette; CTD-RO; density; Density, sigma-theta (0); Depth; DEPTH, water; Fluorescence; GeoB23078-1; LATITUDE; LONGITUDE; M149; M149_93-1; MARUM; Meteor (1986); Optional event label; Oxygen; Oxygen Saturation; Salinity; Sound Velocity; Sound velocity in water; Temperature; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 1823499 data points
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  • 88
    Publication Date: 2023-03-17
    Keywords: Bottle number; Center for Marine Environmental Sciences; Conductivity; CTD, Sea-Bird, SBE 9; CTD, Sea-Bird, SBE 9; measured with Conductivity sensor [SN: 4058]; CTD, Sea-Bird, SBE 9; measured with temperature sensor [SN: 5288]; CTD/Rosette; CTD-RO; density; Density, sigma-theta (0); Depth; DEPTH, water; Fluorescence; GeoB23086-1; LATITUDE; LONGITUDE; M149; M149_102-1; MARUM; Meteor (1986); Optional event label; Oxygen; Oxygen Saturation; Salinity; Sound Velocity; Sound velocity in water; Temperature; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 385385 data points
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  • 89
    Publication Date: 2023-03-17
    Keywords: Bottle number; Center for Marine Environmental Sciences; Conductivity; CTD, Sea-Bird, SBE 9; CTD, Sea-Bird, SBE 9; measured with Conductivity sensor [SN: 4058]; CTD, Sea-Bird, SBE 9; measured with temperature sensor [SN: 5288]; CTD/Rosette; CTD-RO; density; Density, sigma-theta (0); Depth; DEPTH, water; Fluorescence; GeoB23096-1; LATITUDE; LONGITUDE; M149; M149_116; MARUM; Meteor (1986); Optional event label; Oxygen; Oxygen Saturation; Oxygen sensor, SBE 43; Salinity; Sound Velocity; Sound velocity in water; Temperature; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 551352 data points
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  • 90
    Publication Date: 2023-03-16
    Keywords: Accumulation rate; Comment; GRACE; GRACE-FO; Greenland; Helmholtz-Verbund Regionale Klimaänderungen = Helmholtz Climate Initiative (Regional Climate Change); ice dynamic discharge; ice sheet mass balance; Mass balance; Mass balance, error; Meltwater runoff; REKLIM; sea-level rise; surface mass balance; Time coverage
    Type: Dataset
    Format: text/tab-separated-values, 112 data points
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  • 91
    Publication Date: 2023-03-16
    Keywords: Accumulation rate; GRACE; GRACE-FO; Greenland; Helmholtz-Verbund Regionale Klimaänderungen = Helmholtz Climate Initiative (Regional Climate Change); ice dynamic discharge; ice sheet mass balance; Mass balance; Meltwater runoff; REKLIM; sea-level rise; surface mass balance; Time coverage
    Type: Dataset
    Format: text/tab-separated-values, 308 data points
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  • 92
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    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2023-03-16
    Keywords: Antarctica; Antarctic Peninsula; Corals; DATE/TIME; DEPTH, water; File name; File size; LATITUDE; LONGITUDE; Ocean Floor Observation System; OFOBS; OFOS; Polarstern; PS118; PS118_12-12; seafloor images; Sponges; Type; Uniform resource locator/link to file; Uniform resource locator/link to image; Weddell Sea
    Type: Dataset
    Format: text/tab-separated-values, 6226 data points
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  • 93
    Publication Date: 2023-03-16
    Keywords: DATE/TIME; GRACE; GRACE-FO; Greenland; Helmholtz-Verbund Regionale Klimaänderungen = Helmholtz Climate Initiative (Regional Climate Change); ice dynamic discharge; ice sheet mass balance; Mass change, monthly, relative; Mass change, standard error; REKLIM; sea-level rise; surface mass balance; Time in years
    Type: Dataset
    Format: text/tab-separated-values, 897 data points
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  • 94
    Publication Date: 2023-03-16
    Keywords: DATE/TIME; GRACE; GRACE-FO; Greenland; Helmholtz-Verbund Regionale Klimaänderungen = Helmholtz Climate Initiative (Regional Climate Change); ice dynamic discharge; ice sheet mass balance; Mass change; Mass change, error; Month; REKLIM; sea-level rise; surface mass balance
    Type: Dataset
    Format: text/tab-separated-values, 92 data points
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  • 95
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    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2023-03-16
    Description: Along with the radiation measurements, ROV positions were obtained from acoustic LBL (Long BaseLine)-positioning and all parameters of vehicle depth, distance to the ice and attitude recorded. All times are given in UTC.
    Keywords: acoustic LBL (Long BaseLine)-positioning; Arctic Ocean; Arctic Ocean 2018, MOCCHA; DATE/TIME; DEPTH, water; Distance, relative, X; Distance, relative, Y; Heading; Oden; Oden_AO2018; Oden_AO2018_821-1; Pitch angle; Remote operated vehicle; Roll angle; ROV
    Type: Dataset
    Format: text/tab-separated-values, 53170 data points
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  • 96
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    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2023-03-16
    Description: Along with the radiation measurements, ROV positions were obtained from acoustic LBL (Long BaseLine)-positioning and all parameters of vehicle depth, distance to the ice and attitude recorded. All times are given in UTC.
    Keywords: acoustic LBL (Long BaseLine)-positioning; Arctic Ocean; Arctic Ocean 2018, MOCCHA; DATE/TIME; DEPTH, water; Distance, relative, X; Distance, relative, Y; Heading; Oden; Oden_AO2018; Oden_AO2018_901-1; Pitch angle; Remote operated vehicle; Roll angle; ROV
    Type: Dataset
    Format: text/tab-separated-values, 67805 data points
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  • 97
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    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2023-03-16
    Description: Along with the radiation measurements, ROV positions were obtained from acoustic LBL (Long BaseLine)-positioning and all parameters of vehicle depth, distance to the ice and attitude recorded. All times are given in UTC.
    Keywords: acoustic LBL (Long BaseLine)-positioning; Arctic Ocean; Arctic Ocean 2018, MOCCHA; DATE/TIME; DEPTH, water; Distance, relative, X; Distance, relative, Y; Heading; Oden; Oden_AO2018; Oden_AO2018_913-1; Pitch angle; Remote operated vehicle; Roll angle; ROV
    Type: Dataset
    Format: text/tab-separated-values, 88580 data points
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  • 98
    Publication Date: 2023-03-16
    Description: Measurements of transmitted radiance under sea ice and corresponding incident solar radiation at the surface have been performed on multi-year ice during the Oden_AO18 campaign (Arctic Ocean 2018: MOCCHA - ACAS - ICE) Central Arctic / North Pole drift station between 19 August and 13 September 2018. The radiation measurements have been performed with RAMSES spectral radiometes (TriOS, Rastede, Germany). All data are given in full spectral resolution interpolated to 1.0 nm, and integrated over the entire wavelength range (broadband, total: 320 to 950 nm). The radiance sensor (7° opening angle) was installed on the ROV. The transflectance is the ratio between transmitted radiance and incident irradiance. All times are given in UTC.
    Keywords: acoustic LBL (Long BaseLine)-positioning; Arctic Ocean; Arctic Ocean 2018, MOCCHA; DATE/TIME; DEPTH, water; Distance, relative, X; Distance, relative, Y; Hyperspectral radiometer, TriOS Mess- und Datentechnik GmbH, RAMSES; Oden; Oden_AO2018; Oden_AO2018_819-1; Remote operated vehicle; ROV; Transflectance; Transflectance, photosynthetically active; Transflectance at 320 nm; Transflectance at 321 nm; Transflectance at 322 nm; Transflectance at 323 nm; Transflectance at 324 nm; Transflectance at 325 nm; Transflectance at 326 nm; Transflectance at 327 nm; Transflectance at 328 nm; Transflectance at 329 nm; Transflectance at 330 nm; Transflectance at 331 nm; Transflectance at 332 nm; Transflectance at 333 nm; Transflectance at 334 nm; Transflectance at 335 nm; Transflectance at 336 nm; Transflectance at 337 nm; Transflectance at 338 nm; Transflectance at 339 nm; Transflectance at 340 nm; Transflectance at 341 nm; Transflectance at 342 nm; Transflectance at 343 nm; Transflectance at 344 nm; Transflectance at 345 nm; Transflectance at 346 nm; Transflectance at 347 nm; Transflectance at 348 nm; Transflectance at 349 nm; Transflectance at 350 nm; Transflectance at 351 nm; Transflectance at 352 nm; Transflectance at 353 nm; Transflectance at 354 nm; Transflectance at 355 nm; Transflectance at 356 nm; Transflectance at 357 nm; Transflectance at 358 nm; Transflectance at 359 nm; Transflectance at 360 nm; Transflectance at 361 nm; Transflectance at 362 nm; Transflectance at 363 nm; Transflectance at 364 nm; Transflectance at 365 nm; Transflectance at 366 nm; Transflectance at 367 nm; Transflectance at 368 nm; Transflectance at 369 nm; Transflectance at 370 nm; Transflectance at 371 nm; Transflectance at 372 nm; Transflectance at 373 nm; Transflectance at 374 nm; Transflectance at 375 nm; Transflectance at 376 nm; Transflectance at 377 nm; Transflectance at 378 nm; Transflectance at 379 nm; Transflectance at 380 nm; Transflectance at 381 nm; Transflectance at 382 nm; Transflectance at 383 nm; Transflectance at 384 nm; Transflectance at 385 nm; Transflectance at 386 nm; Transflectance at 387 nm; Transflectance at 388 nm; Transflectance at 389 nm; Transflectance at 390 nm; Transflectance at 391 nm; Transflectance at 392 nm; Transflectance at 393 nm; Transflectance at 394 nm; Transflectance at 395 nm; Transflectance at 396 nm; Transflectance at 397 nm; Transflectance at 398 nm; Transflectance at 399 nm; Transflectance at 400 nm; Transflectance at 401 nm; Transflectance at 402 nm; Transflectance at 403 nm; Transflectance at 404 nm; Transflectance at 405 nm; Transflectance at 406 nm; Transflectance at 407 nm; Transflectance at 408 nm; Transflectance at 409 nm; Transflectance at 410 nm; Transflectance at 411 nm; Transflectance at 412 nm; Transflectance at 413 nm; Transflectance at 414 nm; Transflectance at 415 nm; Transflectance at 416 nm; Transflectance at 417 nm; Transflectance at 418 nm; Transflectance at 419 nm; Transflectance at 420 nm; Transflectance at 421 nm; Transflectance at 422 nm; Transflectance at 423 nm; Transflectance at 424 nm; Transflectance at 425 nm; Transflectance at 426 nm; Transflectance at 427 nm; Transflectance at 428 nm; Transflectance at 429 nm; Transflectance at 430 nm; Transflectance at 431 nm; Transflectance at 432 nm; Transflectance at 433 nm; Transflectance at 434 nm; Transflectance at 435 nm; Transflectance at 436 nm; Transflectance at 437 nm; Transflectance at 438 nm; Transflectance at 439 nm; Transflectance at 440 nm; Transflectance at 441 nm; Transflectance at 442 nm; Transflectance at 443 nm; Transflectance at 444 nm; Transflectance at 445 nm; Transflectance at 446 nm; Transflectance at 447 nm; Transflectance at 448 nm; Transflectance at 449 nm; Transflectance at 450 nm; Transflectance at 451 nm; Transflectance at 452 nm; Transflectance at 453 nm; Transflectance at 454 nm; Transflectance at 455 nm; Transflectance at 456 nm; Transflectance at 457 nm; Transflectance at 458 nm; Transflectance at 459 nm; Transflectance at 460 nm; Transflectance at 461 nm; Transflectance at 462 nm; Transflectance at 463 nm; Transflectance at 464 nm; Transflectance at 465 nm; Transflectance at 466 nm; Transflectance at 467 nm; Transflectance at 468 nm; Transflectance at 469 nm; Transflectance at 470 nm; Transflectance at 471 nm; Transflectance at 472 nm; Transflectance at 473 nm; Transflectance at 474 nm; Transflectance at 475 nm; Transflectance at 476 nm; Transflectance at 477 nm; Transflectance at 478 nm; Transflectance at 479 nm; Transflectance at 480 nm; Transflectance at 481 nm; Transflectance at 482 nm; Transflectance at 483 nm; Transflectance at 484 nm; Transflectance at 485 nm; Transflectance at 486 nm; Transflectance at 487 nm; Transflectance at 488 nm; Transflectance at 489 nm; Transflectance at 490 nm; Transflectance at 491 nm; Transflectance at 492 nm; Transflectance at 493 nm; Transflectance at 494 nm; Transflectance at 495 nm; Transflectance at 496 nm; Transflectance at 497 nm; Transflectance at 498 nm; Transflectance at 499 nm; Transflectance at 500 nm; Transflectance at 501 nm; Transflectance at 502 nm; Transflectance at 503 nm; Transflectance at 504 nm; Transflectance at 505 nm; Transflectance at 506 nm; Transflectance at 507 nm; Transflectance at 508 nm; Transflectance at 509 nm; Transflectance at 510 nm; Transflectance at 511 nm; Transflectance at 512 nm; Transflectance at 513 nm; Transflectance at 514 nm; Transflectance at 515 nm; Transflectance at 516 nm; Transflectance at 517 nm; Transflectance at 518 nm; Transflectance at 519 nm; Transflectance at 520 nm; Transflectance at 521 nm; Transflectance at 522 nm; Transflectance at 523 nm; Transflectance at 524 nm; Transflectance at 525 nm; Transflectance at 526 nm; Transflectance at 527 nm; Transflectance at 528 nm; Transflectance at 529 nm; Transflectance at 530 nm; Transflectance at 531 nm; Transflectance at 532 nm; Transflectance at 533 nm; Transflectance at 534 nm; Transflectance at 535 nm; Transflectance at 536 nm; Transflectance at 537 nm; Transflectance at 538 nm; Transflectance at 539 nm; Transflectance at 540 nm; Transflectance at 541 nm; Transflectance at 542 nm; Transflectance at 543 nm; Transflectance at 544 nm; Transflectance at 545 nm; Transflectance at 546 nm; Transflectance at 547 nm; Transflectance at 548 nm; Transflectance at 549 nm; Transflectance at 550 nm; Transflectance at 551 nm; Transflectance at 552 nm; Transflectance at 553 nm; Transflectance at 554 nm; Transflectance at 555 nm; Transflectance at 556 nm; Transflectance at 557 nm; Transflectance at 558 nm; Transflectance at 559 nm; Transflectance at 560 nm; Transflectance at 561 nm; Transflectance at 562 nm; Transflectance at 563 nm; Transflectance at 564 nm; Transflectance at 565 nm; Transflectance at 566 nm; Transflectance at 567 nm; Transflectance at 568 nm; Transflectance at 569 nm; Transflectance at 570 nm; Transflectance at 571 nm; Transflectance at 572 nm; Transflectance at 573 nm; Transflectance at 574 nm; Transflectance at 575 nm; Transflectance at 576 nm; Transflectance at 577 nm; Transflectance at 578 nm; Transflectance at 579 nm; Transflectance at 580 nm; Transflectance at 581 nm; Transflectance at 582 nm; Transflectance at 583 nm; Transflectance at 584 nm; Transflectance at 585 nm; Transflectance at 586 nm; Transflectance at 587 nm; Transflectance at 588 nm; Transflectance at 589 nm; Transflectance at 590 nm; Transflectance at 591 nm; Transflectance at 592 nm; Transflectance at 593 nm; Transflectance at 594 nm; Transflectance at 595 nm; Transflectance at 596 nm; Transflectance at 597 nm; Transflectance at 598 nm; Transflectance at 599 nm; Transflectance at 600 nm; Transflectance at 601 nm; Transflectance at 602 nm; Transflectance at 603 nm; Transflectance at 604 nm; Transflectance at 605 nm; Transflectance at 606 nm; Transflectance at 607 nm; Transflectance at 608 nm; Transflectance at 609 nm; Transflectance at 610 nm; Transflectance at 611 nm; Transflectance at 612 nm; Transflectance at 613 nm;
    Type: Dataset
    Format: text/tab-separated-values, 6613525 data points
    Location Call Number Expected Availability
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  • 99
    Publication Date: 2023-03-16
    Description: Measurements of transmitted radiance under sea ice and corresponding incident solar radiation at the surface have been performed on multi-year ice during the Oden_AO18 campaign (Arctic Ocean 2018: MOCCHA - ACAS - ICE) Central Arctic / North Pole drift station between 19 August and 13 September 2018. The radiation measurements have been performed with RAMSES spectral radiometes (TriOS, Rastede, Germany). All data are given in full spectral resolution interpolated to 1.0 nm, and integrated over the entire wavelength range (broadband, total: 320 to 950 nm). The radiance sensor (7° opening angle) was installed on the ROV. The transflectance is the ratio between transmitted radiance and incident irradiance. All times are given in UTC.
    Keywords: acoustic LBL (Long BaseLine)-positioning; Arctic Ocean; Arctic Ocean 2018, MOCCHA; DATE/TIME; DEPTH, water; Distance, relative, X; Distance, relative, Y; Hyperspectral radiometer, TriOS Mess- und Datentechnik GmbH, RAMSES; Oden; Oden_AO2018; Oden_AO2018_824-1; Remote operated vehicle; ROV; Transflectance; Transflectance, photosynthetically active; Transflectance at 320 nm; Transflectance at 321 nm; Transflectance at 322 nm; Transflectance at 323 nm; Transflectance at 324 nm; Transflectance at 325 nm; Transflectance at 326 nm; Transflectance at 327 nm; Transflectance at 328 nm; Transflectance at 329 nm; Transflectance at 330 nm; Transflectance at 331 nm; Transflectance at 332 nm; Transflectance at 333 nm; Transflectance at 334 nm; Transflectance at 335 nm; Transflectance at 336 nm; Transflectance at 337 nm; Transflectance at 338 nm; Transflectance at 339 nm; Transflectance at 340 nm; Transflectance at 341 nm; Transflectance at 342 nm; Transflectance at 343 nm; Transflectance at 344 nm; Transflectance at 345 nm; Transflectance at 346 nm; Transflectance at 347 nm; Transflectance at 348 nm; Transflectance at 349 nm; Transflectance at 350 nm; Transflectance at 351 nm; Transflectance at 352 nm; Transflectance at 353 nm; Transflectance at 354 nm; Transflectance at 355 nm; Transflectance at 356 nm; Transflectance at 357 nm; Transflectance at 358 nm; Transflectance at 359 nm; Transflectance at 360 nm; Transflectance at 361 nm; Transflectance at 362 nm; Transflectance at 363 nm; Transflectance at 364 nm; Transflectance at 365 nm; Transflectance at 366 nm; Transflectance at 367 nm; Transflectance at 368 nm; Transflectance at 369 nm; Transflectance at 370 nm; Transflectance at 371 nm; Transflectance at 372 nm; Transflectance at 373 nm; Transflectance at 374 nm; Transflectance at 375 nm; Transflectance at 376 nm; Transflectance at 377 nm; Transflectance at 378 nm; Transflectance at 379 nm; Transflectance at 380 nm; Transflectance at 381 nm; Transflectance at 382 nm; Transflectance at 383 nm; Transflectance at 384 nm; Transflectance at 385 nm; Transflectance at 386 nm; Transflectance at 387 nm; Transflectance at 388 nm; Transflectance at 389 nm; Transflectance at 390 nm; Transflectance at 391 nm; Transflectance at 392 nm; Transflectance at 393 nm; Transflectance at 394 nm; Transflectance at 395 nm; Transflectance at 396 nm; Transflectance at 397 nm; Transflectance at 398 nm; Transflectance at 399 nm; Transflectance at 400 nm; Transflectance at 401 nm; Transflectance at 402 nm; Transflectance at 403 nm; Transflectance at 404 nm; Transflectance at 405 nm; Transflectance at 406 nm; Transflectance at 407 nm; Transflectance at 408 nm; Transflectance at 409 nm; Transflectance at 410 nm; Transflectance at 411 nm; Transflectance at 412 nm; Transflectance at 413 nm; Transflectance at 414 nm; Transflectance at 415 nm; Transflectance at 416 nm; Transflectance at 417 nm; Transflectance at 418 nm; Transflectance at 419 nm; Transflectance at 420 nm; Transflectance at 421 nm; Transflectance at 422 nm; Transflectance at 423 nm; Transflectance at 424 nm; Transflectance at 425 nm; Transflectance at 426 nm; Transflectance at 427 nm; Transflectance at 428 nm; Transflectance at 429 nm; Transflectance at 430 nm; Transflectance at 431 nm; Transflectance at 432 nm; Transflectance at 433 nm; Transflectance at 434 nm; Transflectance at 435 nm; Transflectance at 436 nm; Transflectance at 437 nm; Transflectance at 438 nm; Transflectance at 439 nm; Transflectance at 440 nm; Transflectance at 441 nm; Transflectance at 442 nm; Transflectance at 443 nm; Transflectance at 444 nm; Transflectance at 445 nm; Transflectance at 446 nm; Transflectance at 447 nm; Transflectance at 448 nm; Transflectance at 449 nm; Transflectance at 450 nm; Transflectance at 451 nm; Transflectance at 452 nm; Transflectance at 453 nm; Transflectance at 454 nm; Transflectance at 455 nm; Transflectance at 456 nm; Transflectance at 457 nm; Transflectance at 458 nm; Transflectance at 459 nm; Transflectance at 460 nm; Transflectance at 461 nm; Transflectance at 462 nm; Transflectance at 463 nm; Transflectance at 464 nm; Transflectance at 465 nm; Transflectance at 466 nm; Transflectance at 467 nm; Transflectance at 468 nm; Transflectance at 469 nm; Transflectance at 470 nm; Transflectance at 471 nm; Transflectance at 472 nm; Transflectance at 473 nm; Transflectance at 474 nm; Transflectance at 475 nm; Transflectance at 476 nm; Transflectance at 477 nm; Transflectance at 478 nm; Transflectance at 479 nm; Transflectance at 480 nm; Transflectance at 481 nm; Transflectance at 482 nm; Transflectance at 483 nm; Transflectance at 484 nm; Transflectance at 485 nm; Transflectance at 486 nm; Transflectance at 487 nm; Transflectance at 488 nm; Transflectance at 489 nm; Transflectance at 490 nm; Transflectance at 491 nm; Transflectance at 492 nm; Transflectance at 493 nm; Transflectance at 494 nm; Transflectance at 495 nm; Transflectance at 496 nm; Transflectance at 497 nm; Transflectance at 498 nm; Transflectance at 499 nm; Transflectance at 500 nm; Transflectance at 501 nm; Transflectance at 502 nm; Transflectance at 503 nm; Transflectance at 504 nm; Transflectance at 505 nm; Transflectance at 506 nm; Transflectance at 507 nm; Transflectance at 508 nm; Transflectance at 509 nm; Transflectance at 510 nm; Transflectance at 511 nm; Transflectance at 512 nm; Transflectance at 513 nm; Transflectance at 514 nm; Transflectance at 515 nm; Transflectance at 516 nm; Transflectance at 517 nm; Transflectance at 518 nm; Transflectance at 519 nm; Transflectance at 520 nm; Transflectance at 521 nm; Transflectance at 522 nm; Transflectance at 523 nm; Transflectance at 524 nm; Transflectance at 525 nm; Transflectance at 526 nm; Transflectance at 527 nm; Transflectance at 528 nm; Transflectance at 529 nm; Transflectance at 530 nm; Transflectance at 531 nm; Transflectance at 532 nm; Transflectance at 533 nm; Transflectance at 534 nm; Transflectance at 535 nm; Transflectance at 536 nm; Transflectance at 537 nm; Transflectance at 538 nm; Transflectance at 539 nm; Transflectance at 540 nm; Transflectance at 541 nm; Transflectance at 542 nm; Transflectance at 543 nm; Transflectance at 544 nm; Transflectance at 545 nm; Transflectance at 546 nm; Transflectance at 547 nm; Transflectance at 548 nm; Transflectance at 549 nm; Transflectance at 550 nm; Transflectance at 551 nm; Transflectance at 552 nm; Transflectance at 553 nm; Transflectance at 554 nm; Transflectance at 555 nm; Transflectance at 556 nm; Transflectance at 557 nm; Transflectance at 558 nm; Transflectance at 559 nm; Transflectance at 560 nm; Transflectance at 561 nm; Transflectance at 562 nm; Transflectance at 563 nm; Transflectance at 564 nm; Transflectance at 565 nm; Transflectance at 566 nm; Transflectance at 567 nm; Transflectance at 568 nm; Transflectance at 569 nm; Transflectance at 570 nm; Transflectance at 571 nm; Transflectance at 572 nm; Transflectance at 573 nm; Transflectance at 574 nm; Transflectance at 575 nm; Transflectance at 576 nm; Transflectance at 577 nm; Transflectance at 578 nm; Transflectance at 579 nm; Transflectance at 580 nm; Transflectance at 581 nm; Transflectance at 582 nm; Transflectance at 583 nm; Transflectance at 584 nm; Transflectance at 585 nm; Transflectance at 586 nm; Transflectance at 587 nm; Transflectance at 588 nm; Transflectance at 589 nm; Transflectance at 590 nm; Transflectance at 591 nm; Transflectance at 592 nm; Transflectance at 593 nm; Transflectance at 594 nm; Transflectance at 595 nm; Transflectance at 596 nm; Transflectance at 597 nm; Transflectance at 598 nm; Transflectance at 599 nm; Transflectance at 600 nm; Transflectance at 601 nm; Transflectance at 602 nm; Transflectance at 603 nm; Transflectance at 604 nm; Transflectance at 605 nm; Transflectance at 606 nm; Transflectance at 607 nm; Transflectance at 608 nm; Transflectance at 609 nm; Transflectance at 610 nm; Transflectance at 611 nm; Transflectance at 612 nm; Transflectance at 613 nm;
    Type: Dataset
    Format: text/tab-separated-values, 5302885 data points
    Location Call Number Expected Availability
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  • 100
    Publication Date: 2023-03-16
    Description: Measurements of transmitted radiance under sea ice and corresponding incident solar radiation at the surface have been performed on multi-year ice during the Oden_AO18 campaign (Arctic Ocean 2018: MOCCHA - ACAS - ICE) Central Arctic / North Pole drift station between 19 August and 13 September 2018. The radiation measurements have been performed with RAMSES spectral radiometes (TriOS, Rastede, Germany). All data are given in full spectral resolution interpolated to 1.0 nm, and integrated over the entire wavelength range (broadband, total: 320 to 950 nm). The radiance sensor (7° opening angle) was installed on the ROV. The transflectance is the ratio between transmitted radiance and incident irradiance. All times are given in UTC.
    Keywords: acoustic LBL (Long BaseLine)-positioning; Arctic Ocean; Arctic Ocean 2018, MOCCHA; DATE/TIME; DEPTH, water; Distance, relative, X; Distance, relative, Y; Hyperspectral radiometer, TriOS Mess- und Datentechnik GmbH, RAMSES; Oden; Oden_AO2018; Oden_AO2018_906-1; Remote operated vehicle; ROV; Transflectance; Transflectance, photosynthetically active; Transflectance at 320 nm; Transflectance at 321 nm; Transflectance at 322 nm; Transflectance at 323 nm; Transflectance at 324 nm; Transflectance at 325 nm; Transflectance at 326 nm; Transflectance at 327 nm; Transflectance at 328 nm; Transflectance at 329 nm; Transflectance at 330 nm; Transflectance at 331 nm; Transflectance at 332 nm; Transflectance at 333 nm; Transflectance at 334 nm; Transflectance at 335 nm; Transflectance at 336 nm; Transflectance at 337 nm; Transflectance at 338 nm; Transflectance at 339 nm; Transflectance at 340 nm; Transflectance at 341 nm; Transflectance at 342 nm; Transflectance at 343 nm; Transflectance at 344 nm; Transflectance at 345 nm; Transflectance at 346 nm; Transflectance at 347 nm; Transflectance at 348 nm; Transflectance at 349 nm; Transflectance at 350 nm; Transflectance at 351 nm; Transflectance at 352 nm; Transflectance at 353 nm; Transflectance at 354 nm; Transflectance at 355 nm; Transflectance at 356 nm; Transflectance at 357 nm; Transflectance at 358 nm; Transflectance at 359 nm; Transflectance at 360 nm; Transflectance at 361 nm; Transflectance at 362 nm; Transflectance at 363 nm; Transflectance at 364 nm; Transflectance at 365 nm; Transflectance at 366 nm; Transflectance at 367 nm; Transflectance at 368 nm; Transflectance at 369 nm; Transflectance at 370 nm; Transflectance at 371 nm; Transflectance at 372 nm; Transflectance at 373 nm; Transflectance at 374 nm; Transflectance at 375 nm; Transflectance at 376 nm; Transflectance at 377 nm; Transflectance at 378 nm; Transflectance at 379 nm; Transflectance at 380 nm; Transflectance at 381 nm; Transflectance at 382 nm; Transflectance at 383 nm; Transflectance at 384 nm; Transflectance at 385 nm; Transflectance at 386 nm; Transflectance at 387 nm; Transflectance at 388 nm; Transflectance at 389 nm; Transflectance at 390 nm; Transflectance at 391 nm; Transflectance at 392 nm; Transflectance at 393 nm; Transflectance at 394 nm; Transflectance at 395 nm; Transflectance at 396 nm; Transflectance at 397 nm; Transflectance at 398 nm; Transflectance at 399 nm; Transflectance at 400 nm; Transflectance at 401 nm; Transflectance at 402 nm; Transflectance at 403 nm; Transflectance at 404 nm; Transflectance at 405 nm; Transflectance at 406 nm; Transflectance at 407 nm; Transflectance at 408 nm; Transflectance at 409 nm; Transflectance at 410 nm; Transflectance at 411 nm; Transflectance at 412 nm; Transflectance at 413 nm; Transflectance at 414 nm; Transflectance at 415 nm; Transflectance at 416 nm; Transflectance at 417 nm; Transflectance at 418 nm; Transflectance at 419 nm; Transflectance at 420 nm; Transflectance at 421 nm; Transflectance at 422 nm; Transflectance at 423 nm; Transflectance at 424 nm; Transflectance at 425 nm; Transflectance at 426 nm; Transflectance at 427 nm; Transflectance at 428 nm; Transflectance at 429 nm; Transflectance at 430 nm; Transflectance at 431 nm; Transflectance at 432 nm; Transflectance at 433 nm; Transflectance at 434 nm; Transflectance at 435 nm; Transflectance at 436 nm; Transflectance at 437 nm; Transflectance at 438 nm; Transflectance at 439 nm; Transflectance at 440 nm; Transflectance at 441 nm; Transflectance at 442 nm; Transflectance at 443 nm; Transflectance at 444 nm; Transflectance at 445 nm; Transflectance at 446 nm; Transflectance at 447 nm; Transflectance at 448 nm; Transflectance at 449 nm; Transflectance at 450 nm; Transflectance at 451 nm; Transflectance at 452 nm; Transflectance at 453 nm; Transflectance at 454 nm; Transflectance at 455 nm; Transflectance at 456 nm; Transflectance at 457 nm; Transflectance at 458 nm; Transflectance at 459 nm; Transflectance at 460 nm; Transflectance at 461 nm; Transflectance at 462 nm; Transflectance at 463 nm; Transflectance at 464 nm; Transflectance at 465 nm; Transflectance at 466 nm; Transflectance at 467 nm; Transflectance at 468 nm; Transflectance at 469 nm; Transflectance at 470 nm; Transflectance at 471 nm; Transflectance at 472 nm; Transflectance at 473 nm; Transflectance at 474 nm; Transflectance at 475 nm; Transflectance at 476 nm; Transflectance at 477 nm; Transflectance at 478 nm; Transflectance at 479 nm; Transflectance at 480 nm; Transflectance at 481 nm; Transflectance at 482 nm; Transflectance at 483 nm; Transflectance at 484 nm; Transflectance at 485 nm; Transflectance at 486 nm; Transflectance at 487 nm; Transflectance at 488 nm; Transflectance at 489 nm; Transflectance at 490 nm; Transflectance at 491 nm; Transflectance at 492 nm; Transflectance at 493 nm; Transflectance at 494 nm; Transflectance at 495 nm; Transflectance at 496 nm; Transflectance at 497 nm; Transflectance at 498 nm; Transflectance at 499 nm; Transflectance at 500 nm; Transflectance at 501 nm; Transflectance at 502 nm; Transflectance at 503 nm; Transflectance at 504 nm; Transflectance at 505 nm; Transflectance at 506 nm; Transflectance at 507 nm; Transflectance at 508 nm; Transflectance at 509 nm; Transflectance at 510 nm; Transflectance at 511 nm; Transflectance at 512 nm; Transflectance at 513 nm; Transflectance at 514 nm; Transflectance at 515 nm; Transflectance at 516 nm; Transflectance at 517 nm; Transflectance at 518 nm; Transflectance at 519 nm; Transflectance at 520 nm; Transflectance at 521 nm; Transflectance at 522 nm; Transflectance at 523 nm; Transflectance at 524 nm; Transflectance at 525 nm; Transflectance at 526 nm; Transflectance at 527 nm; Transflectance at 528 nm; Transflectance at 529 nm; Transflectance at 530 nm; Transflectance at 531 nm; Transflectance at 532 nm; Transflectance at 533 nm; Transflectance at 534 nm; Transflectance at 535 nm; Transflectance at 536 nm; Transflectance at 537 nm; Transflectance at 538 nm; Transflectance at 539 nm; Transflectance at 540 nm; Transflectance at 541 nm; Transflectance at 542 nm; Transflectance at 543 nm; Transflectance at 544 nm; Transflectance at 545 nm; Transflectance at 546 nm; Transflectance at 547 nm; Transflectance at 548 nm; Transflectance at 549 nm; Transflectance at 550 nm; Transflectance at 551 nm; Transflectance at 552 nm; Transflectance at 553 nm; Transflectance at 554 nm; Transflectance at 555 nm; Transflectance at 556 nm; Transflectance at 557 nm; Transflectance at 558 nm; Transflectance at 559 nm; Transflectance at 560 nm; Transflectance at 561 nm; Transflectance at 562 nm; Transflectance at 563 nm; Transflectance at 564 nm; Transflectance at 565 nm; Transflectance at 566 nm; Transflectance at 567 nm; Transflectance at 568 nm; Transflectance at 569 nm; Transflectance at 570 nm; Transflectance at 571 nm; Transflectance at 572 nm; Transflectance at 573 nm; Transflectance at 574 nm; Transflectance at 575 nm; Transflectance at 576 nm; Transflectance at 577 nm; Transflectance at 578 nm; Transflectance at 579 nm; Transflectance at 580 nm; Transflectance at 581 nm; Transflectance at 582 nm; Transflectance at 583 nm; Transflectance at 584 nm; Transflectance at 585 nm; Transflectance at 586 nm; Transflectance at 587 nm; Transflectance at 588 nm; Transflectance at 589 nm; Transflectance at 590 nm; Transflectance at 591 nm; Transflectance at 592 nm; Transflectance at 593 nm; Transflectance at 594 nm; Transflectance at 595 nm; Transflectance at 596 nm; Transflectance at 597 nm; Transflectance at 598 nm; Transflectance at 599 nm; Transflectance at 600 nm; Transflectance at 601 nm; Transflectance at 602 nm; Transflectance at 603 nm; Transflectance at 604 nm; Transflectance at 605 nm; Transflectance at 606 nm; Transflectance at 607 nm; Transflectance at 608 nm; Transflectance at 609 nm; Transflectance at 610 nm; Transflectance at 611 nm; Transflectance at 612 nm; Transflectance at 613 nm;
    Type: Dataset
    Format: text/tab-separated-values, 1901190 data points
    Location Call Number Expected Availability
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