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  • Data  (16)
  • 2010-2014  (16)
  • 1965-1969
  • 1960-1964
Collection
Keywords
Publisher
Years
Year
  • 1
    Publication Date: 2023-03-14
    Keywords: Alkalinity, total; Aragonite saturation state; Bicarbonate ion; Calcite saturation state; Calculated; Carbon, inorganic, dissolved; Carbonate ion; Carbon dioxide; Carbon dioxide, partial pressure; CTD/Rosette; CTD-RO; DEPTH, water; Elevation of event; El Puma; Event label; Gulf of California; Latitude of event; Longitude of event; Mediterranean Sea Acidification in a Changing Climate; MedSeA; pH; pH meter (Metrohm ph mobile); Salinity; Temperature, water; WACTD-02-01CTD; WACTD-02-02CTD; WACTD-02-09CTD; WACTD-02-12CTD; WACTD-02-19CTD; WACTD-02-25CTD; WACTD-02-27CTD; WACTD-02-29CTD; WACTD-02-31CTD; WAG-02
    Type: Dataset
    Format: text/tab-separated-values, 97 data points
    Location Call Number Expected Availability
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  • 2
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Pettit, Laura Rachel; Hart, Malcom B; Medina-Sánchez, A N; Smart, Christopher W; Rodolfo-Metalpa, Riccardo; Hall-Spencer, Jason M; Prol-Ledesma, Rosa Maria (2013): Benthic foraminifera show some resilience to ocean acidification in the northern Gulf of California, Mexico. Marine Pollution Bulletin, 73(2), 452-462, https://doi.org/10.1016/j.marpolbul.2013.02.011
    Publication Date: 2023-05-12
    Description: Extensive CO2 vents have been discovered in the Wagner Basin, northern Gulf of California, where they create large areas with lowered seawater pH. Such areas are suitable for investigations of long-term biological effects of ocean acidification and effects of CO2 leakage from subsea carbon capture storage. Here, we show responses of benthic foraminifera to seawater pH gradients at 74-207 m water depth. Living (rose Bengal stained) benthic foraminifera included Nonionella basispinata, Epistominella bradyana and Bulimina marginata. Studies on foraminifera at CO2 vents in the Mediterranean and off Papua New Guinea have shown dramatic long-term effects of acidified seawater. We found living calcareous benthic foraminifera in low pH conditions in the northern Gulf of California, although there was an impoverished species assemblage and evidence of post-mortem test dissolution.
    Keywords: Mediterranean Sea Acidification in a Changing Climate; MedSeA
    Type: Dataset
    Format: application/zip, 5 datasets
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  • 3
    Publication Date: 2023-03-25
    Keywords: Ammonia beccarii; Bolivina acutula; Bolivina sp.; Bulimina denudata; Bulimina marginata; Counting 〉63 µm fraction; DEPTH, sediment/rock; Elevation of event; Elphidium excavatum; El Puma; Epistominella bradyana; Event label; Foraminifera, benthic agglutinated indeterminata; Foraminifera, benthic calcareous indeterminata; Grab; GRAB; Gulf of California; Hanzawaia nitidula; Latitude of event; Longitude of event; Mediterranean Sea Acidification in a Changing Climate; MedSeA; Nonionella basispinata; Reophax sp.; WAG-02; WAG-02-01G; WAG-02-02G; WAG-02-09G; WAG-02-12G; WAG-02-19G; WAG-02-25G; WAG-02-27G; WAG-02-29G; WAG-02-31G
    Type: Dataset
    Format: text/tab-separated-values, 135 data points
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  • 4
    Publication Date: 2023-03-25
    Keywords: Ammonia beccarii; Bolivina acuminata; Bolivina acutula; Bolivina sp.; Buccella tenerrima; Bulimina denudata; Bulimina marginata; Bulimina sp.; Cancris auriculus; Cassidulina sp.; Counting 〉63 µm fraction; DEPTH, sediment/rock; Elevation of event; Elphidium excavatum; Elphidium sp.; El Puma; Epistominella bradyana; Eponides sp.; Event label; Foraminifera, benthic, fragments; Foraminifera, benthic agglutinated indeterminata; Foraminifera, benthic calcareous indeterminata; Grab; GRAB; Gulf of California; Hanzawaia nitidula; Lagena sp.; Latitude of event; Lenticulina; Longitude of event; Loxostomum pseudobeyrichii; Mediterranean Sea Acidification in a Changing Climate; MedSeA; Nonionella basispinata; Nonionella sp.; Reophax sp.; Textularia sp.; Trochammina sp.; Uvigerina excellens; Veleroninoides; WAG-02; WAG-02-01G; WAG-02-02G; WAG-02-09G; WAG-02-12G; WAG-02-19G; WAG-02-25G; WAG-02-27G; WAG-02-29G; WAG-02-31G
    Type: Dataset
    Format: text/tab-separated-values, 558 data points
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  • 5
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    Unknown
    PANGAEA
    In:  European Pollen Database (EPD)
    Publication Date: 2023-02-23
    Keywords: Age, dated; Age, dated, error to older; Age, dated, error to younger; Age, radiocarbon; Core1; DEPTH, sediment/rock; Etang dOuveillan, France; OUVEIL2; Thickness
    Type: Dataset
    Format: text/tab-separated-values, 12 data points
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  • 6
    Publication Date: 2023-11-01
    Keywords: Abies; Acer; ALIENOR; Alnus; Ambrosia-type; Anthemis-type; Apiaceae; Arcella; Arceuthobium; Artemisia; Asphodelus; Aster-type; Betula; Botrychium-type; Brassicaceae; Bupleurum-type; Buxus; Calluna; CALYPSO; Calypso Corer; Campanulaceae; Cannabis/Humulus; Carpinus; Caryophyllaceae; Castanea; Cedrus; Centaurea cyanus-type; Centaurea nigra-type; Centaurea scabiosa-type; Chenopodiaceae; Cirsium-type; Cistus; Concentricystes; Coriaria myrtifolia; Corylus; Counting, palynology; Cryptogramma; Cupressaceae; Cyperaceae; DEPTH, sediment/rock; Ephedra distachya-type; Ephedra fragilis-type; Epilobium; Ericaceae; Erodium; Euphorbia; Fabaceae; Fagus; Fraxinus excelsior-type; Galium-type; Gentianaceae; Geranium; Hedera helix; Helianthemum; Hippophae; Huperzia selago; Ilex; Indeterminable: broken; Indeterminable: corroded; Indeterminable: crumpled; Indeterminable: hidden; Indeterminable: unknown; Isoetes; Lamiaceae; Liliaceae; Lycopodium clavatum-type; Marion Dufresne (1995); MD04-2845; MD141; Mentha-type; Mercurialis-type; Monolete ornamented; Monolete psilate; Myrica; Myriophyllum alterniflorum; Myriophyllum verticillatum; North East Atlantic; Nymphaea alba-type; Olea; Osmunda; Pediastrum; Phillyrea; Picea; Pinus; Pistacia; Plantago; Plantago lanceolata-type; Platanus; Plumbaginaceae; Poaceae; Polygonum aviculare-type; Polypodium vulgare-type; Populus; Potamogeton; Pre-Quaternary and Early-Quaternary; Pterocarya; Quercus, deciduous-type; Quercus evergreen-type; Quercus suber-type; Ranunculaceae; Rhamnus-type; Rosaceae; Rumex; Salix; Sanguisorba minor; Sanguisorba officinalis; Scabiosa; Scrophulariaceae; Selaginella selaginoides; Serratula-type; Sphagnum; Spores, trilete reworked; Stomata; Taraxacum; Taxus; Thalictrum; Tilia; Trilete ornamented; Trilete psilate; Typha/Sparganium; Ulex-type; Ulmus; Urtica; Valerianaceae; Vitis
    Type: Dataset
    Format: text/tab-separated-values, 17284 data points
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  • 7
    Publication Date: 2023-11-01
    Keywords: Abies; Acer; Alnus; Anthemis; Apiaceae; Artemisia; Asphodelus; Aster-type; Betula; Boraginaceae; Botrychium-type; Brassicaceae; Calluna; CALYPSO; Calypso Corer; Campanulaceae; Carpinus betulus; Caryophyllaceae; Cedrus; Centaurea cyanus-type; Centaurea nigra-type; Centaurea scabiosa-type; Centaurium-type; Cerealia-type; Chenopodiaceae-type; Cistus; Convolvulus; Corylus; Counting, palynology; Crassulaceae; Cryptogramma; Cupressaceae; Cyperaceae; Daphne; DEPTH, sediment/rock; Ephedra distachya-type; Ephedra fragilis-type; Ericaceae; Erodium; Euonymus; Euphorbia; Fabaceae; Fagus; Filipendula; Fraxinus excelsior-type; Fraxinus ornus-type; Galium-type; Gentianaceae; Geranium; Hedera; Helianthemum; Hippophae; IMAGES I; Indeterminable: broken; Indeterminable: concealed; Indeterminable: corroded; Indeterminable: crumpled; Indeterminable: unknown; Isoetes; Knautia-type; Lamiaceae; Liliaceae; Linum; Lythrum; Marge Ibérique; Marion Dufresne (1995); MD101; MD952042; MD95-2042; Menyanthes trifoliata; Mercurialis-type; Monolete ornamented; Monolete psilate; Myrica; Myriophyllum undifferentiated; Myrtus; Olea; Osmunda regalis; Phillyrea; Pinus; Pistacia; Plantago; Plumbaginaceae; Poaceae; Polygonum aviculare-type; Polygonum persicaria-type; Polypodium vulgare-type; Potamogeton; Primulaceae; Quercus, deciduous-type; Quercus evergreen-type; Quercus suber-type; Ranunculaceae; Rhamnus-type; Rhus-type; Ribes; Rosaceae; Rumex; Salix; Sanguisorba minor ssp. minor; Sanguisorba officinalis; Scabiosa; Taraxacum; Taxus; Thalictrum; Tilia; Trilete ornamented; Trilete psilate; Typha/Sparganium; Ulmus; Urtica-type; Valerianaceae; Vitis
    Type: Dataset
    Format: text/tab-separated-values, 21630 data points
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  • 8
    Publication Date: 2023-11-01
    Keywords: Abies; Acer; Alnus; Ambrosia-type; Anogramma leptophylla; Anthemis-type; Apiaceae; Artemisia; Asphodelus; Aster/Anthemis-type; Aster-type; Betula; Boraginaceae; Botrychium-type; Brassicaceae; Buxus; Calluna; CALYPSO; Calypso Corer; Campanulaceae; Carpinus betulus-type; Caryophyllaceae; Cedrus; Centaurea cyanus-type; Centaurea nigra-type; Centaurea scabiosa-type; cf. Haplophyllum; Chenopodiaceae; Cistus; Concentricystes; Convolvulus; Corylus; Counting, palynology; Cryptogramma; Cupressaceae; Cyperaceae; Daphne; DEPTH, sediment/rock; Dipsacaceae; Ephedra distachya-type; Ephedra fragilis-type; Epilobium; Ericaceae; Erodium; Euphorbia-type; Fabaceae; Fagus; Filipendula; Fraxinus excelsior-type; Galium-type; Gentianaceae; Geranium; Hedera helix; Helianthemum; Herniaria-type; Hippophae; Ilex; IMAGES V; Indeterminable: broken; Indeterminable: corroded; Indeterminable: crumpled; Indeterminable: hidden; Indeterminable: unknown; Isoetes; Juglans; Knautia-type; Lamiaceae; Lemna; Liliaceae; Lythrum; Marion Dufresne (1995); MD114; MD99-2331; Mentha-type; Mercurialis-type; Monolete ornamented; Monolete psilate; Myrica; Myriophyllum alterniflorum; Myriophyllum verticillatum; Nymphaea alba-type; Oenotheraceae; Olea; Pediastrum; Phillyrea; Picea; Pinus; Pistacia; Plantago; Platanus; Plumbaginaceae; Poaceae; Polygonum aviculare-type; Polygonum persicaria-type; Polypodium vulgare-type; Potamogeton; Quercus, deciduous-type; Quercus evergreen-type; Quercus suber-type; Ranunculaceae; Resedaceae; Rhamnus-type; Rosaceae; Rumex-type; Salix; Sambucus; Sanguisorba minor; Sanguisorba officinalis; Scabiosa; Scrophulariaceae; Sphagnum; Spores, trilete reworked; Stomata; Taraxacum-type; Thalictrum; Tilia; Trilete ornamented; Trilete psilate; Typha/Sparganium; Ulex-type; Ulmus; Urtica; Valerianaceae; Vigo
    Type: Dataset
    Format: text/tab-separated-values, 31970 data points
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  • 9
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    Unknown
    PANGAEA
    In:  European Pollen Database (EPD)
    Publication Date: 2023-11-01
    Keywords: Abies; Acer; Alnus; Artemisia; Asphodelus; Asteroideae; Betula; Boraginaceae; Buxus; Calluna vulgaris; Campanulaceae; Cannabaceae; Carpinus betulus; Caryophyllaceae; Castanea; Centaurea; Cerealia-type; Chenopodiaceae; Cichorioideae; Cistus; Convolvulaceae; Core1; Corylus; Cruciferae; Cupressaceae; Cyperaceae; DEPTH, sediment/rock; Ephedra; Ericaceae; Etang dOuveillan, France; Euphorbia; Fagus; Filipendula; Fraxinus; Gentianaceae; Gramineae; Hedera; Indeterminable: undifferentiated; Indeterminable: unknown; Juglans; Labiatae; Leguminosae; Liliaceae; Linum; Mercurialis-type; Monolete spore(s); Nymphaeaceae; Olea; OUVEIL2; Phillyrea; Pinaceae; Pinus; Pistacia; Plantago; Polygalaceae; Polygonum; Polypodiaceae; Potamogeton; Primulaceae; Quercus ilex-type; Quercus robur-type; Ranunculaceae; Rhamnus; Rosaceae; Rubiaceae; Rumex; Salix; Sanguisorba minor-type; Scabiosa; Scrophulariaceae; Spores, trilete; Taxus; Thalictrum; Tilia; Trilete spores (roughly verrucate); Typha angustifolia/Sparganium; Typha latifolia; Ulmus; Umbelliferae; Urticaceae; Valerianaceae; Vitis
    Type: Dataset
    Format: text/tab-separated-values, 1872 data points
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  • 10
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: García, Manuel; Alba, Juan-José; Gonzalo, Alberto; Sánchez, José Luis; Arauzo, Jesús (2013): Density of alkyl esters and its mixtures. A comparison and improvement of predictive models. Fuel, 103, 232-238, https://doi.org/10.1016/j.fuel.2012.07.049
    Publication Date: 2024-02-17
    Description: Biodiesel density is a key parameter in biodiesel simulations and process development. In this work we selected, evaluated and improved two density models, one theoretical (Rackett-Soave) and one empirical (Lapuerta's method) for methanol based biodiesels (FAME) and ethanol based biodiesel (FAEE). For this purpose, biodiesel was produced from vegetable oils (sunflower, rapeseed, soybean, olive, safflower and other two commercial mixtures of vegetable oils) and animal fats (edible and crude pork fat and beef tallow) using both methanol and ethanol for the transesterification reactions, and blended to get 21 FAME and 21 FAEE, reporting their density and detailed composition. Bibliographic data have also been used. The Rackett-Soave method has been improved by the use of a new acentric factor correlation, whereas the parameters of the empirical one are improved by considering a bigger density data bank. Results show that the evaluated models could be used to estimate the biodiesel density with a good grade of accuracy but the performed modifications improve the accuracy of the models: ARD (%) for FAME; 0.33, and FAEE; 0.26, both calculated with the modification of Rackett-Soave method and ARD (%) for FAME; 0.40 calculated with the modification of the Lapuerta's method).
    Type: Dataset
    Format: application/vnd.openxmlformats-officedocument.spreadsheetml.sheet, 24.7 kBytes
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