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  • American Chemical Society  (11,262)
  • PANGAEA  (1,391)
  • International Union of Crystallography (IUCr)  (453)
  • Society of Economic Geologists (SEG)
  • 2020-2024  (1,440)
  • 2020-2023  (3)
  • 1965-1969  (8,273)
  • 1945-1949  (2,093)
  • 1935-1939  (1,297)
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Year
  • 11
    Publication Date: 2023-08-12
    Keywords: 198-1209B; Acarinina spp.; Author(s); Chiloguembelina spp.; Comment; Core; Cruise/expedition; Depth, bottom/max; Depth, reference; DEPTH, sediment/rock; Depth, top/min; DRILL; Drilling/drill rig; Globanomalina spp.; Hole; Igorina spp.; Joides Resolution; Leg198; Morozovella spp.; North Pacific Ocean; Parasubbotina spp.; Persistent Identifier; Planorotalites spp.; Pseudohastigerina spp.; Sample code/label; Section; Site; Subbotina spp.; Type; Year of publication
    Type: Dataset
    Format: text/tab-separated-values, 966 data points
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  • 12
    Publication Date: 2023-08-12
    Keywords: 48-401; Acarinina bullbrooki, δ13C; Acarinina bullbrooki, δ18O; Acarinina praetopilensis, δ13C; Acarinina praetopilensis, δ18O; Acarinina soldadoensis, δ13C; Acarinina soldadoensis, δ18O; Acarinina spp., δ13C; Acarinina spp., δ18O; Author(s); Chiloguembelina wilcoxensis, δ13C; Chiloguembelina wilcoxensis, δ18O; Cibicidoides sp., δ13C; Cibicidoides sp., δ18O; Comment; Core; Cruise/expedition; DEPTH, sediment/rock; Depth, top/min; DRILL; Drilling/drill rig; Foraminifera, size maximum; Foraminifera, size minimum; Globigerinatheka cf. index, δ13C; Globigerinatheka cf. index, δ18O; Globoturborotalita ouachitaensis, δ13C; Globoturborotalita ouachitaensis, δ18O; Glomar Challenger; Half; Hantkenina mexicana, δ13C; Hantkenina mexicana, δ18O; Hantkenina primitiva, δ13C; Hantkenina primitiva, δ18O; Hantkenina spp., δ13C; Hantkenina spp., δ18O; Leg48; Morozovella aequa, δ13C; Morozovella aequa, δ18O; Morozovella aragonensis, δ13C; Morozovella aragonensis, δ18O; Morozovella marginodentata, δ13C; Morozovella marginodentata, δ18O; Morozovella subbotinae, δ13C; Morozovella subbotinae, δ18O; Morozovella velascoensis, δ13C; Morozovella velascoensis, δ18O; Morozovelloides bandyi, δ13C; Morozovelloides bandyi, δ18O; Morozovelloides crassatus, δ13C; Morozovelloides crassatus, δ18O; North Atlantic/TERRACE; Number of specimens, range; Nuttallides truempyi, δ13C; Nuttallides truempyi, δ18O; Offset; Oridorsalis umbonatus, δ13C; Oridorsalis umbonatus, δ18O; Parasubbotina inaequispira, δ13C; Parasubbotina inaequispira, δ18O; Persistent Identifier; Sample type; Section; Site; Subbotina cf. eocaena, δ13C; Subbotina cf. eocaena, δ18O; Subbotina cf. roesnaesensis, δ13C; Subbotina cf. roesnaesensis, δ18O; Subbotina patagonica, δ13C; Subbotina patagonica, δ18O; Subbotina spp., δ13C; Subbotina spp., δ18O; Subbotina velascoensis, δ13C; Subbotina velascoensis, δ18O; Type; Year of publication; Zeauvigerina aegyptiaca, δ13C; Zeauvigerina aegyptiaca, δ18O; δ13C, bulk carbonate; δ18O, bulk carbonate
    Type: Dataset
    Format: text/tab-separated-values, 12967 data points
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  • 13
    Publication Date: 2023-08-12
    Keywords: 113-690; Acarinina mckannai, δ13C; Acarinina mckannai, δ18O; Acarinina praepentacamerata, δ13C; Acarinina praepentacamerata, δ18O; Acarinina soldadoensis, δ13C; Acarinina soldadoensis, δ18O; Acarinina spp., δ13C; Acarinina spp., δ18O; Acarinina subsphaerica, δ13C; Acarinina subsphaerica, δ18O; AGE; Age, relative; Author(s); Bleaching; Bulimina ovula, δ13C; Bulimina ovula, δ18O; Bulimina spp., δ13C; Bulimina spp., δ18O; Cibicidoides spp., δ13C; Cibicidoides spp., δ18O; Comment; COMPCORE; Composite Core; Core; Cruise/expedition; Depth, reference; DEPTH, sediment/rock; Foraminifera; Foraminifera, size maximum; Foraminifera, size minimum; Gavelinella beccariiformis, δ13C; Gavelinella beccariiformis, δ18O; Half; Hole; Joides Resolution; Leg113; Lenticulina spp., δ13C; Lenticulina spp., δ18O; Morozovella convexa, δ13C; Morozovella convexa, δ18O; Number of specimens, range; Nuttallides truempyi, δ13C; Nuttallides truempyi, δ18O; Offset; Oridorsalis umbonatus, δ13C; Oridorsalis umbonatus, δ18O; Persistent Identifier; PETM; Sample type; Section; Site; South Atlantic Ocean; Subbotina patagonica, δ13C; Subbotina patagonica, δ18O; Subbotina spp., δ13C; Subbotina spp., δ18O; Tappanina selmensis, δ13C; Tappanina selmensis, δ18O; Type; Year of publication; δ13C, bulk carbonate; δ18O, bulk carbonate
    Type: Dataset
    Format: text/tab-separated-values, 28046 data points
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  • 14
    Publication Date: 2023-07-11
    Description: Measurements of radon-222 (222Rn) concentration were collected using a 1500 L dual-flow loop radon detector, designed and built by the Australian Nuclear Science and Technology Organisation (ANSTO; Lucas Heights, NSW, Australia) (Chambers et al., 2011; Whittlestone and Zahorowski, 1998). Sampling occurred at 65-75 L min^-1. Calibration occurred during the campaign from a Pylon (Ottawa, ON, Canada) source. Measurements were taken at Cataract Scout Park, Appin, N.S.W. (34°14'42.29"S 150°49'24.97"E) from an inlet 3.94 m above ground level as part of the Characterizing Organics and Aerosol Loading over Australia (COALA-2020) campaign. The campaign ran from mid-January to mid-March, 2020. Reported measurements are at 30-minute time resolution. Concentrations have not been corrected for the response time of the detector but can be on the request of users. See Griffiths et al. (2016) for details.
    Keywords: aerosol; Appin, Australia; boundary layer; Cataract_scout_park; Characterizing Organics and Aerosol Loading over Australia; COALA; COALA-2020; DATE/TIME; Dual-flow loop radon detector, Australian Nuclear Science and Technology Organisation (ANSTO), Australia; HEIGHT above ground; MULT; Multiple investigations; radon; Radon-222 activity; Radon-222 activity uncertainty fraction; stability; tracer
    Type: Dataset
    Format: text/tab-separated-values, 5928 data points
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  • 15
    Publication Date: 2023-11-30
    Description: Measurements of selected volatile organic compounds were made using a 7890B Agilent Technologies Gas Chromatograph equipped with an HP-5 MS column (30 m × 0.25µm × 0.25 mm ID; Agilent Technologies, Santa Clara, CA, USA), coupled to a single quadrupole electron ionisation mass spectrometer (Agilent 5977B with Xtr EI source, Agilent Technologies, Santa Clara, CA, USA). The mass spectrum detector was operated in selected ion mode (SIM). 30-minute measurements were made quasi-continuously throughout the campaign, though large gaps exist in the measurement timeseries corresponding to instrument malfunction and maintenance periods. Measurements we made on the campus of the Australian Nuclear Science and Technology Organisation (ANSTO) at Lucas Heights, New South Wales (34°03′ 09.4″ S 150°59′ 08.2″ E). Sampled air was drawn from a PTFE sampling inlet 7.5 m above ground level. Radon measurements were also made on the ANSTO campus. Continuous hourly measurements were made at 2 m above ground level using a 1500 L two-filter dual-flow-loop radon detector designed and built at ANSTO. Meteorological measurements reported here were made approximately 500 m distant from the sampling site of other variables from sensors 10 m above ground level. Meteorological measurements were made by ANSTO staff and were provided by Leisa Dyer, Senior Atmospheric Scientist at ANSTO. Further instrumental, sampling and analytical details are provided in the publication associated with these data (Ramirez-Gamboa et al., 2020).
    Keywords: 1,2,4-Trimethylbenzene; 1,8-Cineole; alpha-Pinene; Australia; Benzene; biogenic; Characterizing Organics and Aerosol Loading over Australia; COALA; COALA-JOEYS; COALA-JOEYS_VOC; DATE/TIME; Dual-flow loop radon detector, Australian Nuclear Science and Technology Organisation (ANSTO), Australia; Gas chromatography/mass spectrometry system (GC 7890B/ MS 5977A, Agilent Technologies); HEIGHT above ground; Isoprene; Methacrolein; Methyl vinyl ketone; MULT; Multiple investigations; Paraxylene; p-Cymene; Radiation, photosynthetically active; radon; Radon-222 activity; Temperature, air; Toluene; VOC; Wind direction; Wind speed
    Type: Dataset
    Format: text/tab-separated-values, 43662 data points
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  • 16
    Publication Date: 2023-11-11
    Keywords: Acarinina coalingensis, δ13C; Acarinina coalingensis, δ18O; Acarinina esnaensis, δ13C; Acarinina esnaensis, δ18O; Acarinina primitiva, δ13C; Acarinina primitiva, δ18O; Acarinina soldadoensis, δ13C; Acarinina soldadoensis, δ18O; Acarinina subsphaerica, δ13C; Acarinina subsphaerica, δ18O; Anomalinoides acuta, δ13C; Anomalinoides acuta, δ18O; Author(s); Bleaching; CDRILL; Cibicidoides alleni, δ13C; Cibicidoides alleni, δ18O; Cibicidoides howelli, δ13C; Cibicidoides howelli, δ18O; Cibicidoides spp., δ13C; Cibicidoides spp., δ18O; Cibicidoides succedens, δ13C; Cibicidoides succedens, δ18O; Core drilling; Depth, bottom/max; Depth, reference; DEPTH, sediment/rock; Depth, top/min; Foraminifera; Foraminifera, size maximum; Foraminifera, size minimum; Gavelinella beccariiformis, δ13C; Gavelinella beccariiformis, δ18O; Leg174AX; Millville; Morozovella acuta, δ13C; Morozovella acuta, δ18O; Morozovella aequa, δ13C; Morozovella aequa, δ18O; New Jersey; Number of specimens; Persistent Identifier; PETM; Sample type; Site; Stensioeina beccariiformis, δ13C; Stensioeina beccariiformis, δ18O; Subbotina roesnaesensis, δ13C; Subbotina roesnaesensis, δ18O; Subbotina spp., δ13C; Subbotina spp., δ18O; Subbotina triangularis, δ13C; Subbotina triangularis, δ18O; Subbotina velascoensis, δ13C; Subbotina velascoensis, δ18O; Year of publication; δ13C, bulk carbonate; δ18O, bulk carbonate
    Type: Dataset
    Format: text/tab-separated-values, 8226 data points
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  • 17
    Publication Date: 2023-11-25
    Description: Coccolithophores are globally important marine calcifying phytoplankton. They contribute to the organic carbon pump through the primary production and the ballast of organic matter, and to the carbonate pump through the production of calcium carbonate. Here we compiled all available scanning electron microscopy (SEM) coccolithophore abundance observations. Taxa were standardized following NannoTax3 to a species level where possible. Subspecies (e.a. C. leptoporus subsp. leptoporus and C. leptoporus subsp. quadriperforatus) were grouped as single species. The database contains 2556 abundance observations from 35 different publications. The data span the period of 1993-2017, with observations from all ocean basins and all seasons, and at depths ranging from the surface to 5000 m. We limited our compilation to SEM observations (or observations which further identified samples with SEM) because SEM provides greater detail of coccolithophore diversity than more commonly used polarized light microscopy. Although this limits the number of observations, this allows for a more in-depth analysis of coccolithophore ecology, such as the ecological significance of the coccolithophore life cycle.
    Keywords: Acanthoica acanthifera; Acanthoica acanthos; Acanthoica biscayensis; Acanthoica maxima; Acanthoica quattrospina; Acanthoica spp.; Algirosphaera cucullata; Algirosphaera robusta; Algirosphaera spp.; Alisphaera capulata; Alisphaera extenta; Alisphaera gaudii; Alisphaera ordinata; Alisphaera pinnigera; Alisphaera quadrilatera; Alisphaera spp.; Alisphaera unicornis; Anthosphaera lafourcadii; Anthosphaera periperforata; Anthosphaera spp.; Balaniger virgulosa; Braarudosphaera bigelowii; Calcidiscus leptoporus; Calcidiscus spp.; Calciopappus caudatus; Calciopappus spp.; Calciosolenia brasiliensis; Calciosoleniaceae spp.; Calciosolenia murrayi; Calciosolenia spp.; Calicasphaera blokii; Calicasphaera concava; Calicasphaera diconstricta; Calyptrolithina multipora; Calyptrosphaera cialdii; Calyptrosphaera dentata; Calyptrosphaera heimdalae; Calyptrosphaera sphaeroidea; Canistrolithus spp.; Canistrolithus valliformis; Ceratolithus cristatus; Ceratolithus spp.; Chrysotila carterae; Chrysotila roscoffensis; Coccoliths, other; Coccolithus pelagicus; Corisphaera gracilis; Corisphaera spp.; Corisphaera tyrrheniensis; Coronosphaera maxima; Coronosphaera mediterranea; Coronosphaera spp.; Cyrtosphaera aculeata; Cyrtosphaera cidaris; Cyrtosphaera spp.; DATE/TIME; DEPTH, water; Discosphaera tubifera; Emiliania huxleyi; Ericiolus sp.; Florisphaera profunda; Flosculosphaera calceolariopsis; Formonsella pyramidosa; Gephyrocapsa ericsonii; Gephyrocapsa muellerae; Gephyrocapsa oceanica; Gephyrocapsa ornata; Gephyrocapsa spp.; Gladiolithus flabellatus; Gliscolithus amitakareniae; Hayaster perplexus; Helicosphaera carteri; Helicosphaera cornifera; Helicosphaera hyalina; Helicosphaera pavimentum; Helicosphaera spp.; Helicosphaera wallichii; Helladosphaera cornifera; Helladosphaera pienaarii; Helladosphaera vavilovii; Heterococcolithophores; Holococcolithophora kastriensis; Holococcolithophore spp.; Homozygosphaera spinosa; Homozygosphaera spp.; Homozygosphaera triarcha; Homozygosphaera vercelli; Hughesius youngii; Hymenomonas lacuna; Hymenomonas roseola; Hymenomonas spp.; Jomonlithus spp.; LATITUDE; LONGITUDE; Michaelsarsia adriaticus; Michaelsarsia elegans; Michaelsarsia spp.; Ochrosphaera neapolitana; Oolithotus antillarum; Oolithotus fragilis; Oolithotus spp.; Ophiaster formosus; Ophiaster hydroideus; Ophiaster minimus; Ophiaster reductus; Ophiaster spp.; Palusphaera sp.; Palusphaera spp.; Palusphaera vandelii; Pappomonas borealis; Pappomonas flabellifera; Pappomonas sp.; Pappomonas spp.; Papposphaera arctica; Papposphaera lepida; Papposphaera sagittifera; Papposphaera sp.; Papposphaera spp.; Papposphaera thomsenii; Picarola margalefii; Placorhombus ziveriae; Polycrater sp.; Polycrater spp.; Pontosphaera discopora; Pontosphaera japonica; Pontosphaera multipora; Pontosphaera spp.; Pontosphaera syracusana; Poricalyptra aurisinae; Poricalyptra isselii; Poricalyptra magnaghii; Poritectolithus maximus; Poritectolithus poritectum; Pseudowigwamma scenozonion; Reference/source; Reticulofenestra parvula; Reticulofenestra sessilis; Reticulofenestra spp.; Rhabdosphaera clavigera; Rhabdosphaera spp.; Rhabdosphaera xiphos; Sample method; Scyphosphaera apsteinii; Scyphosphaera spp.; see sample method; Solisphaera helianthiformis; Solisphaera spp.; Sphaerocalyptra adenensis; Sphaerocalyptra dermitzakii; Sphaerocalyptra quadridentata; Sphaerocalyptra sp.; Sphaerocalyptra spp.; Syracolithus bicorium; Syracolithus quadriperforatus; Syracolithus schilleri; Syracolithus sp.; Syracolithus spp.; Syracosphaera amoena; Syracosphaera ampliora; Syracosphaera anthos; Syracosphaera arethusae; Syracosphaera bannockii; Syracosphaera borealis; Syracosphaera castellata; Syracosphaera corolla; Syracosphaera delicata; Syracosphaera dilatata; Syracosphaera epigrosa; Syracosphaera exigua; Syracosphaera florida; Syracosphaera gaarderae; Syracosphaera halldalii; Syracosphaera hastata; Syracosphaera histrica; Syracosphaera lamina; Syracosphaera leptolepis; Syracosphaera marginiporata; Syracosphaera molischii; Syracosphaera nana; Syracosphaera nodosa; Syracosphaera noroitica; Syracosphaera orbiculus; Syracosphaera ossa; Syracosphaera prolongata; Syracosphaera protrudens; Syracosphaera pulchra; Syracosphaera reniformis; Syracosphaera rotula; Syracosphaera sp.; Syracosphaera spp.; Syracosphaera squamosa; Syracosphaera strigilis; Syracosphaera tumularis; Tergestiella adriatica; Tetralithoides quadrilaminata; Turrilithus latericioides; Turrisphaera spp.; Umbellosphaera irregularis; Umbellosphaera spp.; Umbellosphaera tenuis; Umbilicosphaera anulus; Umbilicosphaera foliosa; Umbilicosphaera hulburtiana; Umbilicosphaera sibogae; Umbilicosphaera spp.; Wigwamma antarctica; Wigwamma spp.; Wigwamma triradiata; Zygosphaera amoena; Zygosphaera marsilii
    Type: Dataset
    Format: text/tab-separated-values, 685008 data points
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  • 18
    Publication Date: 2023-12-14
    Keywords: Aluminium; Aluminium oxide; Canada; Carbon, organic, total; Degree of pyritization; Elevation of event; Event label; Gujo-Hachiman, Gifu Prefecture, Japan; Iron; Iron oxide, Fe2O3; Japan; Laboratory code/label; Latitude of event; Longitude of event; Manganese; Manganese dioxide; Mass extinction; Permian; PTB-Tl_GH; PTB-Tl_OC; ROCK; Rock sample; Run Number; Sample ID; SECTION, height; shale; Thallium; thallium isotopes; Triassic; Ubara_Japan; Ubara, Kyoto Prefecture, Japan; δ13C, organic carbon; ε-Thallium-205; ε-Thallium-205, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 957 data points
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  • 19
    Publication Date: 2024-02-16
    Description: Under stress, corals and foraminifera may eject algal symbionts ('bleach'), which can increase mortality. How bleaching relates to species viability over warming events is of great interest given current global warming. We use size-specific isotope analyses and abundance counts to examine photosymbiosis and population dynamics of planktonic foraminifera across the Paleocene-Eocene Thermal Maximum (PETM, ~56 Ma), the most severe Cenozoic global warming event. We find that, unlike modern bleaching-induced mass mortality, populations of photosymbiont-bearing planktonic foraminifera increased in relative abundance during the PETM. Multigenerational adaptive responses including flexibility in photosymbiont associations and excursion taxa evolution may have allowed some photosymbiotic foraminifera to thrive. This dataset contains new records of size-specific stable isotope compositions and relative abundance changes in three clades of planktonic foraminifera from three ocean drilling sites (ODP Site 1209, DSDP Site 401, and ODP Site 690). We also include relevant published datasets used in the corresponding paper. Published high-resolution (~1-10 kyr) bulk isotope records provide a robust framework and inform us on the overall shape and timing of the Palaeocene-Eocene Thermal Maximum (PETM), whereas published multispecies planktic and benthic foraminifera provide a range of “expected” values for a given foraminifera size. We intentionally limited our compilation to high-resolution records that provide 1) a generic and/or specific-specific determination (i.e. we generally exclude “bulk” foraminifera isotope data, unless part of the original compilation), 2) a defined range of foraminiferal size, although often only defined by a soft limit i.e. “larger/smaller than X µm”, 3) a continuous sampling resolution that resolves the shape of the PETM, in turn allowing for a data comparison across all sites and across all defined PETM time bins. All published datasets included in our compilation are well known in the palaeoceanography community. Many of these datasets have often been cited and reused in subsequent research, and persistent copy-errors are not uncommon. We used the original datasets and metadata given in the articles themselves. Original data and metadata is classically represented in tables or in the corresponding “Material and Methods” sections, published as supplementary information, or published in online databases such as Pangaea.de. We designed our compilation in a way that the data for all three sites (DSDP Site 401, ODP sites 690 and 1209) were presented in a uniform way, aiding internal comparisons and allowing further compilation work.
    Keywords: Bleaching; Foraminifera; PETM
    Type: Dataset
    Format: application/zip, 9 datasets
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  • 20
    Publication Date: 2024-02-16
    Keywords: 113-690B; 198-1209B; 198-1209C; 48-401; Acarinina coalingensis, δ13C; Acarinina coalingensis, δ18O; Acarinina soldadoensis, δ13C; Acarinina soldadoensis, δ18O; Bleaching; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Event label; Foraminifera; Foraminifera, planktic, size; Genus; Glomar Challenger; Joides Resolution; Leg113; Leg198; Leg48; Morozovella subbotinae, δ13C; Morozovella subbotinae, δ18O; North Atlantic/TERRACE; North Pacific Ocean; PETM; Sample code/label; South Atlantic Ocean; Subbotina eocaena, δ13C; Subbotina eocaena, δ18O; Subbotina patagonica, δ13C; Subbotina patagonica, δ18O; Subbotina triangularis, δ13C
    Type: Dataset
    Format: text/tab-separated-values, 1970 data points
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