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  • Data  (21)
  • Other Sources  (3)
  • 2015-2019  (24)
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  • 1
    Publication Date: 2020-06-26
    Description: Highlights: • GEOTRACES releases its first integrated and quality controlled Intermediate Data Product 2014 (IDP2014). • The IDP2014 digital data are available at http://www.bodc.ac.uk/geotraces/data/idp2014/ in 4 different formats. • The eGEOTRACES Electronic Atlas at http://egeotraces.org/ provides 329 section plots and 90 animated 3D tracer scenes. • The new 3D scenes provide geographical and bathymetric context crucial for tracer assessment and interpretation. Abstract: The GEOTRACES Intermediate Data Product 2014 (IDP2014) is the first publicly available data product of the international GEOTRACES programme, and contains data measured and quality controlled before the end of 2013. It consists of two parts: (1) a compilation of digital data for more than 200 trace elements and isotopes (TEIs) as well as classical hydrographic parameters, and (2) the eGEOTRACES Electronic Atlas providing a strongly inter-linked on-line atlas including more than 300 section plots and 90 animated 3D scenes. The IDP2014 covers the Atlantic, Arctic, and Indian oceans, exhibiting highest data density in the Atlantic. The TEI data in the IDP2014 are quality controlled by careful assessment of intercalibration results and multi-laboratory data comparisons at cross-over stations. The digital data are provided in several formats, including ASCII spreadsheet, Excel spreadsheet, netCDF, and Ocean Data View collection. In addition to the actual data values the IDP2014 also contains data quality flags and 1-σ data error values where available. Quality flags and error values are useful for data filtering. Metadata about data originators, analytical methods and original publications related to the data are linked to the data in an easily accessible way. The eGEOTRACES Electronic Atlas is the visual representation of the IDP2014 data providing section plots and a new kind of animated 3D scenes. The basin-wide 3D scenes allow for viewing of data from many cruises at the same time, thereby providing quick overviews of large-scale tracer distributions. In addition, the 3D scenes provide geographical and bathymetric context that is crucial for the interpretation and assessment of observed tracer plumes, as well as for making inferences about controlling processes.
    Type: Article , PeerReviewed
    Format: text
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  • 2
    Publication Date: 2021-02-08
    Description: The GEOTRACES Intermediate Data Product 2017 (IDP2017) is the second publicly available data product of the international GEOTRACES programme, and contains data measured and quality controlled before the end of 2016. The IDP2017 includes data from the Atlantic, Pacific, Arctic, Southern and Indian oceans, with about twice the data volume of the previous IDP2014. For the first time, the IDP2017 contains data for a large suite of biogeochemical parameters as well as aerosol and rain data characterising atmospheric trace element and isotope (TEI) sources. The TEI data in the IDP2017 are quality controlled by careful assessment of intercalibration results and multi-laboratory data comparisons at crossover stations. The IDP2017 consists of two parts: (1) a compilation of digital data for more than 450 TEIs as well as standard hydrographic parameters, and (2) the eGEOTRACES Electronic Atlas providing an on-line atlas that includes more than 590 section plots and 130 animated 3D scenes. The digital data are provided in several formats, including ASCII, Excel spreadsheet, netCDF, and Ocean Data View collection. Users can download the full data packages or make their own custom selections with a new on-line data extraction service. In addition to the actual data values, the IDP2017 also contains data quality flags and 1-σ data error values where available. Quality flags and error values are useful for data filtering and for statistical analysis. Metadata about data originators, analytical methods and original publications related to the data are linked in an easily accessible way. The eGEOTRACES Electronic Atlas is the visual representation of the IDP2017 as section plots and rotating 3D scenes. The basin-wide 3D scenes combine data from many cruises and provide quick overviews of large-scale tracer distributions. These 3D scenes provide geographical and bathymetric context that is crucial for the interpretation and assessment of tracer plumes near ocean margins or along ridges. The IDP2017 is the result of a truly international effort involving 326 researchers from 22 countries. This publication provides the critical reference for unpublished data, as well as for studies that make use of a large cross-section of data from the IDP2017.
    Type: Article , PeerReviewed
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  • 3
    Publication Date: 2021-02-08
    Description: Despite slow nutrient supply to the subtropical surface ocean, its rates of annual inorganic carbon drawdown and net oxygen production are similar to those of nutrient-rich high latitude waters. This surprisingly rapid carbon drawdown, if due to the production and export of marine biomass, cannot be explained in terms of known nutrient supply mechanisms. Moreover, carbon budgets have failed to detect the export of this organic matter. One possible explanation is the export of nutrient-poor organic matter with a composition that avoids detection as sinking particles. We describe three signs of the decomposition of such organic matter in the shallow Sargasso Sea subsurface. First, summertime oxygen consumption at 80–400 m occurs without the rate of nitrate and phosphate production expected from the remineralization of marine biomass, matching the observed summertime mixed layer inorganic carbon drawdown. Second, a seasonal change in the 18O/16O of subsurface nitrate suggests summertime heterotrophic bacterial nitrate assimilation down to ~400 m, as may be required for the remineralization of nutrient-poor organic matter. Third, incubation of subsurface seawater leads to nitrate drawdown and heterotrophic bacterial growth, supporting the thermocline nitrate 18O/16O evidence for heterotrophic nitrate assimilation. These three pieces of evidence suggest the export of nutrient-poor organic matter from the surface at a rate adequate to explain net community production in the Sargasso Sea. We propose that transparent exopolymer particles or related compounds, generated by a nutrient-limited upper ocean ecosystem, comprise this nutrient-poor export, and that its properties cause its flux out of the euphotic zone to be underestimated by sediment traps. Such nutrient-poor organic matter would contribute little to fisheries, deep ocean carbon dioxide storage, or organic carbon burial, so that it may change our view of the significance of net community production in the subtropical ocean
    Type: Article , PeerReviewed
    Format: text
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  • 4
    Publication Date: 2023-10-05
    Keywords: 35MF20120125, OISO_21, INDIEN SUD 2; AGE; Calypso square corer; CASQ; DEPTH, sediment/rock; Marion Dufresne (1995); MD12-3396Cq; MD189; Opal, flux; Station 6, MD189-3396
    Type: Dataset
    Format: text/tab-separated-values, 16 data points
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  • 5
    Publication Date: 2023-10-05
    Keywords: 35MF20120125, OISO_21, INDIEN SUD 2; AGE; Calypso square corer; CASQ; DEPTH, sediment/rock; Diatoms, centrales, δ15N; Diatoms, centrales, δ15N, standard deviation; Diatoms, pennales, δ15N; Diatoms, pennales, δ15N, standard deviation; Marion Dufresne (1995); MD12-3396Cq; MD189; Station 6, MD189-3396; Thermo Trace GC - Thermo Fischer MAT 253 (GC/IR-MS); δ15N, diatom-bound organic matter; δ15N, diatom-bound organic matter, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 221 data points
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  • 6
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    PANGAEA
    In:  Supplement to: Ren, Haojia Abby; Studer, Anja S; Serno, Sascha; Sigman, Daniel M; Winckler, Gisela; Anderson, Robert F; Oleynik, Sergey; Gersonde, Rainer; Haug, Gerald H (2015): Glacial-to-interglacial changes in nitrate supply and consumption in the subarctic North Pacific from microfossil-bound N isotopes at two trophic levels. Paleoceanography, 30(9), 1217-1232, https://doi.org/10.1002/2014PA002765
    Publication Date: 2023-10-05
    Description: Reduced nitrate supply to the subarctic North Pacific (SNP) surface during the last ice age has been inferred from coupled changes in diatom-bound d15N (DB-d15N), bulk sedimentary d15N, and biogenic fluxes. However, the reliability of bulk sedimentary and DB-d15N has been questioned, and a previously reported d15N minimum during Heinrich Stadial 1 (HS1) has proven difficult to explain. In a core from the western SNP, we report the foraminifera-bound d15N (FB-d15N) in Neogloboquadrina pachyderma and Globigerina bulloides, comparing them with DB-d15N in the same core over the past 25 kyr. The d15N of all recorders is higher during the Last Glacial Maximum (LGM) than in the Holocene, indicating more complete nitrate consumption. N. pachyderma FB-d15N is similar to DB-d15N in the Holocene but 2.2 per mil higher during the LGM. This difference suggests a greater sensitivity of FB-d15N to changes in summertime nitrate drawdown and d15N rise, consistent with a lag of the foraminifera relative to diatoms in reaching their summertime production peak in this highly seasonal environment. Unlike DB-d15N, FB-d15N does not decrease from the LGM into HS1, which supports a previous suggestion that the HS1 DB-d15N minimum is due to contamination by sponge spicules. FB-d15N drops in the latter half of the Bølling/Allerød warm period and rises briefly in the Younger Dryas cold period, followed by a decline into the mid-Holocene. The FB-d15N records suggest that the coupling among cold climate, reduced nitrate supply, and more complete nitrate consumption that characterized the LGM also applied to the deglacial cold events.
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 7
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    Unknown
    PANGAEA
    In:  Supplement to: Studer, Anja S; Sigman, Daniel M; Martínez‐García, Alfredo; Thöle, Lena; Michel, Elisabeth; Jaccard, Samuel L; Lippold, Jörg; Mazaud, Alain; Wang, Xingchen; Robinson, Laura F; Adkins, Jess F; Haug, Gerald H (2018): Increased nutrient supply to the Southern Ocean during the Holocene and its implications for the pre-industrial atmospheric CO2 rise. Nature Geoscience, https://doi.org/10.1038/s41561-018-0191-8
    Publication Date: 2023-10-05
    Description: A rise in the atmospheric CO2 concentration of ~20 parts per million over the course of the Holocene has long been recognized as exceptional among interglacials and is in need of explanation. Previous hypotheses involved natural or anthropogenic changes in terrestrial biomass, carbonate compensation in response to deglacial outgassing of oceanic CO2, and enhanced shallow water carbonate deposition. Here, we compile new and previously published fossil-bound nitrogen isotope records from the Southern Ocean that indicate a rise in surface nitrate concentration through the Holocene. When coupled with increasing or constant export production, these data suggest an acceleration of nitrate supply to the Southern Ocean surface from underlying deep water. This change would have weakened the ocean's biological pump that stores CO2 in the ocean interior, possibly explaining the Holocene atmospheric CO2 rise. Over the Holocene, the circum-North Atlantic region cooled, and the formation of North Atlantic Deep Water appears to have slowed. Thus, the 'seesaw' in deep ocean ventilation between the North Atlantic and the Southern Ocean that has been invoked for millennial-scale events, deglaciations and the last interglacial period may have also operated, albeit in a more gradual form, over the Holocene.
    Type: Dataset
    Format: application/zip, 6 datasets
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  • 8
    Publication Date: 2023-10-05
    Keywords: AGE; CALYPSO2; Calypso Corer II; DEPTH, sediment/rock; INDIEN SUD 2; Marion Dufresne (1995); MD11-3353; MD185; Opal, flux
    Type: Dataset
    Format: text/tab-separated-values, 13 data points
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  • 9
    Publication Date: 2023-10-05
    Keywords: AGE; CALYPSO2; Calypso Corer II; DEPTH, sediment/rock; Diatoms, centrales, δ15N; Diatoms, centrales, δ15N, standard deviation; Diatoms, pennales, δ15N; Diatoms, pennales, δ15N, standard deviation; INDIEN SUD 2; Marion Dufresne (1995); MD11-3353; MD185; Thermo Trace GC - Thermo Fischer MAT 253 (GC/IR-MS); δ15N, diatom-bound organic matter; δ15N, diatom-bound organic matter, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 52 data points
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  • 10
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    PANGAEA
    In:  Supplement to: Hasenfratz, Adam P; Jaccard, Samuel L; Martínez‐García, Alfredo; Sigman, Daniel M; Hodell, David A; Vance, Derek; Bernasconi, Stefano M; Kleiven, Helga F; Haumann, F Alexander; Haug, Gerald H (2019): The residence time of Southern Ocean surface waters and the 100,000-year ice age cycle. Science, 363(6431), 1080-1084, https://doi.org/10.1126/science.aat7067
    Publication Date: 2024-06-08
    Description: All data are from core ODP 1094 recovered from the Antarctic Zone of the Southern Ocean (Atlantic sector). Age model of ODP 1094 (1.5Ma) dδ18O, Mg/Ca, Mn/Ca and Mg/Ca-derived sea surface temperature and surface water d18O based on down core measurements of planktic Neogloboquadrina pachyderma (sinistral) from core ODP 1094 (downcore data and averaged for MIS). δ18O, Mg/Ca, Mn/Ca and Mg/Ca-derived bottom water temperature and bottom water d18O based on down core measurements of benthic Melonis pompilioides from core ODP 1094 (downcore data and averaged for MIS). δ18O of benthic Cibicidoides spp. from core ODP 1094.
    Keywords: 177-1094; Antarctic Zone; bottom water temperature; BWT; Cibicidoides spp.; COMPCORE; Composite Core; DWT; Joides Resolution; Leg177; Melonis pompilioides; Neogloboquadrina pachyderma; Ocean Drilling Program; ODP; ODP 1094; Sea surface temperature; sea water d18O; South Atlantic Ocean; Southern Ocean; SST; stable oxygen isotopes; trace metals Mg/Ca; trace metals Mn/Ca
    Type: Dataset
    Format: application/zip, 3 datasets
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