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  • 1
    In: Annual review of marine science, Palo Alto, Calif. : Annual Reviews, 2009, 2(2010), Seite 175-198, 1941-0611
    In: volume:2
    In: year:2010
    In: pages:175-198
    Description / Table of Contents: A significant impetus for recent ocean biogeochemical research has been to better understand the ocean's role as a sink for anthropogenic CO2. In the 1990s the global carbon survey of the World Ocean Circulation Experiment (WOCE) and the Joint Global Ocean Flux Study (JGOFS) inspired the development of several approaches for estimating anthropogenic carbon inventories in the ocean interior. Most approaches agree that the total global ocean inventory of Cant was around 120 Pg C in the mid-1990s. Today, the ocean carbon uptake rate estimates suggest that the ocean is not keeping pace with the CO2 emissions growth rate. Repeat occupations of the WOCE/JGOFS survey lines consistently show increases in carbon inventories over the last decade, but have not yet been synthesized enough to verify a slowdown in the carbon storage rate. There are many uncertainties in the future ocean carbon storage. Continued observations are necessary to monitor changes and understand mechanisms controlling ocean carbon uptake and storage in the future.
    Type of Medium: Online Resource
    Pages: graph. Darst
    ISSN: 1941-0611
    Language: English
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  • 2
    ISSN: 1476-4687
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Chemistry and Pharmacology , Medicine , Natural Sciences in General , Physics
    Notes: [Auszug] Today's surface ocean is saturated with respect to calcium carbonate, but increasing atmospheric carbon dioxide concentrations are reducing ocean pH and carbonate ion concentrations, and thus the level of calcium carbonate saturation. Experimental evidence suggests that if these trends ...
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    Springer
    Aquatic geochemistry 1 (1995), S. 189-230 
    ISSN: 1573-1421
    Keywords: bank-derived carbonates ; magnesian calcite ; sediment trap ; flux ; carbon chemistry ; CO2 sink ; global change
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Geosciences
    Notes: Abstract This investigation used two approaches to examine the flux of bank-derived carbonate particles and determine the potential influence of benthic carbonate particle dissolution on the carbon chemistry of the waters around the Hawaiian Archipelago. First, the particle flux near several representative carbonate banks in the Hawaiian Archipelago was measured and compared with the flux at a distal site (ALOHA) approximately 100 km north of Oahu, Hawaii. The results of four sediment trap deployments on three carbonate banks in the Hawaiian Archipelago demonstrate that the flux of bank-derived carbonate particles are consistently one to two orders of magnitude higher than the fluxes at the distal station. Furthermore, the mineralogy of the carbonate flux near the banks, which includes very soluble bank-derived aragonite and magnesian calcite particles, is distinctly different from that of the distal fluxes. Second, the chemistry of the waters at each bank station along the archipelago was characterized and compared with the chemistry of the distal waters to determine if differences in the particle flux were reflected in the carbon chemistry. Higher alkalinity and carbonate ion concentrations were observed around all of the banks studied. The saturation state of these waters suggests that the dissolution of some magnesian calcite and aragonite phases could explain the higher alkalinity values. Calculations suggest that the dissolution of benthically-derived aragonite and magnesian calcite may be an important component of the North Pacific alkalinity budget and a potential sink for anthropogenic CO2.
    Type of Medium: Electronic Resource
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  • 4
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    PANGAEA
    In:  Carbon Dioxide Information Analysis Center, Oak Ridge National Laboratory
    Publication Date: 2023-06-10
    Keywords: 316N19950124-track; CT; DATE/TIME; Depth, bathymetric, interpolated/gridded; DEPTH, water; extracted from the 2-Minute Gridded Global Relief Data (ETOPO2); extracted from the NCEP/NCAR 40-Year Reanalysis Project; extracted from the World Ocean Atlas 2005; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Knorr; LATITUDE; LONGITUDE; Pressure, atmospheric; Pressure, atmospheric, interpolated; Recomputed after SOCAT (Pfeil et al., 2013); Salinity; Salinity, interpolated; SOCAT; Surface Ocean CO2 Atlas Project; Temperature, water; Temperature at equilibration; Underway cruise track measurements; WOCE_I9N; xCO2 (water) at equilibrator temperature (dry air); xCO2 (water) at sea surface temperature (dry air)
    Type: Dataset
    Format: text/tab-separated-values, 296432 data points
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  • 5
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    PANGAEA
    In:  Carbon Dioxide Information Analysis Center, Oak Ridge National Laboratory
    Publication Date: 2023-06-10
    Keywords: 48MV20040508-track; CT; DATE/TIME; Depth, bathymetric, interpolated/gridded; DEPTH, water; extracted from the 2-Minute Gridded Global Relief Data (ETOPO2); extracted from the NCEP/NCAR 40-Year Reanalysis Project; extracted from the World Ocean Atlas 2005; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); LATITUDE; LONGITUDE; Pressure, atmospheric; Pressure, atmospheric, interpolated; Recomputed after SOCAT (Pfeil et al., 2013); Salinity; Salinity, interpolated; SOCAT; Surface Ocean CO2 Atlas Project; TAO_125W_0N; Temperature, water; Temperature at equilibration; Underway cruise track measurements; xCO2 (water) at equilibrator temperature (dry air); xCO2 (water) at sea surface temperature (wet air)
    Type: Dataset
    Format: text/tab-separated-values, 17391 data points
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  • 6
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    PANGAEA
    In:  Carbon Dioxide Information Analysis Center, Oak Ridge National Laboratory
    Publication Date: 2023-06-10
    Keywords: 48MV20040523-track; CT; DATE/TIME; Depth, bathymetric, interpolated/gridded; DEPTH, water; extracted from the 2-Minute Gridded Global Relief Data (ETOPO2); extracted from the NCEP/NCAR 40-Year Reanalysis Project; extracted from the World Ocean Atlas 2005; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); LATITUDE; LONGITUDE; Pressure, atmospheric; Pressure, atmospheric, interpolated; Recomputed after SOCAT (Pfeil et al., 2013); Salinity; Salinity, interpolated; SOCAT; Surface Ocean CO2 Atlas Project; TAO_140W_0N; Temperature, water; Temperature at equilibration; Underway cruise track measurements; xCO2 (water) at equilibrator temperature (dry air); xCO2 (water) at sea surface temperature (wet air)
    Type: Dataset
    Format: text/tab-separated-values, 9885 data points
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  • 7
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    PANGAEA
    In:  Supplement to: Wary, Mélanie; Eynaud, Frédérique; Sabine, Christopher L; Zaragosi, Sebastien; Rossignol, Pascale E; Malaizé, Bruno; Palis, Edouard; Zumaque, Jena; Caulle, Clémence; Penaud, Aurélie; Michel, Elisabeth; Charlier, Karine (2015): Stratification of surface waters during the last glacial millennial climatic events: a key factor in subsurface and deep-water mass dynamics. Climate of the Past, 11(11), 1507-1525, https://doi.org/10.5194/cp-11-1507-2015
    Publication Date: 2023-10-21
    Description: The last glacial period was punctuated by abrupt climatic events with extrema known as Heinrich and Dansgaard-Oeschger events. These millennial events have been the subject of many paleoreconstructions and model experiments in the past decades, but yet the hydrological processes involved remain elusive. In the present work, high-resolution analyses were conducted on the 12-42 ka BP section of core MD99-2281 retrieved southwest of the Faeroe Islands, and combined with analyses conducted in two previous studies (Zumaque et al., 2012; Caulle et al., 2013). Such a multiproxy approach, coupling micropaleontological, geochemical and sedimentological analyses, allows us to track surface, subsurface, and deep hydrological processes occurring during these rapid climatic changes. Records indicate that the coldest episodes of the studied period (Greenland stadials and Heinrich stadials) were characterized by a strong stratification of surface waters. This surface stratification seems to have played a key role in the dynamics of subsurface and deep-water masses. Indeed, periods of high surface stratification are marked by a coupling of subsurface and deep circulations which sharply weaken at the beginning of stadials, while surface conditions progressively deteriorate throughout these cold episodes; conversely, periods of decreasing surface stratification (Greenland interstadials) are characterized by a coupling of surface and deep hydrological processes, with progressively milder surface conditions and gradual intensification of the deep circulation, while the vigor of the subsurface northward Atlantic flow remains constantly high. Our results also reveal different and atypical hydrological signatures during Heinrich stadials (HSs): while HS1 and HS4 exhibit a "usual" scheme with reduced overturning circulation, a relatively active North Atlantic circulation seems to have prevailed during HS2, and HS3 seems to have experienced a re-intensification of this circulation during the middle of the event. Our findings thus bring valuable information to better understand hydrological processes occurring in a key area during the abrupt climatic shifts of the last glacial period.
    Keywords: 63F/NL; AGE; CALYPSO; Calypso Corer; Counting 〈150 µm; Counting 〉150 µm fraction; DEPTH, sediment/rock; Dinoflagellate cyst per volume; Faeroes Bank; Foraminifera, benthic; Foraminifera, planktic; Grain size, Mastersizer S, Malvern Instrument Inc.; Grain size, mean; IMAGES V; Lithic grains; Marion Dufresne (1995); Mass spectrometer Optima Micromass; MD114; MD99-2281; Modern analog technique (MAT); Neogloboquadrina pachyderma sinistral; Neogloboquadrina pachyderma sinistral, δ18O; Percentile 10; Percentile 50; Percentile 90; Ratio; Sea surface salinity, summer; Sea surface salinity, winter; Sea surface temperature, summer; Sea surface temperature, winter; Sub-surface temperature, summer; Sub-surface temperature, winter
    Type: Dataset
    Format: text/tab-separated-values, 4046 data points
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  • 8
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    PANGAEA
    In:  Carbon Dioxide Information Analysis Center, Oak Ridge National Laboratory
    Publication Date: 2023-09-15
    Keywords: 325019931005-track; CT; DATE/TIME; Depth, bathymetric, interpolated/gridded; DEPTH, water; extracted from the 2-Minute Gridded Global Relief Data (ETOPO2); extracted from the NCEP/NCAR 40-Year Reanalysis Project; extracted from the World Ocean Atlas 2005; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); LATITUDE; LONGITUDE; Pressure, atmospheric; Pressure, atmospheric, interpolated; Recomputed after SOCAT (Pfeil et al., 2013); Salinity; Salinity, interpolated; SOCAT; Surface Ocean CO2 Atlas Project; Temperature, water; Temperature at equilibration; Thomas G. Thompson; Underway cruise track measurements; WOCE_P10; xCO2 (water) at equilibrator temperature (dry air); xCO2 (water) at sea surface temperature (dry air)
    Type: Dataset
    Format: text/tab-separated-values, 116370 data points
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  • 9
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    PANGAEA
    In:  NOAA-Pacific Marine Environmental Laboratories, Seattle, Washington
    Publication Date: 2024-02-17
    Keywords: 33MH20060902-track; Algorithm; CT; DATE/TIME; Depth, bathymetric, interpolated/gridded; DEPTH, water; Distance; extracted from GLOBALVIEW-CO2; extracted from the 2-Minute Gridded Global Relief Data (ETOPO2); extracted from the NCEP/NCAR 40-Year Reanalysis Project; extracted from the World Ocean Atlas 2005; Fugacity of carbon dioxide (water) at equilibrator temperature (wet air); Fugacity of carbon dioxide (water) at sea surface temperature (wet air); LATITUDE; LONGITUDE; M206STAR2; McArthur II; Pressure, atmospheric; Pressure, atmospheric, interpolated; Pressure at equilibration; Quality flag; Recomputed after SOCAT (Pfeil et al., 2013); Salinity; Salinity, interpolated; SOCAT; Surface Ocean CO2 Atlas Project; Temperature, water; Temperature at equilibration; Underway cruise track measurements; xCO2 (air), interpolated; xCO2 (water) at equilibrator temperature (dry air)
    Type: Dataset
    Format: text/tab-separated-values, 488664 data points
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  • 10
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    PANGAEA
    In:  NOAA-Pacific Marine Environmental Laboratories, Seattle, Washington
    Publication Date: 2024-02-17
    Keywords: 33MH20070616-track; Algorithm; CT; DATE/TIME; Depth, bathymetric, interpolated/gridded; DEPTH, water; Distance; extracted from GLOBALVIEW-CO2; extracted from the 2-Minute Gridded Global Relief Data (ETOPO2); extracted from the NCEP/NCAR 40-Year Reanalysis Project; extracted from the World Ocean Atlas 2005; Fugacity of carbon dioxide (water) at equilibrator temperature (wet air); Fugacity of carbon dioxide (water) at sea surface temperature (wet air); LATITUDE; LONGITUDE; M20705; McArthur II; Pressure, atmospheric; Pressure, atmospheric, interpolated; Pressure at equilibration; Quality flag; Recomputed after SOCAT (Pfeil et al., 2013); Salinity; Salinity, interpolated; SOCAT; Surface Ocean CO2 Atlas Project; Temperature, water; Temperature at equilibration; Underway cruise track measurements; xCO2 (air), interpolated; xCO2 (water) at equilibrator temperature (dry air)
    Type: Dataset
    Format: text/tab-separated-values, 30476 data points
    Location Call Number Limitation Availability
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