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  • 1
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    Unknown
    PANGAEA
    In:  Supplement to: Baumgart, Anne; Jennerjahn, Tim C; Mohtadi, Mahyar; Hebbeln, Dierk (2010): Distribution and burial of organic carbon in sediments from the Indian Ocean upwelling region off Java and Sumatra, Indonesia. Deep Sea Research Part I: Oceanographic Research Papers, 57(3), 458-467, https://doi.org/10.1016/j.dsr.2009.12.002
    Publication Date: 2024-06-26
    Description: Sediments were sampled and oxygen profiles of the water column were determined in the Indian Ocean off west and south Indonesia in order to obtain information on the production, transformation, and accumulation of organic matter (OM). The stable carbon isotope composition (d13Corg) in combination with C/N ratios depicts the almost exclusively marine origin of sedimentary organic matter in the entire study area. Maximum concentrations of organic carbon (Corg) and nitrogen (N) of 3.0% and 0.31%, respectively, were observed in the northern Mentawai Basin and in the Savu and Lombok basins. Minimum d15N values of 3.7 per mil were measured in the northern Mentawai Basin, whereas they varied around 5.4 per mil at stations outside this region. Minimum bottom water oxygen concentrations of 1.1 mL L**1, corresponding to an oxygen saturation of 16.1%, indicate reduced ventilation of bottom water in the northern Mentawai Basin. This low bottom water oxygen reduces organic matter decomposition, which is demonstrated by the almost unaltered isotopic composition of nitrogen during early diagenesis. Maximum Corg accumulation rates (CARs) were measured in the Lombok (10.4 g C m**-2 yr**-1) and northern Mentawai basins (5.2 g C m**-2 yr**-1). Upwelling-induced high productivity is responsible for the high CAR off East Java, Lombok, and Savu Basins, while a better OM preservation caused by reduced ventilation contributes to the high CAR observed in the northern Mentawai Basin. The interplay between primary production, remineralisation, and organic carbon burial determines the regional heterogeneity. CAR in the Indian Ocean upwelling region off Indonesia is lower than in the Peru and Chile upwellings, but in the same order of magnitude as in the Arabian Sea, the Benguela, and Gulf of California upwellings, and corresponds to 0.1-7.1% of the global ocean carbon burial. This demonstrates the relevance of the Indian Ocean margin off Indonesia for the global OM burial.
    Keywords: Center for Marine Environmental Sciences; GeoB10008-4; GeoB10010-1; GeoB10014-1; GeoB10015-1; GeoB10016-2; GeoB10022-6; GeoB10024-3; GeoB10025-3; GeoB10026-2; GeoB10027-3; GeoB10028-4; GeoB10029-3; GeoB10031-3; GeoB10033-5; GeoB10034-3; GeoB10036-3; GeoB10037-2; GeoB10038-3; GeoB10039-3; GeoB10040-3; GeoB10041-3; GeoB10042-2; GeoB10043-2; GeoB10044-3; GeoB10047-1; GeoB10049-5; GeoB10050-1; GeoB10058-1; GeoB10059-1; GeoB10061-4; GeoB10063-5; GeoB10064-5; GeoB10065-9; GeoB10066-6; GeoB10067-5; GeoB10068-2; GeoB10069-4; GeoB10070-6; MARUM; MUC; MultiCorer; PABESIA; SO184/1; SO184/2; Sonne
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 2
    Publication Date: 2024-06-26
    Keywords: Ammonium; Center for Marine Environmental Sciences; Chlorophyll a; CTD, Sea-Bird, SBE 911; CTD/Rosette; CTD-RO; DEPTH, water; Elevation of event; Event label; GeoB10003-1; GeoB10007-1; GeoB10011-3; GeoB10012-1; GeoB10013-1; GeoB10018-2; GeoB10019-2; GeoB10020-2; GeoB10022-2; GeoB10023-2; GeoB10024-2; GeoB10025-2; GeoB10028-2; GeoB10029-2; GeoB10030-2; GeoB10031-2; GeoB10034-2; GeoB10035-2; GeoB10036-2; GeoB10038-2; GeoB10039-2; GeoB10040-2; GeoB10041-2; GeoB10043-4; GeoB10044-2; GeoB10045-3; GeoB10046-3; GeoB10048-3; GeoB10049-3; GeoB10051-3; GeoB10052-3; GeoB10053-3; GeoB10054-2; GeoB10055-3; GeoB10057-3; GeoB10061-3; GeoB10062-3; GeoB10063-3; GeoB10064-3; GeoB10065-3; GeoB10066-3; GeoB10067-3; GeoB10068-6; GeoB10069-6; GeoB10070-3; Latitude of event; Longitude of event; MARUM; Methods of Seawater Analysis, Third Edition (Grasshoff et al., 1999); Nitrate and Nitrite; Nitrite; Oxygen; PABESIA; Phosphate; Salinity; Silicon; SO184/1; SO184/2; Sonne; Spectrofluorometry; Temperature, water; Titration, Winkler
    Type: Dataset
    Format: text/tab-separated-values, 4067 data points
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  • 3
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    Unknown
    PANGAEA
    In:  Supplement to: Mohtadi, Mahyar; Max, Lars; Hebbeln, Dierk; Baumgart, Anne; Krück, Nils; Jennerjahn, Tim C (2007): Modern environmental conditions recorded in surface sediment samples off W and SW Indonesia: Planktonic foraminifera and biogenic compounds analyses. Marine Micropaleontology, 65(1-2), 96-112, https://doi.org/10.1016/j.marmicro.2007.06.004
    Publication Date: 2024-06-26
    Description: A total of 69 surface sediment samples from several fore-arc basins located west and southwest of the Indonesian Archipelago was analyzed with respect to the faunal composition of planktonic foraminifera, the stable oxygen and carbon isotopic signal of a surface-dwelling (Globigerinoides ruber) and a thermocline-dwelling (Neogloboquadrina dutertrei) species, and the opal and CaCO3 contents in bulk sediment. Our results show that the distribution pattern of opal in surface sediments corresponds well to the upwelling-induced chlorophyll concentration in the upper water column and thus, represents a reliable proxy for marine productivity in the coastal upwelling area off S and SW Indonesia. Present-day oceanography and marine productivity are also reflected in the tropical to subtropical and upwelling assemblages of planktonic foraminifera in the surface sediments, which in part differ from previous studies in this region probably due to different coring methods and dissolution effects. The average stable oxygen isotopic values (d18O) of G. ruber in surface sediments vary between 2.9 per mill and 3.2 per mill from basin to basin and correspond to the oceanographic settings during the SE monsoon (July-October) off west Sumatra, whereas off southern Indonesia, they reflect the NW monsoon (December-March) or annual average conditions. The d18O values of N. dutertrei show a stronger interbasinal variation between 1.6 per mill and 2.2 per mill and correspond to the upper thermocline hydrology in July-October. In addition, the difference between the shell carbon isotopic values (d13C) of G. ruber and N. dutertrei (Delta d13C) appears to be an appropriate productivity recorder only in the non-upwelling areas off west Sumatra. Consequently, joint interpretation of the isotopic values of these species is distinctive for different fore-arc basins W and SW of Indonesia and should be considered in paleoceanographic studies.
    Keywords: Center for Marine Environmental Sciences; GeoB10008-4; GeoB10010-1; GeoB10014-1; GeoB10015-1; GeoB10016-2; GeoB10022-6; GeoB10024-3; GeoB10025-3; GeoB10026-2; GeoB10027-3; GeoB10028-4; GeoB10029-3; GeoB10031-3; GeoB10033-3; GeoB10034-3; GeoB10036-3; GeoB10038-3; GeoB10039-3; GeoB10040-3; GeoB10041-3; GeoB10042-2; GeoB10044-3; GeoB10047-1; GeoB10049-5; GeoB10050-1; GeoB10058-1; GeoB10059-1; GeoB10061-5; GeoB10063-5; GeoB10064-5; GeoB10065-9; GeoB10067-5; GeoB10068-2; GeoB10069-4; Indian Ocean; MARUM; MUC; MultiCorer; PABESIA; SO184/1; SO184/2; SO189/2; SO189/2_002; SO189/2_003; SO189/2_009; SO189/2_011; SO189/2_027; SO189/2_028; SO189/2_031; SO189/2_032; SO189/2_034; SO189/2_035; SO189/2_038; SO189/2_041; SO189/2_048; SO189/2_051; SO189/2_053; SO189/2_059; SO189/2_060; SO189/2_064; SO189/2_065; SO189/2_069; SO189/2_072; SO189/2_076; SO189/2_080; SO189/2_084; SO189/2_087; SO189/2_089; SO189/2_097; SO189/2_101; SO189/2_104; SO189/2_112; SO189/2_114; SO189/2_118; SO189/2_121; SO189/2_139; SO189/2_147; Sonne; SUMATRA
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 4
    Publication Date: 2024-06-26
    Keywords: Accumulation rate, mass; Accumulation rate, total organic carbon; Carbon, organic, total; Center for Marine Environmental Sciences; Chlorophyll a; DEPTH, sediment/rock; Element analyser, Carlo Erba NA2100; Elevation of event; Event label; GeoB10029-3; GeoB10033-5; GeoB10038-3; GeoB10059-1; GeoB10065-9; GeoB10069-4; Latitude of event; Longitude of event; MARUM; MUC; MultiCorer; PABESIA; Sedimentation rate; see reference(s); SO184/1; SO184/2; Sonne
    Type: Dataset
    Format: text/tab-separated-values, 30 data points
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  • 5
    Publication Date: 2024-06-26
    Keywords: Calcium carbonate; Calculated, see reference(s); Carbon; Carbon, inorganic, total; Carbon, organic, total; Carbon/Nitrogen ratio; Center for Marine Environmental Sciences; Comment; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; derived from Corg, N, CaCO3 and Opal; derived from O2 content; Element analyser, Carlo Erba NA2100; Elevation of event; Event label; Finnigan Delta Plus mass spectrometer/ Flash 1112 EA elemental analyser; GeoB10008-4; GeoB10010-1; GeoB10014-1; GeoB10015-1; GeoB10016-2; GeoB10022-6; GeoB10024-3; GeoB10025-3; GeoB10026-2; GeoB10027-3; GeoB10028-4; GeoB10029-3; GeoB10031-3; GeoB10033-5; GeoB10034-3; GeoB10036-3; GeoB10037-2; GeoB10038-3; GeoB10039-3; GeoB10040-3; GeoB10041-3; GeoB10042-2; GeoB10043-2; GeoB10044-3; GeoB10047-1; GeoB10049-5; GeoB10050-1; GeoB10058-1; GeoB10059-1; GeoB10061-4; GeoB10063-5; GeoB10064-5; GeoB10065-9; GeoB10066-6; GeoB10067-5; GeoB10068-2; GeoB10069-4; GeoB10070-6; Latitude of event; Lithogenic material; Longitude of event; MARUM; MUC; MultiCorer; Nitrogen, total; Opal, biogenic silica; Oxygen; Oxygen, gas; PABESIA; SO184/1; SO184/2; Sonne; Titration, Winkler; δ13C; δ15N
    Type: Dataset
    Format: text/tab-separated-values, 6342 data points
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  • 6
  • 7
    Publication Date: 2010-03-01
    Print ISSN: 0967-0637
    Electronic ISSN: 1879-0119
    Topics: Biology , Geosciences , Physics
    Published by Elsevier
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