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  • PANGAEA  (185)
Collection
Keywords
  • 1
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    Unknown
    PANGAEA
    In:  Institut für Hydrobiologie und Fischereiwissenschaften, Universität Hamburg
    Publication Date: 2023-03-09
    Keywords: Baltic Sea; BB0003; BB0006; BB0021; BB0023; BB0035; BB0041; BB0045; Bottle number; CTD; CTD/Rosette; CTD-RO; CTD with attached oxygen sensor; Date/Time of event; DEPTH, water; Elevation of event; Event label; GG03_12; Global Ocean Ecosystem Dynamics; GLOBEC; HE201; HE201/1411-CTD_1; HE201/1427-CTD_2; HE201/1434-CTD_3; HE201/1451-CTD_4; HE201/1464-CTD_5; HE201/1477-CTD_6; HE201/1487-CTD_7; Heincke; Latitude of event; Longitude of event; Oxygen saturation; Salinity; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 263 data points
    Location Call Number Expected Availability
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  • 2
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    PANGAEA
    In:  IFM-GEOMAR Leibniz-Institute of Marine Sciences, Kiel University
    Publication Date: 2023-03-09
    Keywords: Calculated; CTD; CTD/Rosette; CTD-RO; CTD with attached oxygen sensor; Dana04/8; Dana04/8_101-CTD_62; Dana04/8_104-CTD_63; Dana04/8_105-CTD_64; Dana04/8_106-CTD_65; Dana04/8_109-CTD_66; Dana04/8_110-CTD_67; Dana04/8_113-CTD_68; Dana04/8_114-CTD_69; Dana04/8_116-CTD_70; Dana04/8_11-CTD_7; Dana04/8_12-CTD_8; Dana04/8_13-CTD_9; Dana04/8_16-CTD_10; Dana04/8_17-CTD_11; Dana04/8_19-CTD_12; Dana04/8_1-CTD_1; Dana04/8_21-CTD_13; Dana04/8_22-CTD_14; Dana04/8_25-CTD_15; Dana04/8_26-CTD_16; Dana04/8_27-CTD_17; Dana04/8_28-CTD_18; Dana04/8_30-CTD_19; Dana04/8_32-CTD_20; Dana04/8_34-CTD_21; Dana04/8_35-CTD_22; Dana04/8_36-CTD_23; Dana04/8_38-CTD_24; Dana04/8_39-CTD_25; Dana04/8_3-CTD_2; Dana04/8_41-CTD_26; Dana04/8_42-CTD_27; Dana04/8_43-CTD_28; Dana04/8_46-CTD_29; Dana04/8_47-CTD_30; Dana04/8_48-CTD_31; Dana04/8_49-CTD_32; Dana04/8_50-CTD_33; Dana04/8_52-CTD_34; Dana04/8_54-CTD_35; Dana04/8_56-CTD_36; Dana04/8_58-CTD_37; Dana04/8_59-CTD_38; Dana04/8_5-CTD_3; Dana04/8_60-CTD_39; Dana04/8_61-CTD_40; Dana04/8_63-CTD_41; Dana04/8_64-CTD_42; Dana04/8_66-CTD_43; Dana04/8_67-CTD_44; Dana04/8_69-CTD_45; Dana04/8_6-CTD_4; Dana04/8_71-CTD_46; Dana04/8_72-CTD_47; Dana04/8_73-CTD_48; Dana04/8_74-CTD_49; Dana04/8_76-CTD_50; Dana04/8_78-CTD_51; Dana04/8_7-CTD_5; Dana04/8_80-CTD_52; Dana04/8_82-CTD_53; Dana04/8_83-CTD_54; Dana04/8_84-CTD_55; Dana04/8_87-CTD_56; Dana04/8_90-CTD_57; Dana04/8_94-CTD_58; Dana04/8_95-CTD_59; Dana04/8_97-CTD_60; Dana04/8_99-CTD_61; Dana04/8_9-CTD_6; Dana II; Date/Time of event; Density, sigma-theta (0); DEPTH, water; Elevation of event; Event label; GG04_09; Global Ocean Ecosystem Dynamics; GLOBEC; Latitude of event; Longitude of event; North Sea; Oxygen; Pressure, water; Salinity; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 17327 data points
    Location Call Number Expected Availability
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  • 3
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    PANGAEA
    In:  Institut für Hydrobiologie und Fischereiwissenschaften, Universität Hamburg
    Publication Date: 2023-03-09
    Keywords: AL237/2; AL237/2_625-CTD_53; AL237/2_626-CTD_54; AL237/2_628-CTD_55; AL237/2_630-CTD_56; AL237/2_631-CTD_57; AL237/2_633-CTD_58; AL237/2_634-CTD_59; AL237/2_634-CTD_60; AL237/2_635-CTD_61; AL237/2_637-CTD_62; AL237/2_639-CTD_63; AL237/2_640-CTD_64; AL237/2_641-CTD_65; AL237/2_643-CTD_66; AL237/2_644-CTD_67; AL237/2_646-CTD_68; AL237/2_647-CTD_69; AL237/2_649-CTD_70; AL237/2_652-CTD_71; AL237/2_654-CTD_72; AL237/2_655-CTD_73; AL237/2_657-CTD_74; AL237/2_658-CTD_75; AL237/2_660-CTD_76; AL237/2_662-CTD_77; AL237/2_663-CTD_78; AL237/2_665-CTD_79; AL237/2_668-CTD_80; AL237/2_670-CTD_81; AL237/2_671-CTD_82; AL237/2_673-CTD_83; AL237/2_674-CTD_84; AL237/2_676-CTD_85; AL237/2_678-CTD_86; AL237/2_679-CTD_87; AL237/2_680-CTD_88; AL237/2_682-CTD_89; AL237/2_683-CTD_90; AL237/2_684-CTD_91; AL237/2_688-CTD_93; AL237/2_689-CTD_94; AL237/2_690-CTD_95; AL237/2_691-CTD_96; AL237/2_693-CTD_97; AL237/2_694-CTD_98; AL237/2_696-CTD_99; AL237/2_697-CTD_100; AL237/2_699-CTD_101; AL237/2_700-CTD_102; AL237/2_702-CTD_103; AL237/2_704-CTD_104; AL237/2_705-CTD_105; AL237/2_707-CTD_106; AL237/2_708-CTD_107; AL237/2_710-CTD_108; AL237/2_711-CTD_109; AL237/2_713-CTD_110; AL237/2_714-CTD_111; AL237/2_716-CTD_112; AL237/2_717-CTD_113; AL237/2_718-CTD_114; AL237/2_720-CTD_115; AL237/2_722-CTD_116; AL237/2_723-CTD_117; AL237/2_724-CTD_118; AL237/2_726-CTD_119; AL237/2_727-CTD_120; AL237/2_728-CTD_121; AL237/2_729-CTD_122; AL237/2_730-CTD_123; AL237/2_732-CTD_124; AL237/2_733-CTD_125; AL237/2_734-CTD_126; AL237/2_735-CTD_127; AL237/2_736-CTD_128; AL237/2_737-CTD_129; AL237/2_738-CTD_130; AL237/2_739-CTD_131; AL237/2_740-CTD_132; AL237/2_741-CTD_133; Alkor (1990); CTD; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; GG04_04b; Global Ocean Ecosystem Dynamics; GLOBEC; Latitude of event; Longitude of event; North Sea; NS0004; NS0005; NS0013; NS0014; NS0023; Pressure, water; Salinity; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 25785 data points
    Location Call Number Expected Availability
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  • 4
    Publication Date: 2023-03-23
    Keywords: Ammonium; Böschrücken; Date/Time of event; DEPTH, sediment/rock; Elevation of event; Event label; Katinger Watt; Klotzenloch; Latitude of event; Location of event; Longitude of event; LP0903; LP0903/BR-1; LP0903/KL-1; LP0903/KW-1; LP0903/ML-1; LP0903/NW-1; LP0903/STS-1; LP0903/TR-1; LP0903/TS-1; LP0903/WW-1; Ludwig Prandtl; Mühlenberger Loch; Neufelder Watt; Nitrate; Nitrite; Phosphate; Sample code/label; Schwarztonnensand; Seawater analysis after Grasshoff et al., 1983 (Verlag Chemie GmbH Weinheim); Tertiussand; Trischen; Wesselburener Watt
    Type: Dataset
    Format: text/tab-separated-values, 1125 data points
    Location Call Number Expected Availability
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  • 5
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    PANGAEA
    In:  Supplement to: Neumann, Andreas; van Beusekom, Justus; Holtappels, Moritz; Emeis, Kay-Christian (2017): Nitrate consumption in sediments of the German Bight (North Sea). Journal of Sea Research, 127, 26-35, https://doi.org/10.1016/j.seares.2017.06.012
    Publication Date: 2023-03-23
    Description: Denitrification on continental margins and in coastal sediments is a major sink of reactive N in the present nitrogen cycle and a major ecosystem service of eutrophied coastal waters. We analysed the nitrate removal in surface sediments of the Elbe estuary, Wadden Sea, and adjacent German Bight (SE North Sea) during two seasons (spring and summer) along a eutrophication gradient ranging from a high riverine nitrate concentrations at the Elbe Estuary to offshore areas with low nitrate concentrations. The gradient encompassed the full range of sediment types and organic carbon concentrations of the southern North Sea. Based on nitrate penetration depth and concentration gradient in the porewater we estimated benthic nitrate consumption rates assuming either diffusive transport in cohesive sediments or advective transport in permeable sediments. For the latter we derived a mechanistic model of porewater flow. During the peak nitrate discharge of the river Elbe in March, the highest rates of diffusive nitrate uptake were observed in muddy sediments (up to 2.8 mmol/m**2/d). The highest advective uptake rate in that period was observed in permeable sediment and was tenfold higher (up to 32 mmol/m**2/d). The intensity of both diffusive and advective nitrate consumption dropped with the nitrate availability and thus decreased from the Elbe estuary towards offshore stations, and were further decreased during late summer (minimum nitrate discharge) compared to late winter (maximum nitrate discharge). In summary, our rate measurements indicate that the permeable sediment accounts for up to 90 % of the total benthic reactive nitrogen consumption in the study area due to the high efficiency of advective nitrate transport into permeable sediment. Extrapolating the averaged nitrate consumption of different sediment classes to the areas of Elbe Estuary, Wadden Sea and eastern German Bight amounts to an N-loss of 3.1 * 10**6 mol N/d from impermeable, diffusion-controlled sediment, and 5.2 * 10**7 mol N/d from permeable sediment with porewater advection.
    Type: Dataset
    Format: application/zip, 3 datasets
    Location Call Number Expected Availability
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  • 6
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    Unknown
    PANGAEA
    In:  Supplement to: Musat, Niculina; Werner, Ursula; Knittel, Katrin; Kolb, Steffen; Dodenhof, Tanja; van Beusekom, Justus; de Beer, Dirk; Dubilier, Nicole; Amann, Rudolf (2006): Microbial community structure of sandy intertidal sediments in the North Sea, Sylt-Rømø Basin, Wadden Sea. Systematic and Applied Microbiology, 29(4), 333-348, https://doi.org/10.1016/j.syapm.2005.12.006
    Publication Date: 2023-07-10
    Description: Molecular biological methods were used to investigate the microbial diversity and community structure in intertidal sandy sediments near the island of Sylt (Wadden Sea) at a site which was characterized for transport and mineralization rates in de Beer et al., (2005, hdl:10013/epic.21375). The sampling was performed during low tide in the middle of the flat, approximately 40 m in the offshore direction from the high water line on October 6, 1999, March 7, 2000, and July 5, 2000. Two parallel cores were collected from each season for molecular analyses. Within 2 h after sampling the sediment cores were sub-sampled and fixed in formaldehyde for FISH analysis. The cells were hybridized, stained with 4',6'-diamidino-2-phenylindole (DAPI) and microscopically counted as described previously [55]. Details of probes and formamide concentrations which were used are shown in further details. Counts are reported as means calculated from 10-15 randomly chosen microscopic fields corresponding to 700-1000 DAPI-stained cells. Values were corrected for the signals counted with the probe NON338. Fluorescence in situ hybridization (FISH)with group-specific rRNA-targeted oligonucleotide probes were used to characterize the microbial community structure over depth (0-12 cm) and seasons (March, July, October). We found high abundances of bacteria with total cell numbers up to 3×109 cells ml-1 and a clear seasonal variation, with higher values in July and October versus March. The microbial community was dominated by members of the Planctomycetes, the Cytophaga/Flavobacterium group, Gammaproteobacteria, and bacteria of the Desulfosarcina/Desulfococcus group. The high abundance (1.5×10**7 - 1.8×10**8 cells/ml accounting for 3-19% of all cells) of presumably aerobic heterotrophic polymer-degrading planctomycetes is in line with the high permeability, deep oxygen penetration, and the high rates of aerobic mineralization of algal biomass measured in the sandy sediments by de Beer et al., (2005, hdl:10013/epic.21375). The high and stable abundance of members of the Desulfosarcina/Desulfococcus group, both over depth and season, suggests that these bacteria may play a more important role than previously assumed based on low sulfate reduction rates in parallel cores de Beer et al., (2005).
    Keywords: Bacteria, targeted with EUB338 l oligonucleotides FISH-probe; Core; CORE; Cytophaga-Flavobacterium cluster, targeted with CF319a oligonucleotide FISH-probe; Date/Time of event; DEPTH, sediment/rock; Desulfusarcina/Desulfococcus, targeted with DSS658 oligonucleotide FISH-probe; Epifluorescence microscopy after DAPI staining; Event label; Fluorescence in situ hybridization (FISH); Gammaproteobacteria, targeted with Gam42a oligonucleotide FISH-probe; Latitude of event; Longitude of event; Planctomycetales, targeted with PLA886 oligonucleotide FISH-probe; Prokaryotes, number of cell; WaddenSea_Sylt-03-2000; WaddenSea_Sylt-06-1999; WaddenSea_Sylt-07-2000; WaddenSea_Sylt-10-1999; Wadden Sea, North Sea, Germany
    Type: Dataset
    Format: text/tab-separated-values, 362 data points
    Location Call Number Expected Availability
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  • 7
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    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-01-12
    Keywords: CTD; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; GG04_06a; Global Ocean Ecosystem Dynamics; GLOBEC; HE211/1; HE211/1_864-CTD_1a; HE211/1_865-CTD_2; HE211/1_866-CTD_3; HE211/1_867-CTD_4; HE211/1_868-CTD_5; HE211/1_869-CTD_6; HE211/1_870-CTD_7; HE211/1_871-CTD_8; HE211/1_872-CTD_9; HE211/1_873-CTD_10; HE211/1_874-CTD_11; HE211/1_875-CTD_12; HE211/1_876-CTD_13; HE211/1_877-CTD_14; HE211/1_878-CTD_15; HE211/1_879-CTD_16; HE211/1_880-CTD_17; HE211/1_881-CTD_18; HE211/1_882-CTD_19; HE211/1_883-CTD_20; HE211/1_884-CTD_21; HE211/1_885-CTD_22; HE211/1_886-CTD_23; HE211/1_887-CTD_24; HE211/1_888-CTD_25; HE211/1_889-CTD_26; HE211/1_890-CTD_27; HE211/1_891-CTD_28; HE211/1_892-CTD_29; HE211/1_893-CTD_30; HE211/1_894-CTD_31; HE211/1_895-CTD_32; HE211/1_896-CTD_33; HE211/1_897-CTD_34; HE211/1_898-CTD_35; HE211/1_899-CTD_36; HE211/1_900-CTD_37; HE211/1_901-CTD_38; HE211/1_902-CTD_39; HE211/1_903-CTD_40; HE211/1_904-CTD_41; HE211/1_905-CTD_42; HE211/1_906-CTD_43; HE211/1_907-CTD_44; HE211/1_908-CTD_45; HE211/1_909-CTD_46; HE211/1_910-CTD_47; HE211/1_911-CTD_48; HE211/1_912-CTD_49; HE211/1_913-CTD_50; HE211/1_914-CTD_51; HE211/1_915-CTD_52; HE211/1_916-CTD_53; HE211/1_917-CTD_54; HE211/1_918-CTD_55; Heincke; Latitude of event; Longitude of event; North Sea; NS0001; NS0002; NS0003; NS0004; NS0005; NS0006; NS0007; NS0009; NS0010; NS0011; NS0012; NS0013; NS0014; NS0015; NS0016; NS0017; NS0018; NS0019; NS0020; NS0021; NS0022; NS0023; NS0024; NS0025; NS0026; NS0027; NS0028; NS0029; NS0030; NS0031; NS0032; NS0033; NS0034; NS0035; NS0036; NS0037; NS0038; NS0039; NS0040; NS0041; NS0042; NS0043; NS0044; NS0045; NS0046; NS0047; NS0048; NS0049; NS0050; NS0051; NS0052; NS0053; NS0054; NS0055; Pressure, water; Salinity; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 18264 data points
    Location Call Number Expected Availability
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  • 8
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    PANGAEA
    In:  IFM-GEOMAR Leibniz-Institute of Marine Sciences, Kiel University
    Publication Date: 2024-01-12
    Keywords: Calculated; CTD; CTD/Rosette; CTD-RO; Date/Time of event; Density, sigma-theta (0); DEPTH, water; Elevation of event; Event label; GG04_01b; Global Ocean Ecosystem Dynamics; GLOBEC; HE203/2; HE203/2_101-CTD_87; HE203/2_102-CTD_88; HE203/2_103-CTD_89; HE203/2_105-CTD_90; HE203/2_106-CTD_91; HE203/2_107-CTD_92; HE203/2_108-CTD_93; HE203/2_109-CTD_94; HE203/2_110-CTD_95; HE203/2_111-CTD_96; HE203/2_112-CTD_97; HE203/2_113-CTD_98; HE203/2_115-CTD_99; HE203/2_116-CTD_100; HE203/2_117-CTD_101; HE203/2_119-CTD_102; HE203/2_121-CTD_103; HE203/2_122-CTD_104; HE203/2_123-CTD_105; HE203/2_124-CTD_106; HE203/2_126-CTD_107; HE203/2_127-CTD_108; HE203/2_129-CTD_109; HE203/2_130-CTD_110; HE203/2_131-CTD_111; HE203/2_132-CTD_112; HE203/2_134-CTD_113; HE203/2_135-CTD_114; HE203/2_137-CTD_115; HE203/2_138-CTD_116; HE203/2_139-CTD_117; HE203/2_140-CTD_118; HE203/2_142-CTD_119; HE203/2_143-CTD_120; HE203/2_144-CTD_121; HE203/2_146-CTD_122; HE203/2_147-CTD_123; HE203/2_148-CTD_124; HE203/2_149-CTD_125; HE203/2_151-CTD_126; HE203/2_152-CTD_127; HE203/2_153-CTD_128; HE203/2_155-CTD_129; HE203/2_156-CTD_130; HE203/2_157-CTD_131; HE203/2_158-CTD_132; HE203/2_159-CTD_133; HE203/2_160-CTD_134; HE203/2_161-CTD_135; HE203/2_163-CTD_136; HE203/2_55-CTD_53; HE203/2_57-CTD_54; HE203/2_58-CTD_55; HE203/2_60-CTD_56; HE203/2_62-CTD_57; HE203/2_64-CTD_58; HE203/2_65-CTD_59; HE203/2_66-CTD_60; HE203/2_67-CTD_61; HE203/2_68-CTD_62; HE203/2_69-CTD_63; HE203/2_70-CTD_64; HE203/2_71-CTD_65; HE203/2_73-CTD_66; HE203/2_74-CTD_67; HE203/2_76-CTD_68; HE203/2_77-CTD_69; HE203/2_79-CTD_70; HE203/2_81-CTD_71; HE203/2_83-CTD_72; HE203/2_84-CTD_73; HE203/2_85-CTD_74; HE203/2_86-CTD_75; HE203/2_87-CTD_76; HE203/2_88-CTD_77; HE203/2_89-CTD_78; HE203/2_90-CTD_79; HE203/2_91-CTD_80; HE203/2_92-CTD_81; HE203/2_93-CTD_82; HE203/2_95-CTD_83; HE203/2_96-CTD_84; HE203/2_98-CTD_85; HE203/2_99-CTD_86; Heincke; Latitude of event; Longitude of event; North Sea; NS0001; NS0002; NS0003; NS0004; NS0005; NS0006; NS0007; NS0008; NS0009; NS0010; NS0011; NS0012; NS0013; NS0014; NS0015; NS0016; NS0017; NS0018; NS0019; NS0020; NS0021; NS0022; NS0023; NS0047; Pressure, water; Salinity; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 36676 data points
    Location Call Number Expected Availability
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  • 9
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    Unknown
    PANGAEA
    In:  Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven
    Publication Date: 2024-01-12
    Keywords: Ammonium; Baltic Sea; BB0003; BB0006; BB0011b; BB0012; BB0015; BB0021; BB0023; BB0026; BB0035; BB0041; BB0043a; BB0045; Bottle number; CTD; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; GG02_10; Global Ocean Ecosystem Dynamics; GLOBEC; HE174; HE174/1334-CTD_1; HE174/1337-CTD_2; HE174/1342-CTD_3; HE174/1345-CTD_4; HE174/1350-CTD_5; HE174/1356-CTD_6; HE174/1356-CTD_7; HE174/1359-CTD_8; HE174/1363-CTD_9; HE174/1366-CTD_10; HE174/1370-CTD_11; HE174/1378-CTD_12; HE174/1378-CTD_13; HE174/1391-CTD_14; Heincke; Latitude of event; Longitude of event; Nitrate; Nitrite; Oxygen, Winkler (Culberson, 1991, WOCE Report 68/91); Oxygen saturation; Phosphate; Salinity; Seawater analysis after Grasshoff et al., 1983 (Verlag Chemie GmbH Weinheim); Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 732 data points
    Location Call Number Expected Availability
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  • 10
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    Unknown
    PANGAEA
    In:  IFM-GEOMAR Leibniz-Institute of Marine Sciences, Kiel University
    Publication Date: 2024-01-12
    Keywords: Ammonium; Baltic Sea; BB0003; BB0006; BB0012; BB0021; BB0023; BB0026; BB0033; BB0035; BB0041; BB0045; Bottle number; CTD; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; GG03_01; Global Ocean Ecosystem Dynamics; GLOBEC; HE182; HE182/003-CTD_1; HE182/006-CTD_2; HE182/017-CTD_3; HE182/019-CTD_4; HE182/026-CTD_5; HE182/034-CTD_6; HE182/038-CTD_7; HE182/038-CTD_8; HE182/040-CTD_9; HE182/043-CTD_9; HE182/079-CTD_10; Heincke; Latitude of event; Longitude of event; Nitrate; Nitrite; Oxygen, Winkler (Culberson, 1991, WOCE Report 68/91); Oxygen saturation; Phosphate; Salinity; Seawater analysis after Grasshoff et al., 1983 (Verlag Chemie GmbH Weinheim); Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 583 data points
    Location Call Number Expected Availability
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