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  • PANGAEA  (9,774)
  • Nature Publishing Group (NPG)
  • 2010-2014  (12,173)
  • 2012  (12,173)
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Keywords
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  • 2010-2014  (12,173)
Year
  • 1
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    Unknown
    PANGAEA
    In:  Supplement to: Kosyan, A R; Kucheruk, Nikita V; Flint, Mikhail V (2012): Role of bivalve mollusks in the sediment balance of the Anapa Bay Bar. Translated from Okeanologiya, 2012, 52(1), 78-84, Oceanology, 52(1), 72-78, https://doi.org/10.1134/S0001437012010122
    Publication Date: 2023-03-16
    Description: Sandy beaches of the Anapa Bay Bar are a unique natural resource, but they are gradually being degrade under both natural and anthropogenic factors. Emissions of sand and shelly ground from the adjacent sea bottom partly compensate for this process. Concentration of carbonates may reach up to 50% in beach sands, and most of these carbonates are of mollusk origin. The major deposit formation role belongs to the key bivalve species: Chamelea gallina (Linnaeus, 1758). Average biomass of this mollusk species reaches up to 450 g/m**2 at depths 5-10 m. The other two subdominating mollusk species, bivalve Donax trunculus (Linnaeus, 1758) and gastropod Rapana venosa (Valenciennes, 1846), may impact as 16 g/m**2 and 6 g/m**2, respectively. Annually, 350 kg of shelly ground per running meter are newly deposited on the Anapa beach.
    Keywords: Archive of Ocean Data; ARCOD; Black Sea; KKF12-1; KKF12-2; KKF12-3; KKF12-4; KKF12-5; KKF12-6; KKF12-7; KKF12-8
    Type: Dataset
    Format: application/zip, 4 datasets
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  • 2
    facet.materialart.
    Unknown
    PANGAEA
    In:  P.P. Shirshov Institute of Oceanology, Russian Academy of Sciences, Moscow | Supplement to: Lukashin, Vyacheslav N; Demina, Lyudmila L; Gordeev, Viacheslav V; Gordeev, Vladimir Yu (2012): The geochemistry of deepwater particulate matter over the hydrothermal field at 9°50'N (the East Pacific Rise). Translated from Okeanologiya, 2012, 52(2), 292-305, Oceanology, 52(2), 271-283, https://doi.org/10.1134/S0001437012010146
    Publication Date: 2023-03-16
    Description: Results of geochemical studies of suspended matter from the water mass over the hydrothermal field at 9°50'N on the East Pacific Rise are reported. The suspended matter was sampled in background waters, in the buoyant plume, and in the near-bottom waters. Contents of Si, Al, P, Corg, Fe, Mn, Cu, Zn, Ni, Co, As, Cr, Cd, Pb, Ag, and Hg were determined. No definite correlations were found between the elements in the background waters. Many of the chemical elements correlated with Fe and associated with its oxyhydroxides in the buoyant plume. In the near-bottom waters trace elements are associated with Fe, Zn, and Cu (probably, with their sulfides formed during mixing of hydrothermal fluids with seawater). Chemical composition of sediment matter precipitated in a sediment trap was similar to the near-bottom suspended matter.
    Keywords: Archive of Ocean Data; ARCOD
    Type: Dataset
    Format: application/zip, 5 datasets
    Location Call Number Expected Availability
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  • 3
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    PANGAEA
    In:  Supplement to: Lein, Alla Yu; Kravchishina, Marina D; Politova, Nadezhda V; Savvichev, Alexander S; Veslopolova, E F; Mitskevich, Irina N; Ul'yanova, Nina V; Shevchenko, Vladimir P; Ivanov, Mikhail V (2012): Transformation of particulate organic matter at the water-bottom boundary in the Russian Arctic seas: Evidence from isotope and radioisotope data. Translated from Litologiya i Poleznye Iskopaemye, 2012, 2, 115-145, Lithology and Mineral Resources, 47(2), 99-128, https://doi.org/10.1134/S0024490212020034
    Publication Date: 2023-03-16
    Description: Comprehensive biogeochemical studies including determination of isotopic composition of organic carbon in both suspended matter and surface layer (0-1 cm) bottom sediments (more than 260 determinations of d13C-Corg) were carried out for five Arctic shelf seas: White, Barents, Kara, East Siberian, and Chukchi Seas. The aim of this study is to elucidate causes that change isotopic composition of particulate organic carbon at the water-sediment boundary. It is shown that isotopic composition of organic carbon in sediments from seas with high river run-off (White, Kara, and East Siberian Seas) does not inherit isotopic composition of organic carbon in particles precipitating from the water column, but is enriched in 13C. Seas with low river run-off (Barents and Chukchi Seas) show insignificant difference between d13C-Corg values in both suspended load and sediments because of low content of isotopically light allochthonous organic matter in suspended matter. Biogeochemical studies with radioisotope tracers (14CO2, 35S, and 14CH4) revealed existence of specific microbial filter formed from heterotrophic and autotrophic organisms at the water-sediment boundary. This filter prevents mass influx of products of organic matter decomposition into the water column, as well as reduces influx of OM contained in suspended matter from water into sediments.
    Keywords: Archive of Ocean Data; ARCOD
    Type: Dataset
    Format: application/zip, 23 datasets
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  • 4
    Publication Date: 2023-03-13
    Keywords: CO2BaseSleipner; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; International Young Fish Survey/International Bottom Trawl Survey; IYFS/IBTS; Latitude of event; Longitude of event; North Sea; Norwegian Sea; Pressure, water; Salinity; Scotia; Scotia12/1; Scotia12/1_001; Scotia12/1_002; Scotia12/1_003; Scotia12/1_004; Scotia12/1_005; Scotia12/1_006; Scotia12/1_007; Scotia12/1_008; Scotia12/1_009; Scotia12/1_010; Scotia12/1_011; Scotia12/1_012; Scotia12/1_013; Scotia12/1_014; Scotia12/1_015; Scotia12/1_016; Scotia12/1_017; Scotia12/1_018; Scotia12/1_019; Scotia12/1_020; Scotia12/1_021; Scotia12/1_022; Scotia12/1_023; Scotia12/1_024; Scotia12/1_025; Scotia12/1_026; Scotia12/1_027; Scotia12/1_028; Scotia12/1_029; Scotia12/1_030; Scotia12/1_031; Scotia12/1_032; Scotia12/1_033; Scotia12/1_034; Scotia12/1_035; Scotia12/1_036; Scotia12/1_037; Scotia12/1_038; Scotia12/1_039; Scotia12/1_040; Scotia12/1_041; Scotia12/1_042; Scotia12/1_043; Scotia12/1_044; Scotia12/1_045; Scotia12/1_046; Scotia12/1_047; Scotia12/1_048; Scotia12/1_049; Scotia12/1_050; Scotia12/1_051; Scotia12/1_052; Scotia12/1_053; Scotia12/1_054; Scotia12/1_055; Scotia12/1_056; South Atlantic Ocean; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 16329 data points
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  • 5
    Publication Date: 2023-03-13
    Keywords: CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; English Channel; Event label; International Young Fish Survey/International Bottom Trawl Survey; IYFS/IBTS; Latitude of event; Longitude of event; North Sea; Pressure, water; Salinity; Temperature, water; Thalassa; Thalassa12/1; Thalassa12/1_001; Thalassa12/1_002; Thalassa12/1_003; Thalassa12/1_004; Thalassa12/1_005; Thalassa12/1_006; Thalassa12/1_007; Thalassa12/1_008; Thalassa12/1_009; Thalassa12/1_010; Thalassa12/1_011; Thalassa12/1_012; Thalassa12/1_013; Thalassa12/1_014; Thalassa12/1_015; Thalassa12/1_016; Thalassa12/1_017; Thalassa12/1_019; Thalassa12/1_020; Thalassa12/1_021; Thalassa12/1_022; Thalassa12/1_023; Thalassa12/1_024; Thalassa12/1_025; Thalassa12/1_026; Thalassa12/1_027; Thalassa12/1_028; Thalassa12/1_029; Thalassa12/1_030; Thalassa12/1_031; Thalassa12/1_032; Thalassa12/1_033; Thalassa12/1_034; Thalassa12/1_035; Thalassa12/1_036; Thalassa12/1_037; Thalassa12/1_038; Thalassa12/1_039; Thalassa12/1_040; Thalassa12/1_041; Thalassa12/1_042; Thalassa12/1_043; Thalassa12/1_044; Thalassa12/1_045; Thalassa12/1_046; Thalassa12/1_047; Thalassa12/1_048; Thalassa12/1_049; Thalassa12/1_050; Thalassa12/1_051; Thalassa12/1_052; Thalassa12/1_053; Thalassa12/1_054; Thalassa12/1_055; Thalassa12/1_056; Thalassa12/1_057; Thalassa12/1_058; Thalassa12/1_059; Thalassa12/1_060; Thalassa12/1_061; Thalassa12/1_062; Thalassa12/1_063; Thalassa12/1_064; Thalassa12/1_065; Thalassa12/1_066; Thalassa12/1_067; Thalassa12/1_068; Thalassa12/1_069; Thalassa12/1_070; Thalassa12/1_071; Thalassa12/1_072; Thalassa12/1_073; Thalassa12/1_074; Thalassa12/1_075; Thalassa12/1_076; Thalassa12/1_077; Thalassa12/1_078; Thalassa12/1_079; Thalassa12/1_080; Thalassa12/1_081; Thalassa12/1_082; Thalassa12/1_083; Thalassa12/1_084; Thalassa12/1_085; Thalassa12/1_086; Thalassa12/1_087; Thalassa12/1_088; Thalassa12/1_089; Thalassa12/1_090; Thalassa12/1_091; Thalassa12/1_092; Thalassa12/1_093; Thalassa12/1_094; Thalassa12/1_095; Thalassa12/1_096; Thalassa12/1_097; Thalassa12/1_098; Thalassa12/1_099; Thalassa12/1_100; Thalassa12/1_101; Thalassa12/1_102; Thalassa12/1_103; Thalassa12/1_104; Thalassa12/1_105; Thalassa12/1_106; Thalassa12/1_107; Thalassa12/1_108; Thalassa12/1_109; Thalassa12/1_110; Thalassa12/1_111; Thalassa12/1_112; Thalassa12/1_113; Thalassa12/1_114; Thalassa12/1_115; Thalassa12/1_116; Thalassa12/1_117; Thalassa12/1_118; Thalassa12/1_119; Thalassa12/1_120; Thalassa12/1_121; Thalassa12/1_122; Thalassa12/1_123; Thalassa12/1_124; Thalassa12/1_125; Thalassa12/1_126; Thalassa12/1_127; Thalassa12/1_128; Thalassa12/1_129; Thalassa12/1_130; Thalassa12/1_131; Thalassa12/1_132; Thalassa12/1_133; Thalassa12/1_134; Thalassa12/1_135; Thalassa12/1_136; Thalassa12/1_137; Thalassa12/1_138; Thalassa12/1_139; Thalassa12/1_140; Thalassa12/1_141; Thalassa12/1_142; Thalassa12/1_143; Thalassa12/1_144; Thalassa12/1_145; Thalassa12/1_146; Thalassa12/1_147; Thalassa12/1_148; Thalassa12/1_149; Thalassa12/1_150; Thalassa12/1_151; Thalassa12/1_152; Thalassa12/1_153; Thalassa12/1_154; Thalassa12/1_155; Thalassa12/1_156; Thalassa12/1_157; Thalassa12/1_158; Thalassa12/1_159; Thalassa12/1_160; Thalassa12/1_161; Thalassa12/1_162; Thalassa12/1_163; Thalassa12/1_164; Thalassa12/1_165; Thalassa12/1_166; Thalassa12/1_167; Thalassa12/1_168; Thalassa12/1_169; Thalassa12/1_170; Thalassa12/1_171; Thalassa12/1_172; Thalassa12/1_173; Thalassa12/1_174; Thalassa12/1_175; Thalassa12/1_176; Thalassa12/1_177; Thalassa12/1_178; Thalassa12/1_179; Thalassa12/1_180; Thalassa12/1_181; Thalassa12/1_182; Thalassa12/1_183; Thalassa12/1_184; Thalassa12/1_185; Thalassa12/1_186; Thalassa12/1_187; Thalassa12/1_188; Thalassa12/1_189; Thalassa12/1_190; Thalassa12/1_191; Thalassa12/1_192; Thalassa12/1_193; Thalassa12/1_194; Thalassa12/1_195
    Type: Dataset
    Format: text/tab-separated-values, 22440 data points
    Location Call Number Expected Availability
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  • 6
    Publication Date: 2023-03-13
    Keywords: CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; English Channel; Event label; International Young Fish Survey/International Bottom Trawl Survey; IYFS/IBTS; Latitude of event; Longitude of event; North Sea; Pressure, water; Salinity; Temperature, water; Tridens; Tridens12/1; Tridens12/1_001; Tridens12/1_002; Tridens12/1_003; Tridens12/1_004; Tridens12/1_005; Tridens12/1_007; Tridens12/1_008; Tridens12/1_010; Tridens12/1_011; Tridens12/1_012; Tridens12/1_015; Tridens12/1_016; Tridens12/1_017; Tridens12/1_018; Tridens12/1_019; Tridens12/1_020; Tridens12/1_021; Tridens12/1_022; Tridens12/1_023; Tridens12/1_024; Tridens12/1_025; Tridens12/1_026; Tridens12/1_027; Tridens12/1_028; Tridens12/1_029; Tridens12/1_030; Tridens12/1_031; Tridens12/1_032; Tridens12/1_033; Tridens12/1_034; Tridens12/1_035; Tridens12/1_036; Tridens12/1_037; Tridens12/1_038; Tridens12/1_039; Tridens12/1_040; Tridens12/1_041; Tridens12/1_042; Tridens12/1_043; Tridens12/1_044; Tridens12/1_045; Tridens12/1_046; Tridens12/1_047; Tridens12/1_048; Tridens12/1_049; Tridens12/1_050; Tridens12/1_051; Tridens12/1_052; Tridens12/1_053; Tridens12/1_054; Tridens12/1_055; Tridens12/1_056; Tridens12/1_057; Tridens12/1_058; Tridens12/1_101; Tridens12/1_102; Tridens12/1_103; Tridens12/1_104; Tridens12/1_105; Tridens12/1_106; Tridens12/1_109; Tridens12/1_110; Tridens12/1_111; Tridens12/1_112; Tridens12/1_113; Tridens12/1_114; Tridens12/1_115; Tridens12/1_116; Tridens12/1_117; Tridens12/1_118; Tridens12/1_119; Tridens12/1_120; Tridens12/1_121; Tridens12/1_122; Tridens12/1_123; Tridens12/1_124; Tridens12/1_125; Tridens12/1_126; Tridens12/1_127; Tridens12/1_128; Tridens12/1_129; Tridens12/1_130; Tridens12/1_131; Tridens12/1_132; Tridens12/1_133; Tridens12/1_134; Tridens12/1_135; Tridens12/1_136; Tridens12/1_1367; Tridens12/1_1368; Tridens12/1_1369; Tridens12/1_140; Tridens12/1_141; Tridens12/1_142; Tridens12/1_143; Tridens12/1_144; Tridens12/1_145; Tridens12/1_146; Tridens12/1_147; Tridens12/1_148; Tridens12/1_149; Tridens12/1_150; Tridens12/1_151; Tridens12/1_152; Tridens12/1_153; Tridens12/1_154; Tridens12/1_155; Tridens12/1_156; Tridens12/1_157; Tridens12/1_158; Tridens12/1_159; Tridens12/1_160; Tridens12/1_161; Tridens12/1_162; Tridens12/1_163; Tridens12/1_164; Tridens12/1_165; Tridens12/1_166; Tridens12/1_167; Tridens12/1_168; Tridens12/1_169; Tridens12/1_170; Tridens12/1_171; Tridens12/1_172; Tridens12/1_173; Tridens12/1_174; Tridens12/1_175; Tridens12/1_176; Tridens12/1_177; Tridens12/1_178; Tridens12/1_179; Tridens12/1_180; Tridens12/1_181; Tridens12/1_182; Tridens12/1_183; Tridens12/1_184; Tridens12/1_185; Tridens12/1_186; Tridens12/1_187; Tridens12/1_188; Tridens12/1_189; Tridens12/1_190; Tridens12/1_191; Tridens12/1_192; Tridens12/1_193; Tridens12/1_194; Tridens12/1_195; Tridens12/1_196; Tridens12/1_197; Tridens12/1_198; Tridens12/1_199; Tridens12/1_200; Tridens12/1_202; Tridens12/1_203; Tridens12/1_204; Tridens12/1_205; Tridens12/1_206; Tridens12/1_207; Tridens12/1_208; Tridens12/1_209; Tridens12/1_210; Tridens12/1_211; Tridens12/1_212; Tridens12/1_213; Tridens12/1_214; Tridens12/1_215
    Type: Dataset
    Format: text/tab-separated-values, 21305 data points
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  • 7
    Publication Date: 2023-03-13
    Keywords: MULT; Multiple investigations; n-Alkane C15; n-Alkane C16; n-Alkane C17; n-Alkane C18; n-Alkane C19; n-Alkane C20; n-Alkane C21; n-Alkane C22; n-Alkane C23; n-Alkane C24; n-Alkane C25; n-Alkane C26; n-Alkane C27; n-Alkane C28; n-Alkane C29; n-Alkane C30; n-Alkane C31; n-Alkane C32; n-Alkane C33; Odd-even predominance index; Species; Sum n-alkanes C25-C33; Yakutia-Baikal-Region; Yakutsk, Russia
    Type: Dataset
    Format: text/tab-separated-values, 951 data points
    Location Call Number Expected Availability
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  • 8
    Publication Date: 2023-03-13
    Keywords: Acridine Orange Direct Counting (AODC); CHEMECO; Comment; DEPTH, sediment/rock; Event label; HERMES; HERMIONE; Hotspot Ecosystem Research and Mans Impact On European Seas; Hotspot Ecosystem Research on the Margins of European Seas; MEDECO2; MEDECO2-D338-PC-5; MEDECO2-D338-PC-7; Monitoring colonisation processes in chemosynthetic ecosystems; Nile Fan Pockmark Area; Pourquoi Pas ? (2005); Prokaryotes, abundance as single cells; PUC; Push corer
    Type: Dataset
    Format: text/tab-separated-values, 64 data points
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  • 9
    Publication Date: 2023-03-13
    Keywords: Acridine Orange Direct Counting (AODC); CHEMECO; Comment; DEPTH, sediment/rock; Event label; HERMES; HERMIONE; Hotspot Ecosystem Research and Mans Impact On European Seas; Hotspot Ecosystem Research on the Margins of European Seas; Latitude of event; Longitude of event; MEDECO2; MEDECO2-D339-PC-10; MEDECO2-D339-PC-17; Monitoring colonisation processes in chemosynthetic ecosystems; Nile Fan Pockmark Area; Pourquoi Pas ? (2005); Prokaryotes, abundance as single cells; PUC; Push corer
    Type: Dataset
    Format: text/tab-separated-values, 64 data points
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  • 10
    Publication Date: 2023-03-13
    Keywords: Ammonium; Carbon, inorganic, dissolved; CHEMECO; Comment; DEPTH, sediment/rock; Event label; Flow injection analysis (Hall and Aller 1992); HERMES; HERMIONE; Hotspot Ecosystem Research and Mans Impact On European Seas; Hotspot Ecosystem Research on the Margins of European Seas; Ion chromatography; Latitude of event; Longitude of event; MEDECO2; MEDECO2-D338-PC_PW-1; MEDECO2-D338-PC_PW-2; Monitoring colonisation processes in chemosynthetic ecosystems; Nile Fan Pockmark Area; Pourquoi Pas ? (2005); PUC; Push corer; Seawater analysis after Grasshoff; Silicate; Sulfate
    Type: Dataset
    Format: text/tab-separated-values, 160 data points
    Location Call Number Expected Availability
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