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  • 1
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    Unknown
    PANGAEA
    In:  Supplement to: MacDonald, Ian R; Bohrmann, Gerhard; Escobar, E; Abegg, Friedrich; Blanchon, Paul; Blinova, Valentina N; Brueckmann, Warner; Drews, Manuela; Eisenhauer, Anton; Han, X; Heeschen, Katja U; Meier, Felix; Mortera-Gutierrez, Carlos; Naehr, T; Orcutt, B; Bernard, B; Brroks, J; de Farágo, M (2004): Asphalt volcanism and chemosynthetic life, Campache Knolls, Gulf of Mexico. Science, 304(5673), 999-1002, https://doi.org/10.1126/science.1097154
    Publication Date: 2023-05-12
    Description: In the Campeche Knolls, in the southern Gulf of Mexico, lava-like flows of solidified asphalt cover more than 1 square kilometer of the rim of a dissected salt dome at a depth of 3000 meters below sea level. Chemosynthetic tubeworms and bivalves colonize the sea floor near the asphalt, which chilled and contracted after discharge. The site also includes oil seeps, gas hydrate deposits, locally anoxic sediments, and slabs of authigenic carbonate. Asphalt volcanism creates a habitat for chemosynthetic life that may be widespread at great depth in the Gulf of Mexico.
    Keywords: 136; Campeche Knoll; Carbon dioxide; Center for Marine Environmental Sciences; Ethane; Isobutane; MARUM; Methane; n-Butane; OTEGA II; Propane; Sample type; see reference(s); SO174/2; SO174/2_136; Sonne; Television-Grab; TVG; δ13C, carbon dioxide, gas hydrate; δ13C, ethane; δ13C, isobutane; δ13C, methane; δ13C, propane
    Type: Dataset
    Format: text/tab-separated-values, 31 data points
    Location Call Number Limitation Availability
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  • 2
    Publication Date: 2023-10-28
    Keywords: Black Sea; Center for Marine Environmental Sciences; Comment; CT; DATE/TIME; IFM-GEOMAR; LATITUDE; Leibniz-Institut für Meereswissenschaften, Kiel; LONGITUDE; MARUM; POS317/4; POS317/4-track; Poseidon; SFB574; Swath-mapping system SeaBeam 2120 (portable ELAC BottomChart MkII); Underway cruise track measurements; Uniform resource locator/link to raw data file; Volatiles and Fluids in Subduction Zones
    Type: Dataset
    Format: text/tab-separated-values, 2802 data points
    Location Call Number Limitation Availability
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  • 3
    Publication Date: 2024-02-02
    Keywords: Black Sea; Butene; C1/C2+ hydrocarbon ratio; C1 hydrocarbons; C2= hydrocarbons; C2 hydrocarbons; C3 hydrocarbons; Carbon, organic, total; Center for Marine Environmental Sciences; DEPTH, sediment/rock; Event label; GC; GC-7; GC-8; GC-9; Gravity corer; iso-C4 hydrocarbons; M52/1; M52/1_34-1; M52/1_39; M52/1_49-1; M52/1_53; M52/1_54; M52/1_55; MARUM; Meteor (1986); n-C4 hydrocarbons; Propene; TGC; TGC-2; TGC-6; TGC-8; Thermistor Gravity Corer
    Type: Dataset
    Format: text/tab-separated-values, 270 data points
    Location Call Number Limitation Availability
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  • 4
    Publication Date: 2024-02-02
    Keywords: Black Sea; C1 hydrocarbons; C2 hydrocarbons; C3 hydrocarbons; Center for Marine Environmental Sciences; DEPTH, sediment/rock; Event label; M52/1; M52/1_34-1; M52/1_37; M52/1_38; M52/1_48-1; M52/1_49-1; M52/1_63; MARUM; Meteor (1986); Television-Grab; TGC; TGC-2; TGC-4; TGC-5; TGC-7; TGC-8; Thermistor Gravity Corer; TVG; TVG-7; δ13C, carbon dioxide, gas hydrate; δ13C, ethane; δ13C, methane; δ Deuterium, methane
    Type: Dataset
    Format: text/tab-separated-values, 30 data points
    Location Call Number Limitation Availability
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  • 5
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    Unknown
    PANGAEA
    In:  Supplement to: Blinova, Valentina N; Ivanov, Michael; Bohrmann, Gerhard (2003): Hydrocarbon gases in deposits from mud volcanoes in the Sorokin Trough, northeatsern Black Sea. Geo-Marine Letters, 23(3-4), 250-257, https://doi.org/10.1007/s00367-003-0148-8
    Publication Date: 2024-02-02
    Description: Hydrocarbon gases were determined in sediments from three mud volcanoes in the Sorokin Trough. In comparison to a reference station outside the mud volcano area, the deposits are characterized by an enrichment of high-molecular hydrocarbons (C2-C4), an absence of unsaturated homologues, a predominance of iso-butane in comparison with n-butane, and the presence of gas hydrate. The molecular composition of the hydrocarbon gases suggests their deep sources and thermogenic origin. In the pelagic sediments at the reference station, the methane concentration is relatively low (up to 49 ml/l); maximum concentrations are reached in deposits of the Dvurechenskii mud volcano (up to 400 ml/l). It was the first time that gas hydrate was sampled at the Dvurechenskii mud volcano. The gas extracted by dissociation of hydrate samples was dominated by methane (99.5%) with low amounts of ethane and propane (less than 0.5%). The isotopic composition of the methane varies between -62 and -66 per mill PDB in d13C, and between -185 and -209 per mill SMOW in dD, indicating a mainly biogenic origin with an admixture of thermogenic gas.
    Keywords: Black Sea; Center for Marine Environmental Sciences; GC; GC-7; GC-8; GC-9; Gravity corer; M52/1; M52/1_34-1; M52/1_37; M52/1_38; M52/1_39; M52/1_48-1; M52/1_49-1; M52/1_53; M52/1_54; M52/1_55; M52/1_63; MARUM; Meteor (1986); Television-Grab; TGC; TGC-2; TGC-4; TGC-5; TGC-6; TGC-7; TGC-8; Thermistor Gravity Corer; TVG; TVG-7
    Type: Dataset
    Format: application/zip, 2 datasets
    Location Call Number Limitation Availability
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  • 6
    Publication Date: 2024-02-07
    Description: Highlights • Four seafloor hydrocarbon emissions in the Eastern Black Sea were investigated • Eocene and/or Oligocene-Miocene Formations are most likely sources for oil and gas • Mixed secondary microbial and oil-associated thermogenic hydrocarbons at all sites • Site-specific light hydrocarbon compositions result from different mixing ratios Abstract Numerous hydrocarbon seep sites at the continental shelf, slope, and in the deep water basin are known to feed the Black Sea water reservoir of dissolved methane. In this study, we identified the likely sources of gas and oil that are emitted at four sites located on the continental slope offshore Georgia in the Eastern Black Sea at 830 to 1,140 m water depth – an area with gas seepage only (Batumi seep area) and three areas of joint gas and oil seepage (Iberia Mound, Colkheti Seep, and Pechori Mound). The geochemistry of bulk parameters, organic fractions and individual hydrocarbon biomarkers in near-surface sediments and of gas/oil expelled from the seafloor was analyzed and jointly interpreted to assign most likely hydrocarbon source rocks in the studied region. Presence of oleanane in shallow oil-impregnated sediments and oil slicks attests that the source rock at all sites is younger than Mid Cretaceous in age. We conclude that hydrocarbons ascending at all the four seepage areas originate from the Eocene Kuma Formation and/or the Oligocene–Lower Miocene Maikop Group, which are considered the principal hydrocarbon sources in the Eastern Black Sea region. Distributions of crude oil biomarkers in shallow sediments suggests moderate to heavy biodegradation. C1/C2+ ratios (10 to 4,163) along with stable C and H isotopic ratios (δ13C-CH4 ‒46.3 to ‒53.1.3‰ V-PDB; δ2H-CH4 ‒159 to ‒178‰ SMOW) indicate gas mixtures of oil-associated thermogenic and secondary microbial light hydrocarbons that are discharged from the four seep sites. Light hydrocarbons discharged at the Batumi Seep area are characterized by significant enrichments of methane, but almost similar δ13C-CH4 values if compared to the other study sites. Such methane enrichments likely result from a comparably higher degree of petroleum degradation and associated formation of secondary microbial methane.
    Type: Article , PeerReviewed
    Format: text
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