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  • 152; 153; 158; 166; 170; Bush Hill; Center for Marine Environmental Sciences; DAPC; Dynamic autoclave piston corer; MAC; MARUM; Multi autoclave corer; OTEGA II; SO174/1; SO174/1_118; SO174/1_63; SO174/1_90; SO174/1_97; SO174/2; SO174/2_152; SO174/2_153; SO174/2_158; SO174/2_166; SO174/2_170; Sonne  (1)
  • 261; Black Sea; Center for Marine Environmental Sciences; Comment; DEPTH, sediment/rock; ex situ; GC; GeoB15519-1; Gravity core; Gravity corer; Headspace gas chromatography; Kerch Flare; Kerch seep area; M84/2; MARUM; Meteor (1986); Methane, porewater; methane concentrations; mini core  (1)
  • 44ROV12; carbon dioxide; CE12010; CE12010_44; Celtic Explorer; ECO2; gas release experiment; geological storage; leakage; North Sea; Remote operated vehicle; ROV; Sleipner; Sub-seabed CO2 Storage: Impact on Marine Ecosystems  (1)
  • PANGAEA  (3)
Document type
Keywords
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  • PANGAEA  (3)
Years
  • 1
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    PANGAEA
    In:  Supplement to: Heeschen, Katja U; Hohnberg, Hans-Jürgen; Haeckel, Matthias; Abegg, Friedrich; Drews, Manuela; Bohrmann, Gerhard (2007): In situ hydrocarbon concentrations from pressurized cores in surface sediments, Northern Gulf of Mexico. Marine Chemistry, 107(4), 498-515, https://doi.org/10.1016/j.marchem.2007.08.008
    Publication Date: 2023-06-27
    Description: Two newly developed coring devices, the Multi-Autoclave-Corer and the Dynamic Autoclave Piston Corer were deployed in shallow gas hydrate-bearing sediments in the northern Gulf of Mexico during research cruise SO174 (Oct-Nov 2003). For the first time, they enable the retrieval of near-surface sediment cores under ambient pressure. This enables the determination of in situ methane concentrations and amounts of gas hydrate in sediment depths where bottom water temperature and pressure changes most strongly influence gas/hydrate relationships. At seep sites of GC185 (Bush Hill) and the newly discovered sites at GC415, we determined the volume of low-weight hydrocarbons (C1 through C5) from nine pressurized cores via controlled degassing. The resulting in situ methane concentrations vary by two orders of magnitudes between 0.031 and 0.985 mol kg**-1 pore water below the zone of sulfate depletion. This includes dissolved, free, and hydrate-bound CH4. Combined with results from conventional cores, this establishes a variability of methane concentrations in close proximity to seep sites of five orders of magnitude. In total four out of nine pressure cores had CH4 concentrations above equilibrium with gas hydrates. Two of them contain gas hydrate volumes of 15% (GC185) and 18% (GC415) of pore space. The measurements prove that the highest methane concentrations are not necessarily related to the highest advection rates. Brine advection inhibits gas hydrate stability a few centimeters below the sediment surface at the depth of anaerobic oxidation of methane and thus inhibits the storage of enhanced methane volumes. Here, computerized tomography (CT) of the pressure cores detected small amounts of free gas. This finding has major implications for methane distribution, possible consumption, and escape into the bottom water in fluid flow systems related to halokinesis.
    Keywords: 152; 153; 158; 166; 170; Bush Hill; Center for Marine Environmental Sciences; DAPC; Dynamic autoclave piston corer; MAC; MARUM; Multi autoclave corer; OTEGA II; SO174/1; SO174/1_118; SO174/1_63; SO174/1_90; SO174/1_97; SO174/2; SO174/2_152; SO174/2_153; SO174/2_158; SO174/2_166; SO174/2_170; Sonne
    Type: Dataset
    Format: application/zip, 5 datasets
    Location Call Number Limitation Availability
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  • 2
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    PANGAEA
    In:  Supplement to: Vielstädte, Lisa; Linke, Peter; Schmidt, Mark; Sommer, Stefan; Haeckel, Matthias; Braack, Malte; Wallmann, Klaus (2019): Footprint and detectability of a well leaking CO₂ in the Central North Sea: Implications from a field experiment and numerical modelling. International Journal of Greenhouse Gas Control, 84, 190-203, https://doi.org/10.1016/j.ijggc.2019.03.012
    Publication Date: 2023-07-07
    Description: Video showing the gas release experiment, which has been conducted at ~80 m water depth in the vicinity of the Sleipner CO2 storage site in the North Sea. The gas discharge was observed in situ during a 4 hour dive with GEOMAR's remotely operated vehicle ROV Kiel 6000 equipped with HD camera/video device.
    Keywords: 44ROV12; carbon dioxide; CE12010; CE12010_44; Celtic Explorer; ECO2; gas release experiment; geological storage; leakage; North Sea; Remote operated vehicle; ROV; Sleipner; Sub-seabed CO2 Storage: Impact on Marine Ecosystems
    Type: Dataset
    Format: video/quicktime, 517.2 MBytes
    Location Call Number Limitation Availability
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  • 3
    Publication Date: 2024-02-02
    Keywords: 261; Black Sea; Center for Marine Environmental Sciences; Comment; DEPTH, sediment/rock; ex situ; GC; GeoB15519-1; Gravity core; Gravity corer; Headspace gas chromatography; Kerch Flare; Kerch seep area; M84/2; MARUM; Meteor (1986); Methane, porewater; methane concentrations; mini core
    Type: Dataset
    Format: text/tab-separated-values, 74 data points
    Location Call Number Limitation Availability
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