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Documentation of sediment core GeoB11925
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Documentation of sediment core GeoB11924
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Documentation of sediment core GeoB11920
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Documentation of sediment core GeoB11918
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Documentation of sediment core GeoB11916
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Documentation of sediment core GeoB11914
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Documentation of sediment core GeoB11913
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Documentation of sediment core GeoB11912
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Documentation of sediment core GeoB11911
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Documentation of sediment core GeoB11906
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Documentation of sediment core GeoB11905-2
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Documentation of sediment core GeoB11903
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Documentation of sediment core GeoB11901
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Hydrate abundances at the high-flux Batumi seep area in the southeastern Blac...
Submarine gas hydrates are a major global reservoir of the potent greenhouse gas methane. Since current assessments of worldwide hydrate-bound carbon vary by one order of... -
14C specific radiocarbon ages and bulk ages accompanied by geochemical proxys...
Transfer of organic carbon (OC) from the terrestrial to the oceanic carbon pool is largely driven by riverine and aeolian transport. Before transport, however, terrigenous... -
Temperature measurements, gas chemistry, and gas hydrates of the Dvurechenski...
The sediment temperature distribution at mud volcanoes provides insights into their activity and into the occurrence of gas hydrates. If ambient pressure and temperature... -
Gas analysis of sediment cores from the Batumi seep area
Detailed knowledge of the extent of post-genetic modifications affecting shallow submarine hydrocarbons fueled from the deep subsurface is fundamental for evaluating source and... -
Pore-water concentration of chloride in sediment cores and equilibrium temper...
Vodyanitskii mud volcano is located at a depth of about 2070 m in the Sorokin Trough, Black sea. It is a 500-m wide and 20-m high cone surrounded by a depression, which is... -
(Table 4) Methane inventory of dynamic autoclave piston cores GeoB11911, GeoB...
This dataset has no description
