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      Signatures of hydrocarbon venting in a Middle Devonian Carbonate Mound (Hollard Mound) at the Hamar Laghdad (Antiatlas, Morocco)

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      Facies
      Springer Nature

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          Biogenic methane formation in marine and freshwater environments: CO2 reduction vs. acetate fermentation—Isotope evidence

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            Oregon subduction zone: venting, fauna, and carbonates.

            Transects of the submersible Alvin across rock outcrops in the Oregon subduction zone have furnished information on the structural and stratigraphic framework of this accretionary complex. Communities of clams and tube worms, and authigenic carbonate mineral precipitates, are associated with venting sites of cool fluids located on a fault-bend anticline at a water depth of 2036 meters. The distribution of animals and carbonates suggests up-dip migration of fluids from both shallow and deep sources along permeable strata or fault zones within these clastic deposits. Methane is enriched in the water column over one vent site, and carbonate minerals and animal tissues are highly enriched in carbon-12. The animals use methane as an energy and food source in symbiosis with microorganisms. Oxidized methane is also the carbon source for the authigenic carbonates that cement the sediments of the accretionary complex. The animal communities and carbonates observed in the Oregon subduction zone occur in strata as old as 2.0 million years and provide criteria for identifying other localities where modern and ancient accreted deposits have vented methane, hydrocarbons, and other nutrient-bearing fluids.
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              Methane-derived authigenic carbonates formed by subduction-induced pore-water expulsion along the Oregon/Washington margin

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                Author and article information

                Journal
                Facies
                Facies
                Springer Nature
                0172-9179
                1612-4820
                December 1999
                December 1999
                : 40
                : 1
                : 281-296
                Article
                10.1007/BF02537477
                c3443ecb-7990-4a7a-a3af-c0fee9186fb9
                © 1999
                History

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