4.8 Article

Glacigenic sedimentation pulses triggered post-glacial gas hydrate dissociation

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NATURE COMMUNICATIONS
卷 9, 期 -, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41467-018-03043-z

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  1. People Programme (Marie Curie Actions) of the European Union's Seventh Framework Programme FP7 under REA grant agreement [317217]
  2. Department of Earth Science of the University of Bergen
  3. Research Council of Norway through its Centres of Excellence funding scheme [223259]
  4. Research Council of Norway through its Center of Excellence funding scheme [223272]

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Large amounts of methane are stored in continental margins as gas hydrates. They are stable under high pressure and low, but react sensitively to environmental changes. Bottom water temperature and sea level changes were considered as main contributors to gas hydrate dynamics after the last glaciation. However, here we show with numerical simulations that pulses of increased sedimentation dominantly controlled hydrate stability during the end of the last glaciation offshore mid-Norway. Sedimentation pulses triggered widespread gas hydrate dissociation and explains the formation of ubiquitous blowout pipes in water depths of 600 to 800 m. Maximum gas hydrate dissociation correlates spatially and temporally with the formation or reactivation of pockmarks, which is constrained by radiocarbon dating of Isorropodon nyeggaensis bivalve shells. Our results highlight that rapid changes of sedimentation can have a strong impact on gas hydrate systems affecting fluid flow and gas seepage activity, slope stability and the carbon cycle.

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