Geosciences · 2021 · 19 citations · 26 references
GlacierVolcanologyEngineeringGeomorphologyGas-emission CratersGas Emission CratersEarth ScienceMeteorite ImpactGeophysicsPermafrostMeteoriticsGas PoolsIce-water SystemGeologyCryosphereTectonicsArctic StructureSubduction ZoneGeochemistryPeriglacial Process
Gas-emission craters discovered in northern West Siberia may arise under a specific combination of shallow and deep-seated permafrost conditions. A formation model for such craters is suggested based on cryological and geological data from the Yamal Peninsula, where shallow permafrost encloses thick ground ice and lenses of intra- and subpermafrost saline cold water (cryopegs). Additionally, the permafrost in the area is highly saturated with gas and stores large accumulations of hydrocarbons that release gas-water fluids rising to the surface through faulted and fractured crusts. Gas emission craters in the Arctic can form in the presence of gas-filled cavities in ground ice caused by climate warming, rich sources of gas that can migrate and accumulate under pressure in the cavities, intrapermafrost gas-water fluids that circulate more rapidly in degrading permafrost, or weak permafrost caps over gas pools.
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Degrading permafrost puts Arctic infrastructure at risk by mid-century
Jan Hjort, Olli Karjalainen, Juha Aalto et al. · Nature Communications · 2018 · 564 citations · Full text
Transient Water Vapor at Europa’s South Pole
Lorenz Roth, Joachim Saur, K. D. Retherford et al. · Science · 2013 · 488 citations
December 2012, Transient Water Vapor, Ultraviolet Emissions +8
Dissociation and Self-Preservation of Gas Hydrates in Permafrost
Evgeny Chuvilin, Boris Bukhanov, Dinara Davletshina et al. · Geosciences · 2018 · 85 citations · Full text
Organic Geochemistry, Environmental Chemistry, Permafrost +13