REVIEW PAPER A review of the geochemistry of methane in natural gas hydrate

Abstract-The largest accumulations on Earth of natural gas are in the form of gas hydrate, found mainly offshore in outer continental margin sediment and, to a lesser extent, in polar regions commonly associated with permafrost. Measurements of hydrocarbon gas compositions and of carbon-isotopic com...

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Bibliographic Details
Main Author: Keith A. Kvenvolden
Other Authors: The Pennsylvania State University CiteSeerX Archives
Format: Text
Language:English
Published: 1995
Subjects:
Online Access:http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.694.9668
http://www.che.ncsu.edu/ILEET/CHE596web_Fall2011/resources/natural-gas/Methane+Hydrate-Geochemistry.pdf
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Summary:Abstract-The largest accumulations on Earth of natural gas are in the form of gas hydrate, found mainly offshore in outer continental margin sediment and, to a lesser extent, in polar regions commonly associated with permafrost. Measurements of hydrocarbon gas compositions and of carbon-isotopic compositions of methane from natural gas hydrate samples, collected in subaquatic settings from around the world, suggest that methane guest molecules in the water clathrate structures are mainly derived by the microbial reduction of COZ from sedimentary organic matter. Typically, these hydrocarbon gases are composed of>99 % methane, with carbon-isotopic compositions (S’C,,,) ranging from- 57 to- 730/W. In only two regions, the Gulf of Mexico and the Caspian Sea, has mainly thermogenic methane been found in gas hydrate. There, hydrocarbon gases have methane contents ranging from 21 to 97%. with 6°C values ranging from- 29 to- 570/W. At a few locations, where the gas hydrate contains a mixture of microbial and thermal methane, microbial methane is always dominant. Continental gas hydrate, identified in Alaska and Russia, also has hydrocarbon gases composed of> 99 % methane, with carbon-isotopic compositions ranging from- 41 to- 490/w. These gas hydrate deposits also contain a mixture of microbial and thermal methane, with thermal methane likely to be dominant. Published by Elsevier