Origin of methane-rich natural gas at the West Pacific convergent plate boundary

被引:0
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作者
Yuji Sano
Naoya Kinoshita
Takanori Kagoshima
Naoto Takahata
Susumu Sakata
Tomohiro Toki
Shinsuke Kawagucci
Amane Waseda
Tefang Lan
Hsinyi Wen
Ai-Ti Chen
Hsiaofen Lee
Tsanyao F. Yang
Guodong Zheng
Yama Tomonaga
Emilie Roulleau
Daniele L. Pinti
机构
[1] Atmosphere and Ocean Research Institute,Department of Chemistry
[2] The University of Tokyo,Department of Subsurface Geobiological Analysis and Research
[3] Institute for Geo-Resources and Environment,Department of Geosciences
[4] National Institute of Advanced Industrial Science and Technology,undefined
[5] Biology and Marine Science,undefined
[6] University of the Ryukyus,undefined
[7] Japan Agency for Marine-Earth Science and Technology,undefined
[8] Japan Petroleum Exploration Co.,undefined
[9] Ltd,undefined
[10] National Taiwan University,undefined
[11] Green Energy and Environment Research Laboratories,undefined
[12] Industrial Technology Research Institute,undefined
[13] Institute of Earth Sciences,undefined
[14] Academia Sinica,undefined
[15] Key Laboratory of Petroleum Resources,undefined
[16] Gansu Province / Key Laboratory of Petroleum Resources Research,undefined
[17] Institute of Geology and Geophysics,undefined
[18] Chinese Academy of Sciences,undefined
[19] Institute of Geological Sciences,undefined
[20] University of Bern,undefined
[21] Laboratoire Magmas et Volcans,undefined
[22] Université Clermont-Auvergne,undefined
[23] CNRS - IRD,undefined
[24] OPGC,undefined
[25] GEOTOP & Départment des sciences de la Terre et de l′atmosphère,undefined
[26] Université du Québec à Montréal,undefined
来源
Scientific Reports | / 7卷
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摘要
Methane emission from the geosphere is generally characterized by a radiocarbon-free signature and might preserve information on the deep carbon cycle on Earth. Here we report a clear relationship between the origin of methane-rich natural gases and the geodynamic setting of the West Pacific convergent plate boundary. Natural gases in the frontal arc basin (South Kanto gas fields, Northeast Japan) show a typical microbial signature with light carbon isotopes, high CH4/C2H6 and CH4/3He ratios. In the Akita-Niigata region – which corresponds to the slope stretching from the volcanic-arc to the back-arc –a thermogenic signature characterize the gases, with prevalence of heavy carbon isotopes, low CH4/C2H6 and CH4/3He ratios. Natural gases from mud volcanoes in South Taiwan at the collision zone show heavy carbon isotopes, middle CH4/C2H6 ratios and low CH4/3He ratios. On the other hand, those from the Tokara Islands situated on the volcanic front of Southwest Japan show the heaviest carbon isotopes, middle CH4/C2H6 ratios and the lowest CH4/3He ratios. The observed geochemical signatures of natural gases are clearly explained by a mixing of microbial, thermogenic and abiotic methane. An increasing contribution of abiotic methane towards more tectonically active regions of the plate boundary is suggested.
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