GSTDTAP  > 地球科学
DOI10.1073/pnas.2011064117
Crustal fingering facilitates free-gas methane migration through the hydrate stability zone
Xiaojing Fu; Joaquin Jimenez-Martinez; Thanh Phong Nguyen; J. William Carey; Hari Viswanathan; Luis Cueto-Felgueroso; Ruben Juanes
2020-11-30
发表期刊Proceedings of the National Academy of Science
出版年2020
英文摘要

Widespread seafloor methane venting has been reported in many regions of the world oceans in the past decade. Identifying and quantifying where and how much methane is being released into the ocean remains a major challenge and a critical gap in assessing the global carbon budget and predicting future climate [C. Ruppel, J. D. Kessler. Rev. Geophys. 55, 126–168 (2017)]. Methane hydrate (CH45.75H2O) is an ice-like solid that forms from methane–water mixture under elevated-pressure and low-temperature conditions typical of the deep marine settings (>600-m depth), often referred to as the hydrate stability zone (HSZ). Wide-ranging field evidence indicates that methane seepage often coexists with hydrate-bearing sediments within the HSZ, suggesting that hydrate formation may play an important role during the gas-migration process. At a depth that is too shallow for hydrate formation, existing theories suggest that gas migration occurs via capillary invasion and/or initiation and propagation of fractures (Fig. 1). Within the HSZ, however, a theoretical mechanism that addresses the way in which hydrate formation participates in the gas-percolation process is missing. Here, we study, experimentally and computationally, the mechanics of gas percolation under hydrate-forming conditions. We uncover a phenomenon—crustal fingering—and demonstrate how it may control methane-gas migration in ocean sediments within the HSZ.

领域地球科学
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被引频次:24[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/305790
专题地球科学
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Xiaojing Fu,Joaquin Jimenez-Martinez,Thanh Phong Nguyen,et al. Crustal fingering facilitates free-gas methane migration through the hydrate stability zone[J]. Proceedings of the National Academy of Science,2020.
APA Xiaojing Fu.,Joaquin Jimenez-Martinez.,Thanh Phong Nguyen.,J. William Carey.,Hari Viswanathan.,...&Ruben Juanes.(2020).Crustal fingering facilitates free-gas methane migration through the hydrate stability zone.Proceedings of the National Academy of Science.
MLA Xiaojing Fu,et al."Crustal fingering facilitates free-gas methane migration through the hydrate stability zone".Proceedings of the National Academy of Science (2020).
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