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Permeability Reduction Produced by Grain Reorganization and Accumulation of Exsolved CO2 during Geologic Carbon Sequestration: A New CO2 Trapping Mechanism.
Luhmann A.J.; Kong Xiang-Zhao; Tutolo B.M.; Ding K.; Saar M.O.; Seyfried W.E. Jr.
2013-01-02
Source PublicationEnvironmental Science & Technology
Volume47Issue:1Pages:242-251
DOI10.1021/es3031209
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Indexed BySCI
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Cited Times:13[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Version出版稿
Identifierhttp://ir.idsse.ac.cn/handle/183446/2617
Collection个人在本单位外知识产出
Corresponding AuthorLuhmann A.J.
AffiliationDepartment of Earth Sciences, University of Minnesota
Recommended Citation
GB/T 7714
Luhmann A.J.,Kong Xiang-Zhao,Tutolo B.M.,et al. Permeability Reduction Produced by Grain Reorganization and Accumulation of Exsolved CO2 during Geologic Carbon Sequestration: A New CO2 Trapping Mechanism.[J]. Environmental Science & Technology,2013,47(1):242-251.
APA Luhmann A.J.,Kong Xiang-Zhao,Tutolo B.M.,Ding K.,Saar M.O.,&Seyfried W.E. Jr..(2013).Permeability Reduction Produced by Grain Reorganization and Accumulation of Exsolved CO2 during Geologic Carbon Sequestration: A New CO2 Trapping Mechanism..Environmental Science & Technology,47(1),242-251.
MLA Luhmann A.J.,et al."Permeability Reduction Produced by Grain Reorganization and Accumulation of Exsolved CO2 during Geologic Carbon Sequestration: A New CO2 Trapping Mechanism.".Environmental Science & Technology 47.1(2013):242-251.
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