The chemical compositions and abundances of volatiles in the Siberian large igneous province: Constraints on magmatic CO2 and SO2 emissions into the atmosphere | |
Tang, Qingyan1; Zhang, Mingjie1; Li, Chusi2; Yu, Ming1; Li, Liwu3 | |
刊名 | CHEMICAL GEOLOGY
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2013-02-15 | |
卷号 | 339页码:84-91 |
关键词 | End-Permian mass extinction Magmatic volatiles Volcanic degassing Siberian large igneous province |
ISSN号 | 0009-2541 |
DOI | 10.1016/j.chemgeo.2012.08.031 |
文献子类 | Article |
英文摘要 | The Siberian large igneous province (SLIP) is known to be synchronous with the most severe mass extinction on the Earth at the end of Permian. The viability of the SLIP as a trigger for the mass extinction depends crucially on the total amounts of important volatiles such as CO2 and SO2 emitted from the SLIP into the atmosphere. The chemical compositions and abundances of volatiles in picrite and gabbroic rocks of the SLIP have been determined by a vacuum stepwise heating mass spectrometer system. The volatiles released at temperatures <400 degrees C from mineral separates are interpreted to derive from secondary fluid inclusions and are therefore not included in the summation of primary volatiles which had been primarily entrapped in the minerals from magma. The primary volatiles released from different types of samples from the SLIP are characterized by dominant H2O with high contents of CO2, SO2 and H-2, plus detectable He. The total amounts of primary volatiles in the picrite are 19,991 mm(3).STP/g (STP-standard temperature and pressure) H2O, 331 CO2, 202 H-2, 28 CO, 13 SO2 and 2 H2S. The total amounts of primary volatiles in the gabbroic rocks are 2869 mm(3).STP/g H2O, 131 SO2, 120 H-2, 85 CO2, 79 H2S and 16 CO. These data, together with other important constraints from literatures, are used to calculate the total amounts of volatiles emitted from the SLIP into the atmosphere. In our mass balance calculations we used the abundances of CO2 and SO2 in melt inclusions in olivine phenocrysts from the SLIP determined previously by other researchers to represent their initial concentrations in magma before degassing, and our new data for the SLIP picrite to represent the volatile compositions of magma (basalt) after eruption. Our results for the gabbroic rocks are used to estimate the proportions of volatiles that are still retained in the subvolcanic intrusions of the SLIP. The results reveal that the total amounts of important volatiles emitted from the SLIP are 8.5 x 10(7) Tg CO2, 4.4x 10(6) Tg CO, 7.0 x 10(6) Tg H2S and 6.8 x 10(7) Tg SO2 (Tg, Trillion grams). These values are similar to the previous estimates using different methods by other researchers. Our data support a popular notion that the end-Permian mass extinction on the Earth was caused by the emission of enormous amounts of volatiles from the SLIP into the atmosphere. (C) 2012 Elsevier B.V. All rights reserved. |
WOS关键词 | CONTINENTAL FLOOD BASALTS ; PERMIAN-TRIASSIC BOUNDARY ; ORE-BEARING INTRUSIONS ; CARBON-DIOXIDE ; MASS EXTINCTIONS ; NORILSK REGION ; MANTLE PLUME ; LITHOSPHERIC MANTLE ; MELT INCLUSIONS ; RAPID ERUPTION |
WOS研究方向 | Geochemistry & Geophysics |
语种 | 英语 |
出版者 | ELSEVIER SCIENCE BV |
WOS记录号 | WOS:000316423200009 |
资助机构 | China 973 Program(2012CB214701) ; China 973 Program(2012CB214701) ; NSF of China(41072056 ; NSF of China(41072056 ; MOE Major Project(311010) ; MOE Major Project(311010) ; China Geological Survey(1212011121092) ; China Geological Survey(1212011121092) ; 40772058 ; 40772058 ; 91014003) ; 91014003) ; China 973 Program(2012CB214701) ; China 973 Program(2012CB214701) ; NSF of China(41072056 ; NSF of China(41072056 ; MOE Major Project(311010) ; MOE Major Project(311010) ; China Geological Survey(1212011121092) ; China Geological Survey(1212011121092) ; 40772058 ; 40772058 ; 91014003) ; 91014003) ; China 973 Program(2012CB214701) ; China 973 Program(2012CB214701) ; NSF of China(41072056 ; NSF of China(41072056 ; MOE Major Project(311010) ; MOE Major Project(311010) ; China Geological Survey(1212011121092) ; China Geological Survey(1212011121092) ; 40772058 ; 40772058 ; 91014003) ; 91014003) ; China 973 Program(2012CB214701) ; China 973 Program(2012CB214701) ; NSF of China(41072056 ; NSF of China(41072056 ; MOE Major Project(311010) ; MOE Major Project(311010) ; China Geological Survey(1212011121092) ; China Geological Survey(1212011121092) ; 40772058 ; 40772058 ; 91014003) ; 91014003) |
内容类型 | 期刊论文 |
源URL | [http://ir.iggcas.ac.cn/handle/132A11/87766] ![]() |
专题 | 中国科学院地质与地球物理研究所 |
通讯作者 | Zhang, Mingjie |
作者单位 | 1.Lanzhou Univ, Sch Earth Sci, Key Lab Western Chinas Environm Syst MOE, Lanzhou 730000, Peoples R China 2.Indiana Univ, Dept Geol Sci, Bloomington, IN 47405 USA 3.Chinese Acad Sci, Inst Geol & Geophys, Key Lab Petr Resource Res, Lanzhou 730000, Peoples R China |
推荐引用方式 GB/T 7714 | Tang, Qingyan,Zhang, Mingjie,Li, Chusi,et al. The chemical compositions and abundances of volatiles in the Siberian large igneous province: Constraints on magmatic CO2 and SO2 emissions into the atmosphere[J]. CHEMICAL GEOLOGY,2013,339:84-91. |
APA | Tang, Qingyan,Zhang, Mingjie,Li, Chusi,Yu, Ming,&Li, Liwu.(2013).The chemical compositions and abundances of volatiles in the Siberian large igneous province: Constraints on magmatic CO2 and SO2 emissions into the atmosphere.CHEMICAL GEOLOGY,339,84-91. |
MLA | Tang, Qingyan,et al."The chemical compositions and abundances of volatiles in the Siberian large igneous province: Constraints on magmatic CO2 and SO2 emissions into the atmosphere".CHEMICAL GEOLOGY 339(2013):84-91. |
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