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胜利油田火山岩辉石中岩浆包裹体成分及有关成因问题
引用本文:赫英,廖永胜.胜利油田火山岩辉石中岩浆包裹体成分及有关成因问题[J].地质论评,2000,46(6):638-644.
作者姓名:赫英  廖永胜
作者单位:1. 西北大学地质系,西安,710069
2. 胜利石油管理局地质研究院,山东东营,257015
3. 中国地质调查局西安地质矿产研究所,710054
基金项目:本文为国家973项目(编号 G1999043211)和国家自然科学基金资助项目(编号 49573186,49972034)的成果。
摘    要:对胜利油田火山岩中辉石及其中岩浆包裹体成分的研究表明:CO2气藏区和非CO2气藏区新生代火山岩辉石及其中岩浆包裹体成分有明显区别,前者中辉石为普通辉石,成分相对富SiO2,而贫Al2O3、TiO2、MgO和挥发成分;而后者中辉石为透辉石,成分相对贫SiO2和挥发份,而富Al2O3、TiO2和MgO。前者岩浆包裹体玻相中富含CO2,包裹体中的金属子矿物多为黄铁矿;而后者岩浆包裹体玻相中贫CO2;包裹

关 键 词:岩浆包裹体  火山岩  辉石  胜利油田  二氧化碳气藏

Composition and Significance of Magmatic Inclusions in Pyroxenes of
He Ying Zhu Xingguo Liao Yongsheng Xu Peicang Liu Wenfeng Wang Zhihai.Composition and Significance of Magmatic Inclusions in Pyroxenes of[J].Geological Review,2000,46(6):638-644.
Authors:He Ying Zhu Xingguo Liao Yongsheng Xu Peicang Liu Wenfeng Wang Zhihai
Institution:He Ying Zhu Xingguo Liao Yongsheng Xu Peicang Liu Wenfeng Wang Zhihai Department of Geology,Northwest University,Xi'an,Shaanxi, Research Institute of Geology,Shengli Petroleum Administration,Dongying,Shandong, Xi'an Research Insti
Abstract:This paper reports a study of the composition and significance of magmatic inclusions in pyroxene of volcanic rocks from the Shengli Oilfield. There are significant differences in the composition of pyroxene and its magmatic inclusions between CO2 gas fields and non-CO2 gas fields: for the former, the pyroxene is augite characterized by higher SiO2, lower Al2O3, TiO2 and volatile components, the metallic micro-mineral in the magmatic inclusions is pyrite; but for the latter, the pyroxene is diopside characterized by lower SiO2 and volatile components, higher Al2O3, TiO2 and volatile component, the metallic micro-mineral in the magmatic inclusions is anatase. Also in the former, a high CO2 content is seen in the glass phase of the magmatic inclusions. The results show that the glass of the magmatic inclusions has higher Al2O3, Na2O, K2O and volatile components than the pyroxene, and the brown glass of the magmatic inclusions has higher Al2O3, Na2O, K2O and CO2 contents than the colorless glass, suggesting an enrichment of CO2 with the evolution of the magma. This study has contributed to a better understanding of the evolution of magma and the magma-degassing mechanism of the formation of CO2 gas pools in the Shengli Oilfield.
Keywords:magmatic inclusion  volcanic rocks  pyroxene  CO2 gas pool  Shengli Oilfield  
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