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Interactions between basalts and oil source rocks in rift basins: CO2 generation
引用本文:金强,许丽,万从礼,曾怡.Interactions between basalts and oil source rocks in rift basins: CO2 generation[J].中国地球化学学报,2007,26(1):58-65.
作者姓名:金强  许丽  万从礼  曾怡
作者单位:China University of Petroleum Shandong,China University of Petroleum,Shandong,Geological Institute of Petroleum Transportation Company of the Shengli Oilfield,Ltd.SINOPEC,China University of Petroleum,Shandong,Dongying 257061,China,Dongying 257061,China Geological Institute of Petroleum Transportation Company of the Shengli Oilfield,Ltd.SINOPEC,Dongying 257061,China,Dongying 257061,China,Dongying 257061,China
基金项目:The authors wish to thank them all for their help and assistance. This research project is funded by the National Natural Science Foundation of China (Grant No. 40272061).
摘    要:Basalts interbedded with oil source rocks are discovered frequently in rift basins of eastern China, where CO2 is found in reservoirs around or within basalts, for example in the Binnan reservoir of the Dongying Depression. In the reservoirs, CO2 with heavy carbon isotopic composition (δ13C>-10‰ PDB) is in most cases accounts for 40% of the total gas reserve, and is believed to have resulted from degassing of basaltic magma from the mantle. In their investigations of the Binnan reservoir, the authors suggested that the CO2 would result from interactions between the source rocks and basalts. As the source rocks around basalts are rich in carbonate minerals, volcanic minerals, transition metals and organic matter, during their burial history some of the transition metals were catalyzed on the thermal degradation of organic matter into hydrocarbons and on the decomposition of carbonate minerals into CO2, which was reproduced in thermal simulations of the source rocks with the transition metals (Ni and Co). This kind of CO2 accounts for 55%-85% of the total gas reserve generated in the process of thermal simulation, and its δ13C values range from -11‰- -7.2‰ PDB, which are very similar to those of CO2 found in the Binnan reservoir. The co-generation of CO2 and hydrocarbon gases makes it possible their accumulation together in one trap. In other words, if the CO2 resulted directly from degassing of basaltic magma or was derived from the mantle, it could not be accumulated with hydrocarbon gases because it came into the basin much earlier than hydrocarbon generation and much earlier than trap formation. Therefore, the source rocks around basalts generated hydrocarbons and CO2 simultaneously through catalysis of Co and Ni transition metals, which is useful for the explanation of co-accumulation of hydrocarbon gases and CO2 in rift basins in eastern China.

关 键 词:裂谷盆地  玄武岩  富油源岩  相互作用  二氧化碳形成
收稿时间:2005-10-14
修稿时间:2006-02-13
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