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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Mixed oils derived from multiple source rocks in the Cainan oilfield, Junggar Basin, Northwest China. Part I: genetic potential of source rocks, features of biomarkers and oil sources of typical crude oils
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Mixed oils derived from multiple source rocks in the Cainan oilfield, Junggar Basin, Northwest China. Part I: genetic potential of source rocks, features of biomarkers and oil sources of typical crude oils

机译:来自西北部准Basin尔盆地菜南油田多种烃源岩的混合油。第一部分:烃源岩的遗传潜力,生物标志物的特征和典型原油的油源

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There are four generative hydrocarbon source rocks of Carboniferous, Permian, Triassic, and Jurassic age in the east of the Junggar Basin. Geochemical study of these has shown that Permian source rocks, which contain high abundances of organic matter with good genetic potential, are the best hydrocarbon source rocks in this area. Triassic source rocks are shown to be next best in these aspects. The abundance of mainly type III organic matter in Jurassic and Carboniferous source rocks varies greatly and the genetic potential of these rocks is lower than that of Permian and Triassic rocks. These four source rock units in the Fukang sag all reach a mature to highly mature stage of thermal generation, and have generated large amounts of oil. Permian extracts are isotopically light with VC ratios generally less than -29parts per thousand. They have low Pr/Ph ratios, are rich in beta-carotane, tricyclic terpanes, gammacerane and C-28 and C-29 steranes, contain almost no diasteranes and have a low content of C-27 steranes. The carbon isotopic composition of the Triassic extracts is similar to that of the Permian, but they are characteristically rich in Ts, C29Ts and diahopanes, and have low gammacerane contents. The carbon isotopic composition of Jurassic extracts is noticeably heavier than that of Permian and Triassic extracts, with delta(13)C being generally greater than -28parts per thousand. Jurassic source rocks have Pr/Ph ratios generally >3.01 and are rich in pentacyclic hopanes and C-29 steranes, but poor in tricyclic terpanes, gammacerane and C-27 and C-28 steranes. Using carbon isotopic and biomarker data, the crude oils in this area can be divided into five groups. The first group of crude oils (A) is derived from the Permian, the second group (B) from the Triassic, and the third group (C) from the Jurassic source rocks. The geochemical properties of,the fourth group (D) of oils are intermediate between the properties of typical Permian, Triassic and Jurassic oils and they are interpreted as mixed oils derived from multiple source rocks, including the Permian, Triassic and Jurassic. The fifth group of crude oils (E) is particularly isotopically heavy and originates from Carboniferous source rocks. (C) 2003 Elsevier Science Ltd. All rights reserved. [References: 55]
机译:准gar尔盆地东部有四个石炭纪,二叠纪,三叠纪和侏罗纪生成的烃源岩。地球化学研究表明,二叠纪烃源岩是该地区最好的烃类烃源,它含有丰富的有机质,具有良好的遗传潜力。在这些方面,三叠纪烃源岩被认为是次佳的。侏罗系和石炭系烃源岩中主要为Ⅲ类有机质的丰度变化很大,且其成矿潜力低于二叠纪和三叠纪。阜康凹陷的这四个烃源岩单元都达到了成熟至高度成熟的生热阶段,并产生了大量的石油。二叠纪提取物是同位素轻的,VC比通常小于-29份/千份。它们具有低的Pr / Ph比,富含β-胡萝卜素,三环萜烯,γ-甘油和C-28和C-29甾烷,几乎不包含非甾烷,并且C-27甾烷的含量低。三叠纪提取物的碳同位素组成与二叠纪的碳同位素组成相似,但它们的特征是富含Ts,C29Ts和二ahopanes,且γ-角ane烷含量低。侏罗纪提取物的碳同位素组成比二叠纪和三叠纪提取物的碳同位素组成明显重,δ(13)C通常大于-28千分之一。侏罗纪烃源岩的Pr / Ph比通常> 3.01,富含五环hop烷和C-29甾烷,而三环萜烯,γ-癸烷和C-27和C-28甾烷则较差。利用碳同位素和生物标记数据,该地区的原油可分为五类。第一组原油(A)来自二叠纪,第二组(B)来自三叠纪,第三组(C)来自侏罗纪烃源岩。第四类(D)油的地球化学性质介于典型的二叠纪,三叠纪和侏罗纪油的性质之间,并且被解释为衍生自包括二叠纪,三叠纪和侏罗纪在内的多种烃源岩的混合油。第五类原油(E)的同位素特别重,起源于石炭系烃源岩。 (C)2003 Elsevier ScienceLtd。保留所有权利。 [参考:55]

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