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风化作用对烃源岩地球化学特征的影响——以吐哈盆地石炭系—下二叠统烃源岩为例

高 岗1 刚文哲1 梁 浩2 焦立新2   

  1. 1 中国石油大学油气资源与探测国家重点实验室;2 中国石油吐哈油田公司
  • 出版日期:2014-12-15 发布日期:2014-12-15
  • 作者简介:高岗 (1966-),男,陕西高陵人,博士,2005 年毕业于中国矿业大学(北京),副教授,主要从事油气勘探与开发的科研 与教学工作。地址:北京市昌平区府学路18 号中国石油大学地球科学学院油气勘探与开发地质系,邮政编码:102249。 E-mail: gaogang2819@sina.com
  • 基金资助:
    国家自然科学基金碳酸盐岩缝合线有机质富集与油气运移作用研究(41372142)。

Weathering Effects on Source Rock Geochemical Characteristics: Taking Carboniferous –Lower Permian Source Rock in Turpan-Hami Basin for Instance

Gao Gang1, Gang Wenzhe1, Liang Hao2, Jiao Lixin2   

  1. 1 State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum; 2 PetroChina Turpan-Hami Oilfield Company
  • Online:2014-12-15 Published:2014-12-15

摘要: 通过吐哈盆地石炭系—下二叠统钻井和露头石灰岩与泥岩有机地球化学特征的对比,探讨了风化作用 对烃源岩有机质特征的影响。分析发现,泥岩的有机质丰度普遍高于石灰岩,作为烃源岩,泥岩好于石灰岩,主要与 沉积环境和物质来源不同有关。野外露头样品的保存条件明显比盆地深部烃源岩样品要差。同一层位同一岩性样品在 钻井和露头上出现的差异与风化作用有关。风化作用对可溶有机质的总体组成、中低分子烃类含量等均有影响,对可 溶有机质的破坏比对固体有机质要强。泥岩与石灰岩相比抵抗风化作用的能力更强。

关键词: 四川盆地;石炭系;黄龙组;地层尖灭带;天然气聚集; 气藏类型;岩性气藏;岩性&mdash, 构造复合气藏; 构造&mdash, 岩性&mdash, 地层复合气藏;天然气聚集模式;勘探潜力

Abstract: Based on drilling of Carboniferous-Lower Permian and comparison of the organic geochemical characteristics of outcrop limestone and mudstone in Turpan-Hami Basin, this paper elaborates the influence of weathering effects on organic characteristics of source rock. The analysis indicates that organic abundance of mudstone is generally higher than that of limestone. So far as hydrocarbon source rock is concerned, mudstone is better than limestone thanks to the different sedimentary environment and material sources. The conserving conditions for samples of fi eld outcrops are apparently poorer than those samples of source rock in the deep layers of the basin. If the samples from the same strata and the same lithology become different, at the drilling and outcropping, this phenomenon is related to weathering effects. Weathering effects can exert infl uence on total components of dissoluble organic matters and hydrocarbon content of middle and lower molecules, causing more serious damage on dissoluble organic matters than solid dissoluble organic matters. As compared to limestone, mudstone can more strongly resist weathering effects.