燕辽盆地中元古代下马岭组有机质成藏机制及烃源岩潜力

IF 1.9 4区 工程技术 Q4 ENERGY & FUELS
Ziwen Jiang, C. Cai
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引用次数: 0

摘要

华北克拉通燕辽盆地中元古代下马岭组(~ 1.4 Ga)被认为是页岩油气勘探和生产的一套有前景的地层。采用扫描电镜、岩石热解、元素地球化学等方法,探讨下马岭组有机质成藏机制及生排烃特征。多种地球化学指标表明,下马岭组3 - 1单元沉积在高湿-半干旱交替的气候条件下,陆源侵流强度由强到弱。3号机组和1号机组上部的底水氧化还原条件为波动氧条件,2号机组和1号机组下部为缺氧条件。有机质的硫化作用是3单元TOC含量高的主要原因。而单元2和单元1下部TOC含量高是由于水柱缺氧所致。2单元及1单元下部成熟度低,氢指数(HI)值高,存在Ⅰ型、II1型和II2型干酪根,具有显著的页岩油潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Organic matter accumulation mechanisms and source rock potential of the Mesoproterozoic Xiamaling Formation, Yanliao Basin, North China
The Mesoproterozoic Xiamaling Formation (∼1.4 Ga) is considered to be a set of promising strata for shale oil and gas exploration and production in the Yanliao Basin, North China Craton. This study aimed to investigate the organic matter accumulation mechanism, and hydrocarbon generation and expulsion characteristics of the Xiamaling Formation, using various methods, including scanning electron microscopy, rock-eval pyrolysis, and elemental geochemistry. Multiple geochemical proxies indicate that Unit 3—Unit 1 of the Xiamaling Formation was deposited in a climate that alternated between highly humid and semiarid conditions, with the strong-to-weak terrigenous influx. The redox conditions of bottom water were undulatory oxic in Unit 3 and the upper part of Unit 1, but anoxic in Unit 2 and the lower part of Unit 1. Sulfurization of organic matter was the main reason for the high TOC content in Unit 3. However, the high TOC content in Unit 2 and the lower part of Unit 1 was caused by an oxygen-deficient water column. Unit 2 and the lower part of Unit 1 exhibit a significant shale oil potential owing to low maturity, high hydrogen index (HI) values, and prevalence of type Ⅰ, II1, and II2 kerogens.
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来源期刊
Energy Exploration & Exploitation
Energy Exploration & Exploitation 工程技术-能源与燃料
CiteScore
5.40
自引率
3.70%
发文量
78
审稿时长
3.9 months
期刊介绍: Energy Exploration & Exploitation is a peer-reviewed, open access journal that provides up-to-date, informative reviews and original articles on important issues in the exploration, exploitation, use and economics of the world’s energy resources.
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