Petroleum Science >2023, Issue2: - DOI: https://doi.org/10.1016/j.petsci.2022.10.002
Hydrocarbon generation and organic matter enrichment of limestone in a lacustrine mixed sedimentary environment: A case study of the Jurassic Da'anzhai member in the central Sichuan Basin, SW China Open Access
文章信息
作者:Qi-Lu Xu, Bo Liu, Xin-Min Song, Qing-Ping Wang, Xu-Dong Chen, Yang Li, Yu Zhang
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引用方式:Qi-Lu Xu, Bo Liu, Xin-Min Song, Qing-Ping Wang, Xu-Dong Chen, Yang Li, Yu Zhang, Hydrocarbon generation and organic matter enrichment of limestone in a lacustrine mixed sedimentary environment: A case study of the Jurassic Da'anzhai member in the central Sichuan Basin, SW China, Petroleum Science, Volume 20, Issue 2, 2023, Pages 670-688, https://doi.org/10.1016/j.petsci.2022.10.002.
文章摘要
Abstract: The hydrocarbon generation effectiveness of lacustrine limestone has been gradually proven. The Da'anzhai Member limestone is the most important Jurassic oil-producing layer in the central Sichuan Basin, and the characteristics of limestone organic matter are often overlooked. 175 typical samples of different lithologies from 19 wells were systematically analyzed to determine hydrocarbon generation, controlling factors and formation models by analyses of organic matter, minerals, elements, isotopes and petrography. (1) Lacustrine paleoenvironments can be beneficial for the enrichment of organic matter in limestone. A favorable environment would be a quiet, low-energy zone in a warm and humid climate with an appropriate supply of terrestrial inputs. (2) Lacustrine limestone has a higher organic matter conversion rate, and a lower hydrocarbon generation threshold than argillaceous source rocks, and can be effective source rock. (3) The mud-bearing shell limestone from the forebeach to the lake slope is thick, with a relatively high abundance of organic matter, and its hydrocarbon generation is effective. This study can clarify the effectiveness and enrichment of the limestone organic matters in the study area, and contribute to an understanding of hydrocarbon generation for full-rock system in a lacustrine mixed sedimentary environment.
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Keywords: Lacustrine limestone; Full-rock system; Organic matter evaluation; Paleoenvironments; Lake evolution; Terrestrial inputs