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Article

Characteristics and Differences Analysis for Thermal Evolution of Wufeng–Longmaxi Shale, Southern Sichuan Basin, SW China

1
Hubei Cooperative Innovation Center of Unconventional Oil and Gas, Yangtze University, Wuhan 430100, China
2
Ministry of Education Key Laboratory of Oil and Gas Resources and Exploration Technology, Yangtze University, Wuhan 430100, China
*
Author to whom correspondence should be addressed.
Minerals 2022, 12(7), 906; https://doi.org/10.3390/min12070906
Submission received: 30 May 2022 / Revised: 17 July 2022 / Accepted: 18 July 2022 / Published: 19 July 2022

Abstract

The marine shale of the Upper Ordovician Wufeng Formation–Lower Silurian Longmaxi Formation is the main source rock and the target of shale gas exploration in the southern Sichuan Basin. The maturity of organic matter (OM) is a vital indicator for source rock evaluation. Due to the lack of vitrinite, the organic matter maturity of the Wufeng–Longmaxi Formations in the southern Sichuan Basin is difficult to accurately evaluate. In total, 33 core samples of the Wufeng–Longmaxi Formations in the southern Sichuan Basin were selected to observe the optical characteristics of solid bitumen and graptolites and measure their random reflectance. Simultaneously, Raman spectroscopic parameters of kerogen were also used to quantitatively analyze the change in maturity. By using Raman spectroscopic parameters as mediators, conversion equations between graptolite random reflectance (GRor) and equivalent vitrinite reflectance (EqVRo) were established. Taking the calculation results of EqVRo as constraints, the tectono-thermal evolution history of Wufeng–Longmaxi Shale in the southern Sichuan Basin is constructed through basin modelling. The results show that the maturity of Wufeng–Longmaxi Shale in the western Changning, Luzhou-western Chongqing, eastern Changning and Weiyuan areas decreases successively. The EqVRo falls in the ranges of 3.61%~3.91%, 2.92%~3.57%, 3.08%~3.25%, 2.41%~3.12%, and the average EqVRo is 3.73%, 3.30%, 3.18% and 2.80%, respectively. Thermal evolution in western Changning was controlled by the thermal effect of the Emeishan mantle plume and paleo-burial depth, while the thermal evolution of other areas was mainly controlled by paleo-burial depth. This study provides a reliable parameter for the evaluation of thermal maturity and makes a more accurate calibration of the maturity of the Wufeng–Longmaxi Formations in the southern Sichuan Basin; it also expounds the factors for the differences in thermal evolution in different parts of the area.
Keywords: graptolite; solid bitumen; Raman spectroscopy; basin modelling; thermal maturity; Wufeng–Longmaxi Formations; Sichuan Basin graptolite; solid bitumen; Raman spectroscopy; basin modelling; thermal maturity; Wufeng–Longmaxi Formations; Sichuan Basin

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MDPI and ACS Style

Lyu, P.; Meng, J.; Pan, R.; Yi, X.; Yue, T.; Zhang, N. Characteristics and Differences Analysis for Thermal Evolution of Wufeng–Longmaxi Shale, Southern Sichuan Basin, SW China. Minerals 2022, 12, 906. https://doi.org/10.3390/min12070906

AMA Style

Lyu P, Meng J, Pan R, Yi X, Yue T, Zhang N. Characteristics and Differences Analysis for Thermal Evolution of Wufeng–Longmaxi Shale, Southern Sichuan Basin, SW China. Minerals. 2022; 12(7):906. https://doi.org/10.3390/min12070906

Chicago/Turabian Style

Lyu, Peixi, Jianghui Meng, Renfang Pan, Xuefei Yi, Tao Yue, and Ning Zhang. 2022. "Characteristics and Differences Analysis for Thermal Evolution of Wufeng–Longmaxi Shale, Southern Sichuan Basin, SW China" Minerals 12, no. 7: 906. https://doi.org/10.3390/min12070906

APA Style

Lyu, P., Meng, J., Pan, R., Yi, X., Yue, T., & Zhang, N. (2022). Characteristics and Differences Analysis for Thermal Evolution of Wufeng–Longmaxi Shale, Southern Sichuan Basin, SW China. Minerals, 12(7), 906. https://doi.org/10.3390/min12070906

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