Investigations of methane adsorption characteristics on marine-continental transitional shales and gas storage capacity models considering pore evolution

IF 6 1区 工程技术 Q2 ENERGY & FUELS Petroleum Science Pub Date : 2024-08-01 DOI:10.1016/j.petsci.2024.03.027
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Abstract

Methane adsorption is a critical assessment of the gas storage capacity (GSC) of shales with geological conditions. Although the related research of marine shales has been well-illustrated, the methane adsorption of marine-continental transitional (MCT) shales is still ambiguous. In this study, a method of combining experimental data with analytical models was used to investigate the methane adsorption characteristics and GSC of MCT shales collected from the Qinshui Basin, China. The Ono-Kondo model was used to fit the adsorption data to obtain the adsorption parameters. Subsequently, the geological model of GSC based on pore evolution was constructed using a representative shale sample with a total organic carbon (TOC) content of 1.71%, and the effects of reservoir pressure coefficient and water saturation on GSC were explored. In experimental results, compared to the composition of the MCT shale, the pore structure dominates the methane adsorption, and meanwhile, the maturity mainly governs the pore structure. Besides, maturity in the middle-eastern region of the Qinshui Basin shows a strong positive correlation with burial depth. The two parameters, micropore pore volume and non-micropore surface area, induce a good fit for the adsorption capacity data of the shale. In simulation results, the depth, pressure coefficient, and water saturation of the shale all affect the GSC. It demonstrates a promising shale gas potential of the MCT shale in a deeper block, especially with low water saturation. Specifically, the economic feasibility of shale gas could be a major consideration for the shale with a depth of <800 m and/or water saturation >60% in the Yushe-Wuxiang area. This study provides a valuable reference for the reservoir evaluation and favorable block search of MCT shale gas.

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海洋-大陆过渡页岩甲烷吸附特性研究及考虑孔隙演化的储气能力模型
甲烷吸附是对页岩地质条件下天然气储存能力(GSC)的重要评估。虽然对海相页岩的相关研究已经非常深入,但海相-大陆过渡(MCT)页岩对甲烷的吸附仍不明确。本研究采用实验数据与分析模型相结合的方法,研究了中国沁水盆地采集的海相大陆过渡性页岩的甲烷吸附特征和 GSC。采用 Ono-Kondo 模型对吸附数据进行拟合,得到了吸附参数。随后,利用总有机碳(TOC)含量为 1.71% 的代表性页岩样品,构建了基于孔隙演化的 GSC 地质模型,并探讨了储层压力系数和含水饱和度对 GSC 的影响。实验结果表明,与 MCT 页岩的组成相比,孔隙结构对甲烷吸附起主导作用,而成熟度则主要制约孔隙结构。此外,沁水盆地中东部地区的成熟度与埋藏深度呈较强的正相关。微孔孔隙体积和非微孔表面积这两个参数对页岩的吸附容量数据具有良好的拟合作用。在模拟结果中,页岩的深度、压力系数和水饱和度都会影响 GSC。这表明 MCT 页岩在较深区块的页岩气潜力巨大,尤其是在水饱和度较低的情况下。具体来说,榆社-武乡地区页岩深度为 800 米和/或含水饱和度为 60% 的页岩,页岩气的经济可行性可能是一个主要考虑因素。这项研究为 MCT 页岩气的储层评价和有利区块的寻找提供了有价值的参考。
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来源期刊
Petroleum Science
Petroleum Science 地学-地球化学与地球物理
CiteScore
7.70
自引率
16.10%
发文量
311
审稿时长
63 days
期刊介绍: Petroleum Science is the only English journal in China on petroleum science and technology that is intended for professionals engaged in petroleum science research and technical applications all over the world, as well as the managerial personnel of oil companies. It covers petroleum geology, petroleum geophysics, petroleum engineering, petrochemistry & chemical engineering, petroleum mechanics, and economic management. It aims to introduce the latest results in oil industry research in China, promote cooperation in petroleum science research between China and the rest of the world, and build a bridge for scientific communication between China and the world.
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