鄂尔多斯盆地东部紫金山区块火成岩侵入引起的煤层气储层孔隙结构变化

IF 4.3 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
ACS Omega Pub Date : 2025-10-08 DOI:10.1021/acsomega.5c06706
Mengyao Li, , , Yidong Cai*, , , Dameng Liu, , , Zihao Wang, , , Hui Wang, , , Jiang Ke, , , Xiaobin Zhang, , , Xiaolei Sun, , and , Haipeng Wei, 
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引用次数: 0

摘要

火成岩侵入引起的异常热效应对深部煤层气勘探开发具有重要影响。与正常埋深煤相比,受火成岩侵入或岩浆热液影响的煤的煤层气储层物性发生明显变化。受火成岩侵入热效应影响的煤储层与未受干扰的正常储层之间的差异有待研究。本文选取了鄂尔多斯盆地东部紫金山区块4口距本溪组火成岩侵入体不同距离的煤层气探井8口煤。结果表明,火成岩侵入显著提高了煤的成熟度,导致煤的水分和灰分不规则增加,挥发分减少。它进一步促进了二次烃的生成,降低了白云岩的含量,并富集了热液矿物/元素。火成岩侵入与煤中孔隙的关系:2 nm的超微孔对总孔隙体积(PV)和比表面积(SSA)贡献最大,火成岩侵入使超微孔的孔径分布更加复杂,主要导致微孔和小孔的发育。最后,分析了火成岩侵入对煤孔隙复杂性的影响,发现岩浆热的影响使得中、大孔隙的分形维数随着离火成岩侵入越近而减小,而微孔和小孔隙的分形维数则显著增大,这使得煤中孔隙的表面积增大,孔隙表面变得粗糙。该研究有助于认识岩浆热效应影响下深部煤层气储层的多尺度孔隙结构,为高变质煤区天然气优化生产提供重要的理论和技术指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pore Structure Variation of the Coalbed Methane Reservoir caused by Igneous Intrusion in the Zijinshan Block of the Eastern Ordos Basin, North China

The abnormal thermal effect caused by igneous intrusion has an important influence on the exploration and development of deep coalbed methane. Compared with coals with normal burial depth, coals affected by igneous intrusion or magmatic hydrothermal fluids have obvious changes in reservoir properties of coalbed methane (CBM). The differences between coal reservoirs affected by igneous intrusion thermal effects and undisturbed normal reservoirs need to be investigated. In this work, eight coals from four CBM exploration wells at different distances from igneous intrusion in the Benxi formation were selected from the Zijinshan block of the eastern Ordos Basin. Results indicate that igneous intrusion significantly elevated coal maturity while causing irregular increases in moisture and ash content alongside decreased volatile matter. It further promoted secondary hydrocarbon generation, reduced dolomite content, and enriched hydrothermal minerals/elements. Furthermore, the relationship between the igneous intrusion and the pores in the coals was revealed: <2 nm super micropores contribute the most to the pore volume (PV) and specific surface area (SSA) of the total pore space, and igneous intrusion makes the pore size distribution of the super micropores more complex, which mainly leads to the development of micropores and small pores. Finally, the influence of igneous intrusion on the pore complexity of the coal was analyzed, and it was found that the influence of magmatic heat makes the fractal dimension of medium and large pores decreases with the closer distance to the igneous intrusion, but the fractal dimension of micropores and small pores increases significantly, which increases the surface area of the pores in the coal and leads to the pore surface to be rougher. This study may help understand the multiscale pore structure of deep coalbed methane reservoirs influenced by magmatic thermal effects, providing critical theoretical and technical guidance for optimizing natural gas production in high metamorphic coal regions.

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来源期刊
ACS Omega
ACS Omega Chemical Engineering-General Chemical Engineering
CiteScore
6.60
自引率
4.90%
发文量
3945
审稿时长
2.4 months
期刊介绍: ACS Omega is an open-access global publication for scientific articles that describe new findings in chemistry and interfacing areas of science, without any perceived evaluation of immediate impact.
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