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中国新疆阜康矿区煤体自然解吸特征及影响因素

Characteristics and Influence Factors of Natural Desorption in Coal Bodies from Fukang Mining Area, Xinjiang, China.

作者信息

Du Liang, Huang Xuchao, Wang Zhengshuai, Cheng Chuanjian, Maimaitizhuma Kuwanixibieke, Wang Haichao, Wang Zhenzhi, Zeng Zhiwei, Luo Bing, Yang Mengmeng, Ouyang Zheyuan, Dou Wei, Zhang Beixi, Li Teng

机构信息

Xinjiang Key Laboratory for Geodynamic Processes and Metallogenic Prognosis of Central Asian Orogenic Belt, Xinjiang University, Urumqi 830047, China.

School of Geological and Mining Engineering, Xinjiang University, Urumqi 830047, China.

出版信息

ACS Omega. 2023 Oct 20;8(43):40417-40432. doi: 10.1021/acsomega.3c04911. eCollection 2023 Oct 31.

Abstract

Coal body desorption characteristics are one of the key factors that influence the development of coalbed methane (CBM). In this study, 91 coal core samples from 11 CBM wells in the Fukang mining area were collected from Xinjiang, China, and the coal quality, high-pressure mercury compression, gas content, and natural desorption characteristics measurements were launched. With the detailed analyses of the differences in cumulative desorption volume, desorption ratio, and on-site average desorption rate for the coal samples with different body structures and macrolithotypes, the influence of the maximum reflectance of vitrinite, microscopic coal rock composition, and coal quality and pore characteristics on CBM desorption characteristics were discussed. The results showed that the cumulative desorption volume, desorption ratio, and desorption rate of cataclastic structure-bright coal are higher than those of primary structure-semibright coal. With the increase of and vitrinite content, the adsorption capacity of coal increases, and the increased methane concentration difference during desorption leads to an increase in cumulative desorption volume and on-site average desorption rate. The higher contents of moisture and ash yield would occupy the adsorption sites and hinder gas diffusion, which would decrease the desorption of coalbed methane. The greater porosity/pore volume ratio of medium and large pores can enhance the connectivity of pores, which increases the desorption ratio and the average desorption rate, while the higher micropore porosity/pore volume ratio can increase the gas adsorption space and the cumulative desorption volume. The pore characteristics have the most significant effect on the cumulative desorption volume and desorption ratio. The results of the study can help guide coal mine gas management and CBM development from middle-and low-rank coal reservoirs in Xinjiang.

摘要

煤体解吸特征是影响煤层气(CBM)开发的关键因素之一。本研究从中国新疆阜康矿区的11口煤层气井中采集了91个煤芯样品,并开展了煤质、高压压汞、瓦斯含量及自然解吸特征测定。通过详细分析不同体结构和宏观煤岩类型煤样的累计解吸量、解吸率和现场平均解吸速率的差异,探讨了镜质组最大反射率、微观煤岩组成、煤质及孔隙特征对煤层气解吸特征的影响。结果表明,碎裂结构亮煤的累计解吸量、解吸率和解吸速率均高于原生结构半亮煤。随着镜质组含量的增加,煤的吸附能力增强,解吸过程中甲烷浓度差增大,导致累计解吸量和现场平均解吸速率增加。水分和灰分产率较高会占据吸附位点并阻碍气体扩散,从而降低煤层气的解吸。中、大孔隙的孔隙率/孔容比越大,可增强孔隙连通性,提高解吸率和平均解吸速率,而微孔孔隙率/孔容比越高,可增加气体吸附空间和累计解吸量。孔隙特征对累计解吸量和解吸率的影响最为显著。研究结果有助于指导新疆中低煤阶煤储层的煤矿瓦斯治理和煤层气开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e4a/10620778/d8aafcec425a/ao3c04911_0001.jpg

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