Technical Report (Special Issue)
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10.1016/j.jgsce.2025.205779Li, Y., Liu, W., Song, D., Ren, Z., Wang, H., and Guo, X., 2023. Full-scale pore characteristics in coal and their influence on the adsorption capacity of coalbed methane, Environmental Science and Pollution Research, 30, p.72187-72206.
10.1007/s11356-023-27298-2Liao, Q., Zhou, J., Xian, X., Yang, K., Zhang, C., Dong, Z., and Yin, H., 2023. Competition adsorption of CO2/CH4 in shale: Implications for CO2 sequestration with enhanced gas recovery, Fuel, 339, 127400.
10.1016/j.fuel.2023.127400Liu, D., Li, Y., and Agarwal, R., 2020. Evaluation of CO2 storage in a shale gas reservoir compared to a deep saline aquifer in the ordos basin of China, Energies, 13(13), 3397.
10.3390/en13133397Meng, S., Zhang, F., Tao, J., Jin, X., Xu, J., and Liu, H., 2024. Carbon storage potential of shale reservoirs based on CO2 fracturing technology, Engineering, 48, p.121-127.
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Pandey, R. and Harpalani, S., 2024. Understanding poromechanical response of a biogenic coalbed methane reservoir, International Journal of Coal Science & Technology, 11, 31.
10.1007/s40789-024-00686-wRamadhan, R., Tapanya, C., Akamine, T., Leelasukseree, C., and Tangparitkul, S., 2024. CO2 trapping dynamics in tight sandstone: Insights into trapping mechanisms in Mae Moh’s reservoir, Journal of Environmental Management, 370, 122442.
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10.1016/j.energy.2023.127657Teng, T., Yang, S., Zhao, Y., Cui, L., and Zhang, J., 2025. Quantitative determination of CH4 production and CO2 storage in coal mine goaf: A CO2-ECBM recovery model that considers zonal permeability, Green and Smart Mining Engineering, 2(2), p.98-108.
10.1016/j.gsme.2025.05.001Wang, L., Wei, B., You, J., Pu, W., Tang, J., and Lu, J., 2023. Performance of a tight reservoir horizontal well induced by gas huff–n–puff integrating fracture geometry, rock stress-sensitivity and molecular diffusion: A case study using CO2, N2 and produced gas, Energy, 263, 125696.
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10.1016/j.petsci.2025.03.043Wang, H., Fan, N., Deng, C., and Gao, Z., 2025c. Numerical study of optimal injected gas mixture proportions for enhancing coalbed methane recovery, ACS omega, 10(7), p.6689-6706.
10.1021/acsomega.4c0820540028054PMC11865967Wei, J., Zhang, J., and Yong, Z., 2024. Characteristics of tight gas reservoirs in the xujiahe formation in the western sichuan depression: A systematic review, Energies, 17(3), 587.
10.3390/en17030587Xie, W., Wang, M., Chen, S., Vandeginste, V., Yu, Z., and Wang, H., 2022. Effects of gas components, reservoir property and pore structure of shale gas reservoir on the competitive adsorption behavior of CO2 and CH4, Energy, 254, 124242.
10.1016/j.energy.2022.124242Yang, H., Wang, H., Wang, X., Xin, Y., He, L., Jiao, Z., and Zou, J., 2025. Experimental and modeling assessment of CO2 EOR and storage performances in tight oil reservoir, Yanchang oilfield, China, Journal of CO2Utilization, 97, 103125.
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10.1016/j.fuel.2024.131948- Publisher :The Korean Society of Mineral and Energy Resources Engineers
- Publisher(Ko) :한국자원공학회
- Journal Title :Journal of the Korean Society of Mineral and Energy Resources Engineers
- Journal Title(Ko) :한국자원공학회지
- Volume : 63
- No :1
- Pages :110-125
- Received Date : 2026-01-05
- Revised Date : 2026-01-27
- Accepted Date : 2026-01-28
- DOI :https://doi.org/10.32390/ksmer.2026.63.1.110


Journal of the Korean Society of Mineral and Energy Resources Engineers







