Research on competitive adsorption characteristics of CO2 and CH4 in coal

Deep understanding of the competitive adsorption characteristics of CO2 and CH4 in coal seams is of great significance for achieving stable CO2 storage and efficient CH4 recovery. This study studies the competitive adsorption characteristics of CO2 and CH4 in coal under different conditions based on...

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Main Authors: Zhipeng ZHAO, Yuzhe XIAO, Hongping LI, Bingbing JIA, Liming QIU, Feng SHEN, Dazhao SONG, Zhenlei LI, Shengquan HE
Format: Article
Language:zho
Published: Editorial Office of Safety in Coal Mines 2025-07-01
Series:Meikuang Anquan
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Online Access:https://www.mkaqzz.com/cn/article/doi/10.13347/j.cnki.mkaq.20240271
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author Zhipeng ZHAO
Yuzhe XIAO
Hongping LI
Bingbing JIA
Liming QIU
Feng SHEN
Dazhao SONG
Zhenlei LI
Shengquan HE
author_facet Zhipeng ZHAO
Yuzhe XIAO
Hongping LI
Bingbing JIA
Liming QIU
Feng SHEN
Dazhao SONG
Zhenlei LI
Shengquan HE
author_sort Zhipeng ZHAO
collection DOAJ
description Deep understanding of the competitive adsorption characteristics of CO2 and CH4 in coal seams is of great significance for achieving stable CO2 storage and efficient CH4 recovery. This study studies the competitive adsorption characteristics of CO2 and CH4 in coal under different conditions based on the CO2 and CH4 competitive adsorption experimental system. The results showed that the adsorption rate of CO2 was faster than that of CH4 in single-component adsorption, and the coal body reached the saturation adsorption state more quickly. Under the effect of larger concentration gradient, CH4 can reverse displace the adsorbed CO2, but the displacing time is longer than that of CO2 displacing CH4. The competitive adsorption capacity of CO2 in the coal is stronger than that of CH4. Based on the boundary of 30 ℃, too low or too high temperature will reduce the gas adsorption rate and prolong the competitive adsorption process of CO2 and CH4 in the coal. The increase of gas injection flow rate makes the total gas pressure increase, which leads to the shortening of the competitive adsorption process. When the proportion of dominant adsorption gas in the gas composition is lower than that of weak adsorption gas, the competitive adsorption process will be inhibited, and vice versa, it will promote the process to be completed faster.
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publisher Editorial Office of Safety in Coal Mines
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spelling doaj-art-f2633db39bb74701b7d4e2340a86ab2b2025-08-20T02:36:16ZzhoEditorial Office of Safety in Coal MinesMeikuang Anquan1003-496X2025-07-01567121910.13347/j.cnki.mkaq.20240271lyMKAQ20240271Research on competitive adsorption characteristics of CO2 and CH4 in coalZhipeng ZHAO0Yuzhe XIAO1Hongping LI2Bingbing JIA3Liming QIU4Feng SHEN5Dazhao SONG6Zhenlei LI7Shengquan HE8CHN Energy Xinjiang Kuangou Mining Co., Ltd., Changji 831100, ChinaSchool of Resources and safety Engineering, University of Science and Technology Beijing, Beijing 100083, ChinaCHN Energy Xinjiang Kuangou Mining Co., Ltd., Changji 831100, ChinaCHN Energy Xinjiang Kuangou Mining Co., Ltd., Changji 831100, ChinaSchool of Resources and safety Engineering, University of Science and Technology Beijing, Beijing 100083, ChinaSchool of Resources and safety Engineering, University of Science and Technology Beijing, Beijing 100083, ChinaSchool of Resources and safety Engineering, University of Science and Technology Beijing, Beijing 100083, ChinaSchool of Resources and safety Engineering, University of Science and Technology Beijing, Beijing 100083, ChinaSchool of Resources and safety Engineering, University of Science and Technology Beijing, Beijing 100083, ChinaDeep understanding of the competitive adsorption characteristics of CO2 and CH4 in coal seams is of great significance for achieving stable CO2 storage and efficient CH4 recovery. This study studies the competitive adsorption characteristics of CO2 and CH4 in coal under different conditions based on the CO2 and CH4 competitive adsorption experimental system. The results showed that the adsorption rate of CO2 was faster than that of CH4 in single-component adsorption, and the coal body reached the saturation adsorption state more quickly. Under the effect of larger concentration gradient, CH4 can reverse displace the adsorbed CO2, but the displacing time is longer than that of CO2 displacing CH4. The competitive adsorption capacity of CO2 in the coal is stronger than that of CH4. Based on the boundary of 30 ℃, too low or too high temperature will reduce the gas adsorption rate and prolong the competitive adsorption process of CO2 and CH4 in the coal. The increase of gas injection flow rate makes the total gas pressure increase, which leads to the shortening of the competitive adsorption process. When the proportion of dominant adsorption gas in the gas composition is lower than that of weak adsorption gas, the competitive adsorption process will be inhibited, and vice versa, it will promote the process to be completed faster.https://www.mkaqzz.com/cn/article/doi/10.13347/j.cnki.mkaq.20240271co2 in coal bodymine gascompetitive adsorptioncarbon sequestrationsingle-component adsorption
spellingShingle Zhipeng ZHAO
Yuzhe XIAO
Hongping LI
Bingbing JIA
Liming QIU
Feng SHEN
Dazhao SONG
Zhenlei LI
Shengquan HE
Research on competitive adsorption characteristics of CO2 and CH4 in coal
Meikuang Anquan
co2 in coal body
mine gas
competitive adsorption
carbon sequestration
single-component adsorption
title Research on competitive adsorption characteristics of CO2 and CH4 in coal
title_full Research on competitive adsorption characteristics of CO2 and CH4 in coal
title_fullStr Research on competitive adsorption characteristics of CO2 and CH4 in coal
title_full_unstemmed Research on competitive adsorption characteristics of CO2 and CH4 in coal
title_short Research on competitive adsorption characteristics of CO2 and CH4 in coal
title_sort research on competitive adsorption characteristics of co2 and ch4 in coal
topic co2 in coal body
mine gas
competitive adsorption
carbon sequestration
single-component adsorption
url https://www.mkaqzz.com/cn/article/doi/10.13347/j.cnki.mkaq.20240271
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