Adsorption Science & Technology2019,Vol.37Issue(9/10) :19.DOI:10.1177/0263617419890235

The influence of temperature on methane adsorption in coal: A review and statistical analysis

Wang, Xiaojuan Zuo, Weiqin Ma, Xiaotong Li, Ning Wang, Zhijun
Adsorption Science & Technology2019,Vol.37Issue(9/10) :19.DOI:10.1177/0263617419890235

The influence of temperature on methane adsorption in coal: A review and statistical analysis

Wang, Xiaojuan 1Zuo, Weiqin Ma, Xiaotong Li, Ning Wang, Zhijun
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作者信息

  • 1. Henan Polytech Univ, State Key Lab Cultivat Base Gas Geol & Gas Contro, Jiaozuo 454003, Henan, Peoples R China
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Abstract

The capacity of coal to adsorb methane is greatly affected by temperature and, in recent years, temperature-dependent adsorption has been studied by many researchers. Even so, comprehensive conclusions have not been reached and conflicting experimental results are common. This paper reviews the current state of research regarding the temperature-dependent adsorption of methane in coal and catalogs the conclusions from experiments conducted on that subject by 28 researchers, as published between 1995 and 2017. Probability theory and statistics are used to show that the conclusion generally accepted by most researchers is that the amount of methane adsorbed by coal decreases with increasing temperature. It is highly likely that the Langmuir volume decreases as the temperature rises, and it is also probable that the Langmuir pressure increases at higher temperatures. Equations are presented that express the relationships between methane adsorption, Langmuir volume, Langmuir pressure, and temperature. Future research should be directed toward determining the relationship between Langmuir pressure and temperature. The results of the study presented herein provide a theoretical basis for predicting the gas content in coal seams and improving the efficiency of coalbed methane development.

Key words

Methane/coal/adsorption/temperature/statistical analysis/experiment

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出版年

2019
Adsorption Science & Technology

Adsorption Science & Technology

SCI
ISSN:0263-6174
被引量11
参考文献量48
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