A Fractal Adsorption Model on Methane in Coal with Temperature Effect Dependence

Author:

Guo Fei1,Liu Gaofeng1ORCID,Zhang Zhen12,Lv Runsheng1ORCID,Xian Baoan1,Lin Jia2ORCID,Barakos George2ORCID,Chang Ping2

Affiliation:

1. School of Resources & Environment, Henan Polytechnic University, Jiaozuo 454003, China

2. WA School of Mines: Minerals, Energy and Chemical Engineering, Curtin University, Kalgoorlie, WA 6430, Australia

Abstract

The traditional Langmuir equation displays drawback in accurately characterizing the methane adsorption behavior in coal, due to it assuming the uniform surface of coal pores. Additionally, the decay law of gas adsorption capacity with an increasing coal reservoir temperature remains unknown. In this study, the fractal adsorption model is proposed based on the fractal dimension (Df) of coal pores and the attenuation coefficient (n) of the adsorption capacity. The principles and methods of this fractal adsorption model are deduced and summarized in detail. The results show that the pore structures of the two coal samples exhibit obvious fractal characteristics, with the values of fractal dimensions (Df) being 2.6279 and 2.93. The values of adsorption capacity attenuation coefficients (n) are estimated as −0.006 and −0.004 by the adsorption experiments with different temperatures. The proposed fractal adsorption model presents a greater theoretical significance and higher accuracy than that of the Langmuir equation. The accuracy of the fractal adsorption model with temperature effect dependence is verified, establishing a prediction method for methane adsorption capacity in deep coal reservoirs. This study can serve as a theoretical foundation for coalbed methane exploration and development, as well as provide valuable insights for unconventional natural gas exploitation.

Funder

National Natural Science Foundation of China

China Scholarship Council

Henan Province International Science and Technology Cooperation Project

Henan Province Science and Technology Research Project

Publisher

MDPI AG

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