Gas Adsorption and Desorption Performance of Coal with Different Degree of Metamorphism

Zhongguang Sun, Fakai Wang
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Abstract

Starting from the gas pore stress of coal, the low-temperature nitrogen adsorption test is used to investigate the micropore characteristics of coal with different metamorphic degrees and its influence on gas adsorption/desorption, and to clarify the relationship between the initial rate of gas adsorption and desorption in coal and the pore stress. The experimental study was carried out by using self-built test equipment to simulate the actual formation. The results showed that: as the degree of coal metamorphism increases; the initial rate of gas adsorption and desorption is proportional to the pore stress of the coal seam, and the desorption capacity is stronger than the adsorption capacity within the same experimental period. In the same experiment time, the desorption capacity is stronger than the adsorption capacity, and the pore stress has a linear relationship with the initial rate of adsorption and desorption.
不同变质程度煤的气体吸附与解吸性能
从煤的气体孔隙应力出发,采用低温氮气吸附试验研究了不同变质程度煤的微孔特征及其对气体吸附/解吸的影响,阐明了煤中气体吸附/解吸的初始速率与孔隙应力的关系。利用自建测试设备模拟实际地层进行了实验研究。结果表明:随着煤变质程度的增加;气体吸附和解吸的初始速率与煤层孔隙应力成正比,在相同实验周期内解吸能力强于吸附能力。在相同的实验时间内,解吸能力强于吸附能力,孔隙应力与初始吸附速率和解吸速率呈线性关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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