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Energy variation in coal samples with different particle sizes in the process of adsorption and desorption

机译:吸附和解吸过程中具有不同颗粒尺寸的煤样的能量变化

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摘要

The study of energy variation rules in the process of gas adsorption and desorption in coal is important to predict mine outburst disasters. In this study, an adsorption-desorption experimental device was developed and used to evaluate six coal samples of various particle sizes under different pressure conditions. Temperature was measured in real-time throughout the process. The rate of temperature change, maximum temperature variation, and adsorption quantity increased with particle size and an increase in equilibrium pressure. There is a positive linear relationship between adsorption quantity and temperature variation. This study focused on energy variation during adsorption and desorption. The results showed that the smaller the coal particle size, the larger the reduction in surface free energy and the change in heat. With an increase in equilibrium pressure, the rate of reduction in the surface free energy slows gradually, indicating that there is a non-uniform adsorption potential field on the surface of coal. By comparing the difference of temperature and heat data between a columnar coal sample and a granular coal sample in the process of adsorption and desorption, it can be concluded that the surface free energy is converted into heat and deformation energy in the adsorption process, and the deformation energy is converted into heat energy in the desorption process.
机译:在煤气吸附和解吸过程中的能量变化规则研究是预测矿山突出灾害的重要性。在该研究中,开发了一种吸附 - 解吸实验装置并用于在不同的压力条件下评估各种颗粒尺寸的六个煤样。在整个过程中实时测量温度。温度变化率,最大温度变化和吸附量随粒径和平衡压力的增加而增加。吸附量和温度变化之间存在正线性关系。本研究专注于吸附和解吸过程中的能量变化。结果表明,煤粒径越小,表面自由能降低和热量的变化越大。随着平衡压力的增加,表面自由能量的速率逐渐减慢,表明煤表面上存在非均匀的吸附势场。通过比较吸附和解吸过程中柱状煤样品和颗粒煤样品之间的温度和热数据的差异,可以得出结论,表面自由能在吸附过程中转化为热量和变形能量,以及在解吸过程中,变形能量被转化为热能。

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