位乐. 煤的瓦斯吸附动力学机制及温度效应[J]. 煤矿安全, 2020, 51(8): 7-11,16.
    引用本文: 位乐. 煤的瓦斯吸附动力学机制及温度效应[J]. 煤矿安全, 2020, 51(8): 7-11,16.
    WEI Le. Kinetic Mechanism and Temperature Effect of Coal Gas Adsorption[J]. Safety in Coal Mines, 2020, 51(8): 7-11,16.
    Citation: WEI Le. Kinetic Mechanism and Temperature Effect of Coal Gas Adsorption[J]. Safety in Coal Mines, 2020, 51(8): 7-11,16.

    煤的瓦斯吸附动力学机制及温度效应

    Kinetic Mechanism and Temperature Effect of Coal Gas Adsorption

    • 摘要: 基于煤对瓦斯的多层吸附假设,推导了煤中瓦斯的多层吸附理论,并采用此理论对煤的瓦斯吸附试验规律进行拟合分析。结果表明:煤对瓦斯的多层吸附理论很好地拟合瓦斯等温吸附,拟合相关性均达到0.99以上;煤体表面单层吸附瓦斯体积Vm随温度降低而线性增大;煤的吸附热Q和瓦斯凝聚热QL差值(Q-QL)与温度T线性相关;瓦斯在煤表面吸附层数n随温度降低线性增大。

       

      Abstract: Based on the multi-layer assumption of gas adsorption in coal, the multi-layer adsorption theory of gas in coal is deduced, with this theory, the test laws of gas adsorption are fitted, and the theoretical analysis are carried out. The results show that the multi-layer adsorption theory of gas is well fitted by gas adsorption isotherm, and the fitting correlation can reach more than 0.99. On the surface of coal body, the gas monolayer adsorption volume Vm increases linearly with temperature decreasing. The difference value of adsorption heat Q and gas condensation heat QL is linear correlation with temperature T. The number of gas adsorption layers on coal surface increases linearly with temperature decreasing.

       

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