马向攀, 王兆丰, 任浩洋. 基于吸附势理论的低温环境煤甲烷吸附等温线预测[J]. 煤矿安全, 2017, 48(5): 22-25.
    引用本文: 马向攀, 王兆丰, 任浩洋. 基于吸附势理论的低温环境煤甲烷吸附等温线预测[J]. 煤矿安全, 2017, 48(5): 22-25.
    MA Xiangpan, WANG Zhaofeng, REN Haoyang. Prediction for CH4 Isothermal Adsorption Curve of Coal at Low Temperature Based on Adsorption Potential Theory[J]. Safety in Coal Mines, 2017, 48(5): 22-25.
    Citation: MA Xiangpan, WANG Zhaofeng, REN Haoyang. Prediction for CH4 Isothermal Adsorption Curve of Coal at Low Temperature Based on Adsorption Potential Theory[J]. Safety in Coal Mines, 2017, 48(5): 22-25.

    基于吸附势理论的低温环境煤甲烷吸附等温线预测

    Prediction for CH4 Isothermal Adsorption Curve of Coal at Low Temperature Based on Adsorption Potential Theory

    • 摘要: 为了准确预测低温条件下煤对甲烷的吸附等温线,选用平顶山己15-17煤层煤样,并以高低温变频实验装置为依托,对煤样进行高/低温环境(-20、-10、0、10、20 ℃)下的甲烷吸附试验。基于吸附势理论,利用吸附特性曲线的唯一性,根据20、10、0 ℃的甲烷吸附数据,预测-10、-20 ℃时甲烷的吸附等温线。结果表明:预测的吸附等温线与实测的吸附等温线吻合良好,平均相对误差分别为2.47%和2.64%。

       

      Abstract: In order to accurately predict CH4 isothermal adsorption curve of coal at low temperature, the isothermal tests were done at different temperatures (-20, -10, 0, 10, 20 ℃), which relied on high/low temperature adsorption experiment facility and used the sample of VI15-17 coal bed in Pingdingshan. Based on the uniqueness of adsorption characteristic curve in adsorption potential theory, in accordance with the experimental data at 20, 10, 0 ℃, the CH4 isothermal adsorption curves of coal at -10, -20 ℃ were predicted. The results showed that the predicted isothermal adsorption curves approximately agreed with reality isothermal adsorption curve, and the average relative error was 2.47% and 2.64%.

       

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