郑新军, 岳高伟, 霍留鹏, 曾春林. 基于晶格理论模型煤的瓦斯吸附性能预测[J]. 煤矿安全, 2018, 49(9): 10-13.
    引用本文: 郑新军, 岳高伟, 霍留鹏, 曾春林. 基于晶格理论模型煤的瓦斯吸附性能预测[J]. 煤矿安全, 2018, 49(9): 10-13.
    ZHENG Xinjun, YUE Gaowei, HUO Liupeng, ZENG Chunlin. Prediction of Gas Adsorption Performance Based on Lattice Theory Model[J]. Safety in Coal Mines, 2018, 49(9): 10-13.
    Citation: ZHENG Xinjun, YUE Gaowei, HUO Liupeng, ZENG Chunlin. Prediction of Gas Adsorption Performance Based on Lattice Theory Model[J]. Safety in Coal Mines, 2018, 49(9): 10-13.

    基于晶格理论模型煤的瓦斯吸附性能预测

    Prediction of Gas Adsorption Performance Based on Lattice Theory Model

    • 摘要: 采用瓦斯吸附试验测试系统,在303、293 K对气肥煤、贫煤和无烟煤等进行瓦斯等温吸附试验,并基于晶格理论模型和某一温度下煤的吸附试验为依据,开展不同温度下煤的瓦斯吸附规律预测。结果表明:不同变质程度煤中游离瓦斯摩尔密度与吸附量存在线性关系。与瓦斯吸附等温线的实测结果相比,采用晶格理论模型预测得到不同变质程度煤的等温吸附曲线无论是趋势还是定量结果均十分吻合,相对误差均不超过3.8%。

       

      Abstract: Using gas adsorption test system, gas adsorption experiments were carried out for gas-fat coal, lean coal and anthracite at 303 K and 293 K. Based on lattice theory model and the adsorption test of coal at a certain temperature, the gas adsorption laws of coal under different temperature were predicted. The results show that the linear relationship between the free gas molecular density and the adsorption capacity in different metamorphic grade coals. The isothermal adsorption curves of different metamorphic grade coals are predicted by lattice theory model, and compared with the measured results of gas adsorption isotherm, both the trend and the quantitative results are very consistent, and the relative error is no more than 3.8 %.

       

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