李卓睿, 罗新荣, 邱广东, 吕远洋, 路洁心. 高温热效应对煤孔隙结构及其吸附特性的影响[J]. 煤矿安全, 2014, 45(7): 219-222.
    引用本文: 李卓睿, 罗新荣, 邱广东, 吕远洋, 路洁心. 高温热效应对煤孔隙结构及其吸附特性的影响[J]. 煤矿安全, 2014, 45(7): 219-222.
    LI Zhuorui, LUO Xinrong, QIU Guangdong, LYU Yuanyang, LU Jiexin. Influence of Thermal Effect on Pore Structures and Adsorption Properties of Coal[J]. Safety in Coal Mines, 2014, 45(7): 219-222.
    Citation: LI Zhuorui, LUO Xinrong, QIU Guangdong, LYU Yuanyang, LU Jiexin. Influence of Thermal Effect on Pore Structures and Adsorption Properties of Coal[J]. Safety in Coal Mines, 2014, 45(7): 219-222.

    高温热效应对煤孔隙结构及其吸附特性的影响

    Influence of Thermal Effect on Pore Structures and Adsorption Properties of Coal

    • 摘要: 通过对水浴处理温度为40、60、80 ℃的原煤样进行压汞实验以及30 ℃煤的高压等温吸附试验,探究热效应对煤的孔隙结构及其吸附特性影响。实验结果表明:随着水浴温度的升高,煤的孔容、比表面积和孔隙度呈现上升趋势,但各个孔隙所占的孔容比却变化不一,煤体在60~80 ℃温度区间孔隙度随温度的增长速度也远远大于40~60 ℃区间;煤样水浴处理的温度越高,到达吸附极值所需的平衡瓦斯压力越大;等温吸附常数a值亦随水浴温度的升高而增加,且60~80 ℃水浴温度段a值增加量要低于40~60 ℃温度段。

       

      Abstract: In order to explore the influence of thermal effect on pore structures and adsorption properties of coal, mercury penetration experiments with the coal samples under the water bath temperatures of 40 ℃, 60 ℃ and 80 ℃ and isothermal adsorption experiments of 30 ℃ with coal samples were carried out. The results show that the total pore volume, pore specific surface and porosity of the coal sample increased with increasing temperature of water bath. Every pore has different changing trends of pore volume ratio, and the growth rate of coal porosity increases with temperature from 60 to 80 ℃ is far greater than the temperature from 40 to 60 ℃. The higher of the water bath temperatures of coal samples are, the higher pressures of the gas balance pressure require to reach the absorption maximum. The adsorption constant increases with the temperature of the water bath, but the value of water bath temperature from 60 to 80 ℃ increases less than the temperature from 40 to 60 ℃.

       

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