张慧杰, 张浪, 汪东, 侯金玲. 煤变质程度对瓦斯吸附能力的控制作用[J]. 煤矿安全, 2017, 48(7): 5-8,12.
    引用本文: 张慧杰, 张浪, 汪东, 侯金玲. 煤变质程度对瓦斯吸附能力的控制作用[J]. 煤矿安全, 2017, 48(7): 5-8,12.
    ZHANG Huijie, ZHANG Lang, WANG Dong, HOU Jinling. Control Effect of Metamorphic Grade of Coal on Gas Adsorption Capacity[J]. Safety in Coal Mines, 2017, 48(7): 5-8,12.
    Citation: ZHANG Huijie, ZHANG Lang, WANG Dong, HOU Jinling. Control Effect of Metamorphic Grade of Coal on Gas Adsorption Capacity[J]. Safety in Coal Mines, 2017, 48(7): 5-8,12.

    煤变质程度对瓦斯吸附能力的控制作用

    Control Effect of Metamorphic Grade of Coal on Gas Adsorption Capacity

    • 摘要: 为研究煤的变质程度对瓦斯吸附特性的影响,在已有研究成果的基础上,采用长焰煤、气煤和无烟煤干燥煤样进行等温吸附试验,通过压汞试验得到孔隙结构和连通性特征,研究了煤的孔隙发育特征对瓦斯吸附能力的控制作用,并从煤的大分子结构、平衡水分含量、显微组分3个因素出发阐述了煤的变质程度对瓦斯吸附能力的影响。结果表明,煤的孔隙发育特征、大分子结构、平衡水分含量、显微组分等因素综合影响瓦斯吸附能力,其中煤的孔隙发育特征起主控作用,不同变质程度煤的吸附能力与孔隙结构特征变化规律一致,煤的大分子结构通过改变有效比表面积、煤分子结构与甲烷分子的吸附作用以及水分含量影响吸附能力,平衡水分含量和显微组分主要通过改变比表面积影响吸附能力。

       

      Abstract: In order to research the effect of metamorphic grade of coal on gas adsorption, on the basis of the existing research results, isothermal adsorption test was carried out with dry coal samples of long flame coal, gas coal and anthracite coal, through pore structure and connectivity obtained by mercury injection experiment, control effect of pore development characteristics on gas adsorption capacity was studied, in addition, other factors such as macromolecular structure, equilibrium moisture content and maceral group were considered. The results show that characteristic of pore development, macromolecular structure, equilibrium moisture content and maceral group have comprehensive effect on gas adsorption capacity, and characteristic of pore development is the main factor, as for coal with different rank, pore structure characteristic and adsorption capacity show a positive relationship, moreover, coal macromolecular structure affects adsorption capacity through changing effective specific surface area, adsorption between coal molecular structure and methane molecules and moisture content, equilibrium moisture content and maceral group affect adsorption capacity through changing specific surface area.

       

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