刘伟, 武德尧, 何超, 王贤田, 张继友, 宋奕澎. 不同浸水时间风干煤样瓦斯吸附解吸规律实验[J]. 煤矿安全, 2017, 48(12): 16-20.
    引用本文: 刘伟, 武德尧, 何超, 王贤田, 张继友, 宋奕澎. 不同浸水时间风干煤样瓦斯吸附解吸规律实验[J]. 煤矿安全, 2017, 48(12): 16-20.
    LIU Wei, WU Deyao, HE Chao, WANG Xiantian, ZHANG Jiyou, SONG Yipeng. Experimental Study on Gas Adsorption and Desorption Laws of Air-dried Coal Samples with Different Soaking Time[J]. Safety in Coal Mines, 2017, 48(12): 16-20.
    Citation: LIU Wei, WU Deyao, HE Chao, WANG Xiantian, ZHANG Jiyou, SONG Yipeng. Experimental Study on Gas Adsorption and Desorption Laws of Air-dried Coal Samples with Different Soaking Time[J]. Safety in Coal Mines, 2017, 48(12): 16-20.

    不同浸水时间风干煤样瓦斯吸附解吸规律实验

    Experimental Study on Gas Adsorption and Desorption Laws of Air-dried Coal Samples with Different Soaking Time

    • 摘要: 为了研究浸水风干煤样瓦斯吸附解吸规律,选择未浸水的原煤样和浸水3、15、30 d风干煤样进行恒温动态瓦斯吸附解吸实验,得到瓦斯累积吸附解吸量随时间变化的实测曲线。对所选煤样进行比表面积及孔径分析,得到其比表面积、孔容和孔径分布。结果表明:浸水风干煤样瓦斯累积吸附量随压力变化的趋势与原煤样一致;浸水风干煤样解吸初始20 min内解吸量倒数与时间函数成线性关系;浸水时间增加,风干煤样的饱和吸附量、比表面积、总孔容、微孔孔容先减小后增大,平均孔径先增大后减小。

       

      Abstract: In order to study the gas adsorption and desorption laws of soaked and air-dried coal samples, the air-dried coal samples soaked with 3 day, 15 day, 30 day and raw coal without soaking were tested in the dynamic gas adsorption experiment under a constant temperature and pressure, we found that the experimental curves of cumulative amount of gas adsorption and desorption changed with time under different pressure. The experiment of specific surface area and pore size analysis on coal samples were conducted to obtain specific surface area, pore volume and pore size. The results show that the trend of the cumulative adsorption amount of air-dried coal samples with different soaking time changes with the gas pressure, which is consistent with the raw coal samples without soaking. The reciprocal of the desorption amount of soaked and air-dried coal samples is linearly related to the time function within the initial 20 min of desorption. With the increase of soaking time of air-dried coal samples, the saturated adsorption amount, specific surface area, total pore volume and micropore volume of air-dried coal samples decrease and then increase, but the average pore size increases first and then decreases.

       

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