韩城矿区构造煤瓦斯吸附性能试验研究

    Experimental Study on Gas Adsorption Capacity of Tectonic Coal in Hancheng Mining Area

    • 摘要: 利用自主研制的煤样瓦斯吸附解吸装置,在恒温、相同初始压力条件下,对比研究了韩城矿区的块状原生结构煤和构造煤的瓦斯吸附规律,分析了其影响因素。试验结果显示:在平衡状态下,糜棱煤、碎裂煤和鳞片煤的单位质量瓦斯吸附量分别为原生结构煤的2.11、2.26、2.52倍。所有煤样的瓦斯吸附速率随时间的变化规律均呈单调递减的曲线形式,在吸附的初始阶段,构造煤的瓦斯吸附速率更快,尤其是在0~2 min时间段内这种差异最明显。构造煤在更短时间内达到吸附平衡,吸附效率更高。良好的致密性和原生裂隙不发育的特点决定了原生结构煤较强的瓦斯“封存”能力。良好的孔隙和后生裂隙的发育决定了构造煤在吸附性能方面要优于原生结构煤,而不同级别的孔隙发育比例和裂隙结构连通的差异性则是构造煤吸附性能差别的主因素。

       

      Abstract: By using the gas adsorption and desorption equipment of self-developed coal sample, in the conditions of constant temperature, same initial pressure, it comparatively studied the gas adsorption laws of the massive native structure coal and tectonic coal in Hangcheng Mining Area, and analyzed the influence factors. The test results showed that the gas adsorption capacity of per unit mass for mylonite coal, loose coal and scale coal was respectively 2.11, 2.26 and 2.52 times of the native structure coal in the equilibrium state. The gas adsorption rate of all coal samples showed a curve form variation with time monotonically decreasing. In the initial stage of adsorption, the gas adsorption rate of tectonic coal was faster, especially the difference was most obvious in the period of 0 to 2 min. The tectonic coal reached adsorption equilibrium in a shorter time, the adsorption efficiency was higher. The characteristics of good density and existing fractures no developing determined the stronger gas "storage" capacity of the native structure coal. Good pores and fissures epigenetic development determined that the tectonic coal was superior to the native structure coal in terms of adsorption properties, while the connectivity differences of pores development proportion and fissures development of different levels were the main factors of the adsorption properties difference of tectonic coal.

       

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