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1An Experimental Study on the Conductivity Changes in Coal during Methane Adsorption-Desorption and their Influencing Factors显示文摘During the processes of methane adsorption and desorption,the internal structure of coal changes,accordingly leading to changes in electrical conductivity.In this paper,using low rank coal seams of the Yan'an Formation in the Dafbsi field as the research subject,the relationship between coal resistivity,methane adsorption quantity,and equilibrium pressure is analyzed through proximate analysis,mercury injection tests,low temperature liquid nitrogen adsorption tests,and coal resistivity measurements during methane adsorption and desorption.The results show that during the process of pressure rise and methane adsorption,the conductivity of coal increases,resulting from heat release from methane adsorption,coal matrix swelling and adsorbed water molecules replaced by methane,but the resistivity reduction gradually decreases.The relationship between coal resistivity and methane adsorption quantity and equilibrium pressure can be described by a quadratic function.During the processes of depressurization and desorption,the resistivity of coal rebounds slightly,due to decalescence of methane desorption,coal matrix shrinkage and water-gas displacement,and the relationship coincides with a linear function.Methane adsorption leads to irreversible changes in coal internal structure and enhances the coal conductivity,and resistivity can not be restored to the initial level even after methane desorption.The resistivity and reduction rate of durain are higher than those of vitrain,with relatively greater homogeneous pore throat structure and fewer charged particles in the double electric layer.In addition,moisture can enhance the conductivity of coal and makes it change more complexly during methane adsorption and desorption.CHEN Yue MA Dongmin GUO Chen YANG Fu MU Tian GAO Zheng 2019Acta Geologica Sinica(English Edition)2019,93,3:3
2挥发性组分对煤结构变形及煤吸附甲烷的影响(英文)显示文摘研究了煤中的挥发性物质对煤结构变形的作用,考察了此类结构变形对煤吸附甲烷的影响.实验过程采用溶剂抽提方式逐步移除了煤的挥发性物质.使用热重分析、X射线衍射及N2吸附/脱附等技术方法,考察了抽提前后样品的晶体结构、织构结构以及样品对甲烷吸附能力的差异.结果表明,移除挥发性物质导致煤结构变形,并导致煤吸附甲烷量的改变.微观结构表征证明,挥发性物质以两种形态存在于煤结构中:即其镶嵌在孔道中,或者以交联的方式附着在煤大分子网络中.其中,镶嵌在孔道中的挥发性物质是构筑煤孔道结构重要组成部分,因此影响气体在孔中的储存量;交联在煤大分子网络中的挥发性物质,影响煤与煤之间的分子相互作用,是煤晶体结构的重要参数,其可影响煤的孔结构变形程度.孙文晶 王宁 储伟 江成发 2015Science Bulletin2015,60,5:2
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