Wang Lin, Chen Xiangjun, Wang Dezhang, Wang Xiaodan
Jinneng Holding Shanxi Science and Technology Research Institute Co., Ltd. (Jincheng) Technology Centre, Jincheng, 048000, China.
College of Safety Science and Engineering, Henan Polytechnic University, Jiaozuo, 454003, China.
J Mol Model. 2023 Oct 9;29(11):334. doi: 10.1007/s00894-023-05733-y.
Context To investigate the impact of moisture on gas adsorption in gas-fat coal, Shanxi gas-fat coal was chosen as the research subject. The Adsorption module within molecular simulation software was utilized to construct gas-fat coal models with moisture contents of 0%, 1.14%, 2.26%, and 3.72%. The results revealed that the isothermal adsorption curves of gas-fat coal under different moisture contents all followed the Langmuir adsorption curve (Type Ι), wherein the Langmuir volume of gas-fat coal was most sensitive to changes in moisture content within the range of 0 to 1.14%. A linear equation was found to better characterize the influence of moisture on gas content in Shanxi gas-fat coal, represented by the formula η = 1/(1 + 1.98078w), where, η represents the moisture impact coefficient; w is the moisture content; 1.98078 is the coefficient of moisture influence of Shanxi gasifier coal. Coupled with changes in the surface free energy of gas-fat coal, the pressure exerted a positive effect on the adsorption of gas on the coal surface, enhancing the adsorption space of methane within gas-fat coal.Methods Using Materials Studio software, the adsorption capacity and adsorption heat of methane were computed at various temperatures (323 K, 333 K, 343 K) and pressures (0.5-8 MPa). Furthermore, a comparative analysis was conducted to assess the applicability of classical linear equations, linear equations, power function equations, and exponential function equations in quantitatively characterizing the influence of moisture.
为研究水分对气肥煤瓦斯吸附的影响,选取山西气肥煤作为研究对象。利用分子模拟软件中的吸附模块构建了水分含量分别为0%、1.14%、2.26%和3.72%的气肥煤模型。结果表明,不同水分含量下气肥煤的等温吸附曲线均符合朗缪尔吸附曲线(Ⅰ型),其中气肥煤的朗缪尔体积在0至1.14%范围内对水分含量变化最为敏感。发现一个线性方程能更好地表征水分对山西气肥煤瓦斯含量的影响,其公式为η = 1/(1 + 1.98078w),式中,η为水分影响系数;w为水分含量;1.98078为山西气化煤气的水分影响系数。结合气肥煤表面自由能的变化,压力对瓦斯在煤表面的吸附有正向作用,增大了气肥煤内部甲烷的吸附空间。
利用Materials Studio软件,计算了不同温度(323 K、333 K、343 K)和压力(0.5 - 8 MPa)下甲烷的吸附量和吸附热。此外,还进行了对比分析,以评估经典线性方程、线性方程、幂函数方程和指数函数方程在定量表征水分影响方面的适用性。