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首页> 外文期刊>International Journal of Oil, Gas and Coal Technology: IJOGCT >Pore structure and its impact on CH4 adsorption capability and diffusion characteristics of normal and deformed coals from Qinshui Basin
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Pore structure and its impact on CH4 adsorption capability and diffusion characteristics of normal and deformed coals from Qinshui Basin

机译:沁水盆地孔隙结构及其对普通煤和变形煤CH4吸附能力和扩散特性的影响

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摘要

In this study, the pore structure, adsorption/desorption kinetics and thermodynamics of normal and deformed coals are compared. The total pore volume and porosity of deformed coal are 2.84 to 2.91 times greater than those of normal coal, whereas the micropore volume and specific surface area of normal coal are 1.15 to 1.35 times greater than those of deformed coal. Langmuir volume of normal coal is greater than that of deformed coal. Delta sigma of normal coal is slightly greater than that of deformed coal which indicates that the unit area of normal coal CH4 adsorption capacity is also greater than that of deformed coal. At the early stage of the desorption process, the mass diffusivity of deformed coal is ten times greater than that of normal coal. Then it decreases rapidly, while that of normal coal decreases very slowly. At last, it will be less than that of normal coal.
机译:在这项研究中,比较了普通煤和变形煤的孔隙结构,吸附/解吸动力学和热力学。变形煤的总孔体积和孔隙率是普通煤的2.84至2.91倍,而普通煤的微孔体积和比表面积是变形煤的1.15至1.35倍。普通煤的Langmuir体积大于变形煤的Langmuir体积。普通煤的δσ大于变形煤的δsigma,这表明普通煤对CH4的吸附能力的单位面积也大于变形煤。在解吸过程的初期,变形煤的质量扩散率是普通煤的十倍。然后它迅速下降,而普通煤的下降非常缓慢。最后,它将小于普通煤。

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