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Characterization of Coal Porosity for Naturally Tectonically Stressed Coals in Huaibei Coal Field China

机译:淮北煤田天然构造应力煤的孔隙度特征

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摘要

The enrichment of coalbed methane (CBM) and the outburst of gas in a coal mine are closely related to the nanopore structure of coal. The evolutionary characteristics of 12 coal nanopore structures under different natural deformational mechanisms (brittle and ductile deformation) are studied using a scanning electron microscope (SEM) and low-temperature nitrogen adsorption. The results indicate that there are mainly submicropores (2~5 nm) and supermicropores (<2 nm) in ductile deformed coal and mesopores (10~100 nm) and micropores (5~10 nm) in brittle deformed coal. The cumulative pore volume (V) and surface area (S) in brittle deformed coal are smaller than those in ductile deformed coal which indicates more adsorption space for gas. The coal with the smaller pores exhibits a large surface area, and coal with the larger pores exhibits a large volume for a given pore volume. We also found that the relationship between S and V turns from a positive correlation to a negative correlation when S > 4 m2/g, with pore sizes <5 nm in ductile deformed coal. The nanopore structure (<100 nm) and its distribution could be affected by macromolecular structure in two ways. Interconversion will occur among the different size nanopores especially in ductile deformed coal.
机译:煤矿中煤层气的富集和瓦斯突出与煤的纳米孔结构密切相关。利用扫描电子显微镜(SEM)和低温氮吸附研究了12种煤纳米孔结构在不同自然变形机制(脆性和韧性变形)下的演化特征。结果表明,韧性变形煤中主要存在亚微孔(2〜5 nm)和超微孔(<2 nm),脆性变形煤中存在中孔(10〜100 nm)和微孔(5〜10 nm)。脆性变形煤中的累积孔体积(V)和表面积(S)小于韧性变形煤中的累积孔体积和表面积(S),这表明有更多的气体吸附空间。对于给定的孔体积,具有较小孔的煤具有较大的表面积,具有较大孔的煤具有较大的体积。我们还发现,当延性变形煤中,S> 4 m 2 / g时,S和V之间的关系从正相关变为负相关,孔径小于5 nm。纳米孔结构(<100 nm)及其分布可能受到高分子结构的两种影响。相互转换将在不同尺寸的纳米孔之间发生,特别是在韧性变形煤中。

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