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Research on the Differences of the Pore Characteristics with Different Destroyed-Type Coals

机译:不同破坏型煤的孔隙特征差异研究

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In order to investigate the pore characteristics of the different destroyed-types of coals and its effects of coal and gas outburst, this article studied the low temperature nitrogen adsorption curve, specific surface area, pore volume and its distribution with the method of low-temperature nitrogen adsorption, also studied their changes with the different destroyed-type of coals, and the influences of pore shape and distribution for coal and gas outburst. The results showed that three different destroyed-types of coals have loops, the pore shapes of the coals mainly open-shaped, maybe also contain the flask-shaped. The raw coal has more open-shaped pores, fragmentated coal contains a large number of micropore, the crushed coal riches micropore and mesopore. The crushed coal in the large aperture of the medium relative pressure range mainly has open-shaped pore, then in maller pore size range of low relative pressure mainly has closed pore. With the increasing of destroyed-degree, the porosity increased, the anti-destruction capability reduced, the coal is more easily broken, then the risk of outburst is greater.
机译:为了探讨不同破坏类型的煤的孔隙特征及其煤气爆发的影响,本文研究了低温氮吸附曲线,比表面积,孔隙体积及其与低温方法的分布氮吸附,还研究了与不同破坏的煤类型的变化,以及煤气突出的孔形和分布的影响。结果表明,三种不同的破坏类型的煤具有环,煤的孔形主要是开口形状的,也可能含有烧瓶形。生煤具有更开放的毛孔,碎裂的煤含有大量微孔,碎煤浓郁微孔和中孔。碎煤在介质相对压力范围内的大孔径主要具有开口形状孔,然后在小光伏孔径范围的相对压力范围主要封闭孔隙。随着破坏程度的增加,孔隙率增加,抗破坏能力降低,煤更容易破碎,那么爆发的风险更大。

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