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A Study of the Differences in the Gas Diffusion and Migration Characteristics of Soft and Hard Coal in High Gas Coal Seams

机译:高煤层中软硬煤气体扩散与迁移特性的差异研究

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At the present time, it is of major significance to examine the differences in the gas diffusion and migration characteristics of soft and hard coal in order to prevent and control safety hazards in high gas coal seams. In this study, the differences in the gas diffusion and migration characteristics between soft coal and hard coal were examined in detail using macrostructural, mesostructural, and microstructural research methods. The root causes of the differences in the gas diffusion and migration between soft coal and hard coal were revealed in the obtained research results. The study shows that, in terms of the macrostructures, the soft coal particle grains were flakey and with shapes resembling fingernails. Meanwhile, the hard coal particle grains were observed to be in the shapes of complete blocks. In addition, in terms of the mesostructures of the different coal types, it was found that the proportion of granular coal below the particle size limit of 6?mm in the soft coal was much higher than that of the hard coal. Also, from the aspect of the characteristics of the microstructures, the pores and fissures on the soft coal surfaces were observed to be better developed, and the BJH specific surface areas of the soft coal were more than twice those of the hard coal. That is to say, the gas diffusion and migration conditions of the soft coal were better than those of the hard coal. At the same time, the increments of the specific surface areas and volumes of the pores of soft coal were above 100?nm, which provided channels for gas diffusion and migration at rates of more than twice those of the hard coal. Therefore, the soft coal was more conducive to gas emissions. This study conducted gas desorption experiments on both soft and hard coal samples and found that the initial gas desorption speed of the soft coal was significantly higher than that of the hard coal. Since the instantaneous gas emissions of the soft coal were significantly higher than those of the hard coal, it was considered to be more likely that gas outbursts and transfinite accidents could potentially occur in the soft coal layers of a project site. This study’s results provided a foundation and basis for effective gas control measures in coal seams composed of soft coal layers, which will be of major significance to the safety of coal mining activities in the future.
机译:目前,研究软硬煤的气体扩散和迁移特性的差异是具有重要意义,以防止和控制高煤层煤层的安全危害。在这项研究中,使用宏观结构,培养和微观结构研究方法详细研究了软煤和硬煤之间气体扩散和迁移特性的差异。在获得的研究结果中揭示了软煤和硬煤之间气体扩散和迁移差异的根本原因。该研究表明,就宏观结构而言,软煤颗粒颗粒是Flakey和类似指甲的形状。同时,观察到硬煤颗粒颗粒是完整块的形状。另外,就不同煤炭类型的腹部结构而言,发现软煤中粒度下限为6Ωmm的颗粒煤的比例远高于硬煤的比例。而且,从微观结构的特征的方面,观察到软煤表面上的孔和裂缝更好地发育,软煤的BJH比表面积超过硬煤的两倍多。也就是说,软煤的气体扩散和迁移条件优于硬煤。同时,特定表面积的增量和软煤的孔的体积高于100?NM,为气体扩散和升温的通道提供了超过硬煤的两倍的速率。因此,软煤更有利于气体排放。该研究对软煤的样品进行了气体解吸试验,发现软煤的初始气体解吸速度明显高于硬煤。由于软煤的瞬时气体排放显着高于硬煤,因此旨在更有可能在项目现场的软煤层中发生燃气突出和经细灌注事故。本研究的结果为由软煤层组成的煤层中有效气体控制措施提供了基础和基础,这对未来煤炭开采活动的安全具有重要意义。

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