|
|
|
| Influence of tectonic coal molecular structure on gasterity |
| Zhang Dongxu1, Tang Xianqi2 |
| 1.North China University of Science and Technology, School of Safety Engineering, Langfang 065201, China; 2. China Coal Xindeng Zhengzhou Mining Industry Corporation Ltd., Zhengzhou 45000, China |
|
|
|
|
Abstract The physical characteristics and molecular structure evolution characteristics of different coal grades and different deformation types and metamorphic degrees of a certain coal grade were analyzed comprehensively. Scanning electron microscopy, nuclear magnetic resonance, and Fourier infrared spectroscopy were used for structural analysis methods, mercury-injection, low-temperature liquid nitrogen adsorption, and isothermal adsorption desorption, and other gas-based experimental testing techniques were adopted to analyze the ultrafine voids of structural coals of different coal grades, different deformation types, and metamorphic degrees. The evolution characteristics of the structure and gas occurrence characteristics were comprehensively analyzed, and the evolution mechanism in different coal-grade tectonic coal structures was analyzed, as well as the gas control characteristics such as the pore structure, adsorption and desorption of tectonic coal, and the gas occurrence and prominent control mechanisms; The methods of analysis of associated elements in coal and calculation of pore compression coefficient were applied to the study of tectonic coal. The structural dynamic effects of element occurrence and the evolution characteristics of pore compression coefficient of tectonic coal and their controlling effects on gas drainage were systematically analyzed.
|
|
|
|
|
|
| [ 1 ] 彭立世. 煤与瓦斯突出预测的地质指标[ J ]. 煤炭科学技术,1986( 1 ):33 - 34.
[ 2 ] Paterson L. A model for Outbursts in Coal [ J ]. Int. J. Rock Mech. Min. Sci. Geomech. Abstr., 1986, 23( 4 ): 327 - 333.
[ 3 ] Cao Y X, Davis Alan, Liu R X et al. The influence of tectonic deformation on some geochemical properties of coals-a possible indicator of outburst potential [ J ]. International Journal of Coal Geology, 2003, 53( 2 ): 69 - 79.
[ 4 ] 屈争辉. 构造煤结构及其对瓦斯特性的控制机理研究[ J ]. 煤炭学报,2011,36( 3 ):533 - 534.
[ 5 ] 李凤丽, 姜 波, 宋 昱,等. 低中煤阶构造煤的纳米级孔隙分形特征及瓦斯地质意义[ J ]. 天然气地球科学, 2017, 28( 1 ):173 - 182.
[ 6 ] 王振洋, 程远平. 构造煤与原生结构煤孔隙特征及瓦斯解吸规律试验[ J ]. 煤科学技术, 2017, 45( 3 ):84 - 88.
[ 7 ] 李兴龙, 崔学锋. 松软构造煤负压抽采下瓦斯渗流特性实验研究[ J ]. 煤矿安全, 2017, 48( 4 ):32 - 35.
[ 8 ] 王恩营, 徐 轩, 廉有轩,等. 片状结构与粒状结构构造煤瓦斯解吸特征实验研究[ J ]. 河南理工大学学报(自然科学版), 2017, 36( 1 ):17 - 23.
[ 9 ] 张慧杰,张 浪,汪 东,等. 构造煤的瓦斯放散特征及孔隙结构微观解释[ J ]. 煤炭学报,2018,43( 12 ):3 404 - 3 410.
[ 10 ] 李祥春,李忠备,张 良,等. 不同煤阶煤样孔隙结构表征及其对瓦斯解吸扩散的影响[ J / OL ]. 煤炭学报:1 - 15[ 2019 - 10 - 21 ]. |
|
|
|