[1] 张世杰,李成武,丁翠,等. 煤表面分子片段模型与瓦斯吸附分子力学模拟[J]. 矿业研究与开发,2010,30(1):88-91.

Zhang Shijie, Li Chengwu, Ding Cui, et al. Surface molecular segment model of coal and molecular mechanics simulation of gas absorption[J]. Mining Research and Development, 2010, 30(1): 88-91.
[2] 张文静,琚宜文,卫明明,等. 不同变质变形煤储层吸附/解吸特征及机理研究进展[J]. 地学前缘,2015,22(2):232-242.

Zhang Wenjing, Ju Yiwen, Wei Mingming, et al. Study on characteristics and mechanism of adsorption/desorption on different metamorphic-deformed coal reservoirs[J]. Earth Science Frontiers, 2015, 22(2): 232-242.
[3] 傅雪海,秦勇,韦重韬. 煤层气地质学[M]. 徐州:中国矿业大学出版社,2007.

Fu Xuehai, Qin Yong, Wei Chongtao. Coalbed methane geology[M]. Xuzhou: China University of Mining and Technology Press, 2007.
[4] 姜波,秦勇,琚宜文,等. 构造煤化学结构演化与瓦斯特性耦合机理[J]. 地学前缘,2009,16(2):262-271.

Jiang Bo, Qin Yong, Ju Yiwen, et al. The coupling mechanism of the evolution of chemical structure with the characteristics of gas of tectonic coals[J]. Earth Science Frontiers, 2009, 16(2): 262-271.
[5] 潘结南,徐海飞. 河南省中—高煤阶构造变形煤甲烷吸附/解吸特征研究[J]. 煤炭科学技术,2015,43(2):29-32,37.

Pan Jienan, Xu Haifei. Study on characteristics of adsorption/desorption of medium and high rank tectonic deformation coals in Henan province[J]. Coal Science and Technology, 2015, 43(2): 29-32, 37.
[6] 张玉贵. 构造煤演化与力化学作用[D]. 太原:太原理工大学,2006.

Zhang Yugui. Evolution of deformed coal and process of coal mechanochemistry[D]. Taiyuan: Taiyuan University of Technology, 2006.
[7] 王向浩,王延斌,高莎莎,等. 构造煤与原生结构煤的孔隙结构及吸附性差异[J]. 高校地质学报,2012,18(3):528-532.

Wang Xianghao, Wang Yanbin, Gao Shasha, et al. Differences in pore structures and absorptivity between tectonically deformed and undeformed coals[J]. Geological Journal of China Universities, 2012, 18(3): 528-532.
[8] 张小东,刘浩,刘炎昊,等. 煤体结构差异的吸附响应及其控制机理[J]. 地球科学:中国地质大学学报,2009,34(5):848-854.

Zhang Xiaodong, Liu Hao, Liu Yanhao, et al. Adsorption respondence of different coal body structures and its influence mechanism[J]. Earth Science:Journal of China University of Geosciences, 2009, 34(5): 848-854.
[9] 孟召平,刘珊珊,王保玉,等. 不同煤体结构煤的吸附性能及其孔隙结构特征[J]. 煤炭学报,2015,40(8):1865-1870.

Meng Zhaoping, Liu Shanshan, Wang Baoyu, et al. Adsorption capacity and its pore structure of coals with different coal body structure[J]. Journal of China Coal Society, 2015, 40(8): 1865-1870.
[10] 聂百胜,段三明. 煤吸附瓦斯的本质[J]. 太原理工大学学报,1998,29(4):417-421.

Nie Baisheng, Duan Sanming. The adsorption essence of gas on coal surface[J]. Journal of Taiyuan University of Technology, 1998, 29(4): 417-421.
[11] Lu L, Sahajwalla V, Kong C, et al. Quantitative X-ray diffraction analysis and its application to various coals[J]. Carbon, 2001, 39(12): 1821-1833.
[12] 秦勇,李毓琼. 焦作煤的大分子结构演化特征及其地质意义[J]. 河南地质,1991,9(2):15-20.

Qin Yong, Li Yuqiong. Evolution characteristics of macromolecular structure of Jiaozuo coal and its geological significance[J]. Henan Geology, 1991, 9(2): 15-20.
[13] 李小明,曹代勇,张守仁,等. 构造煤与原生结构煤的显微傅立叶红外光谱特征对比研究[J]. 中国煤田地质,2005,17(3):9-11.

Li Xiaoming, Cao Daiyong, Zhang Shouren, et al. Contrast study on the micro-FTIR characters between deformed and undeformed coals[J]. Coal Geology of China, 2005, 17(3): 9-11.
[14] 李小诗,琚宜文,侯泉林,等. 不同变形机制构造煤大分子结构演化的谱学响应[J]. 中国科学(D辑):地球科学,2012,42(11):1690-1700.

Li Xiaoshi, Ju Yiwen, Hou Quanlin, et al. Spectra response from macromolecular structure evolution of tectonically deformed coal of different deformation mechanisms[J]. Science China (Seri. D): Earth Sciences, 2012, 42(11): 1690-1700.
[15] Sonibare O O, Haeger T, Foley S F. Structural characterization of Nigerian coals by X-ray diffraction, Raman and FTIR spectroscopy[J]. Energy, 2010, 35(12): 5347-5353.
[16] 琚宜文,姜波,侯泉林,等. 构造煤结构成分应力效应的傅里叶变换红外光谱研究[J]. 光谱学与光谱分析,2005,25(8):1216-1220.

Ju Yiwen, Jiang Bo, Hou Quanlin, et al. FTIR spectroscopic study on the stress effect of compositions of macromolecular structure in tectonically deformed coals[J]. Spectroscopy and Spectral Analysis, 2005, 25(8): 1216-1220.
[17] 降文萍. 煤阶对煤吸附能力影响的微观机理研究[J]. 中国煤层气,2009,6(2):19-22,34.

Jiang Wenping. Microscopic mechanism study on the influence of coal rank on adsorption capacity[J]. China Coalbed Methane, 2009, 6(2): 19-22, 34.
[18] 张小兵,王蔚,张玉贵,等. 构造煤微晶取向生长机制探讨[J]. 煤炭学报,2016,41(3):712-718.

Zhang Xiaobing, Wang Wei, Zhang Yugui, et al. Oriented growth mechanism of tectonic coal microcrystal[J]. Journal of China Coal Society, 2016, 41(3): 712-718.
[19] 张小兵,姜家钰,郇恒恒,等. 中阶煤结构跃变的构造煤IR证据[EB/OL]. 北京:中国科技论文在线. [2017-04-24]. http://www.paper.edu.cn/releasepaper/content/201704-383. http://www.paper.edu.cn/releasepaper/content/201704-383

Zhang Xiaobing, Jiang Jiayu, Huan Hengheng, et al. Study on structure jump of middle-rank coal: Tectonic coals infrared evidence[EB/OL]. Beijing: Sciencepaper Online. [2017-04-24]. http://www.paper.edu.cn/releasepaper/content/201704-383. http://www.paper.edu.cn/releasepaper/content/201704-383
[20] 李云波,姜波. 宿县矿区构造特征及其对煤层气赋存的控制[J]. 中国煤炭地质,2014,26(11):26-30.

Li Yunbo, Jiang Bo. Structural characteristics and controlling on CBM hosting in Suxian mining area[J]. Coal Geology of China, 2014, 26(11): 26-30.
[21] Donohue M D, Aranovich G L. A new classification of isotherms for Gibbs adsorption of gases on solids[J]. Fluid Phase Equilibria, 1999, 158-160: 557-563.
[22] 王公达. 煤层瓦斯吸附解吸迟滞规律及其对渗流特性影响研究[D]. 北京:中国矿业大学(北京),2015.

Wang Gongda. Adsorption and desorption hysteresis of coal seam gas and its influence on gas permeability[D]. Beijing: China University of Mining and Technology (Beijing), 2015.
[23] 罗陨飞,李文华. 中低变质程度煤显微组分大分子结构的XRD研究[J]. 煤炭学报,2004,29(3):338-341.

Luo Yunfei, Li Wenhua. X-ray diffraction analysis on the different macerals of several low-to-medium metamorpic grade coals[J]. Journal of China Coal Society, 2004, 29(3): 338-341.
[24] 李霞,曾凡桂,王威,等. 低中煤级煤结构演化的XRD表征[J]. 燃料化学学报,2016,44(7):777-783.

Li Xia, Zeng Fangui, Wang Wei, et al. XRD characterization of structural evolution in low-middle rank coals[J]. Journal of Fuel Chemistry and Technology, 2016, 44(7): 777-783.
[25] 翁成敏,潘志贵. 峰峰煤田煤的X射线衍射分析[J]. 地球科学,1981(1):214-221.

Weng Chengmin, Pan Zhigui. X-Ray diffraction analysis of coal in Fengfeng coalfield[J]. Earth Science, 1981(1): 214-221.
[26] Bustin R M, Ross J V, Rouzaud J N. Mechanisms of graphite formation from kerogen: Experimental evidence[J]. International Journal of Coal Geology, 1995, 28(1): 1-36.
[27] 姜波,秦勇,金法礼. 高温高压下煤超微构造的变形特征[J]. 地质科学,1998,33(1):18-25.

Jiang Bo, Qin Yong, Jin Fali. Deformation characteristics of super-microstructures of coal under the condition of high temperature and confining pressure[J]. Scientia Geologica Sinica, 1998, 33(1): 18-25.
[28] 琚宜文,姜波,王桂樑,等. 构造煤结构及储层物性[M]. 徐州:中国矿业大学出版社,2005.

Ju Yiwen, Jiang Bo, Wang Guiliang, et al. Tectonic coals structures and physical properties of reservoirs[M]. Xuzhou: China University of Mining and Technology Press, 2005.
[29] 李小明,曹代勇. 不同变质类型煤的结构演化特征及其地质意义[J]. 中国矿业大学学报,2012,41(1):74-81.

Li Xiaoming, Cao Daiyong. The structural evolution character of different types of coal metamorphism and its geological significance[J]. Journal of China University of Mining & Technology, 2012, 41(1): 74-81.
[30] 张加琪. 煤结构对软硬煤瓦斯放散规律差异性的影响[D]. 焦作:河南理工大学,2016.

Zhang Jiaqi. Influence of coal structure on difference of gas irradiation rules between soft coal and hard coal[D]. Jiaozuo: Henan Polytechnic University, 2016.
[31] 曹代勇,李小明,张守仁. 构造应力对煤化作用的影响—应力降解机制与应力缩聚机制[J]. 中国科学(D辑):地球科学,2006,36(1):59-68.

Cao Daiyong, Li Xiaoming, Zhang Shouren. Influence of tectonic stress on coalification: Stress degradation mechanism and stress polycondensation mechanism[J]. Science China (Seri. D): Earth Sciences, 2006, 36(1): 59-68.
[32] 张玉贵,张子敏,曹运兴. 构造煤结构与瓦斯突出[J]. 煤炭学报,2007,32(3):281-284.

Zhang Yugui, Zhang Zimin, Cao Yunxing. Deformed-coal structure and control to coal-gas outburst[J]. Journal of China Coal Society, 2007, 32(3): 281-284.
[33] 路冠文,汪吉林,张娅婷,等. 西南地区构造煤吸附解吸特性研究[J]. 煤矿安全,2016,47(2):9-13.

Lu Guanwen, Wang Jilin, Zhang Yating, et al. Study on gas adsorption and desorption characteristics of tectonic coal in Southwest China[J]. Safety in Coal Mines, 2016, 47(2): 9-13.