[1] 邹才能,董大忠,王玉满,等. 中国页岩气特征、挑战及前景(一)[J]. 石油勘探与开发,2015,42(6):689-701.

Zou Caineng, Dong Dazhong, Wang Yuman, et al. Shale gas in China: Characteristics, challenges and prospects (Ⅰ)[J]. Petroleum Exploration and Development, 2015, 42(6): 689-701.
[2] 邹才能,董大忠,王玉满,等. 中国页岩气特征、挑战及前景(二)[J]. 石油勘探与开发,2016,43(2):166-178.

Zou Caineng, Dong Dazhong, Wang Yuman, et al. Shale gas in China: Characteristics, challenges and prospects (Ⅱ)[J]. Petroleum Exploration and Development, 2016, 43(2): 166-178.
[3] 董大忠,王玉满,李新景,等. 中国页岩气勘探开发新突破及发展前景思考[J]. 天然气工业,2016,36(1):19-32.

Dong Dazhong, Wang Yuman, Li Xinjing, et al. Breakthrough and prospect of shale gas exploration and development in China[J]. Natural Gas Industry, 2016, 36(1): 19-32.
[4] 张小龙,张同伟,李艳芳,等. 页岩气勘探和开发进展综述[J]. 岩性油气藏,2013,25(2):116-122.

Zhang Xiaolong, Zhang Tongwei, Li Yanfang, et al. Research advance in exploration and development of shale gas[J]. Lithologic Reservoirs, 2013, 25(2): 116-122.
[5] 邱振,邹才能. 非常规油气沉积学:内涵与展望[J]. 沉积学报,2020,38(1):1-29.

Qiu Zhen, Zou Caineng. Unconventional petroleum sedimentology: Connotation and prospect[J]. Acta Sedimentologica Sinica, 2020, 38(1): 1-29.
[6] 赵迪斐,郭英海,杨玉娟,等. 渝东南下志留统龙马溪组页岩储集层成岩作用及其对孔隙发育的影响[J]. 古地理学报,2016,18(5):843-856.

Zhao Difei, Guo Yinghai, Yang Yujuan, et al. Shale reservoir diagenesis and its impacts on pores of the Lower Silurian Longmaxi Formation in southeastern Chongqing[J]. Journal of Palaeogeography, 2016, 18(5): 843-856.
[7] 琚宜文,黄骋,孙岩,等. 纳米地球科学:内涵与意义[J]. 地球科学,2018,43(5):1367-1383.

Ju Yiwen, Huang Cheng, Sun Yan, et al. Nanogeoscience: Connotation and significance[J]. Earth Science, 2018, 43(5): 1367-1383.
[8] 郭英海,赵迪斐. 微观尺度海相页岩储层微观非均质性研究[J]. 中国矿业大学学报,2015,44(2):300-307.

Guo Yinghai, Zhao Difei. Analysis of micro-scale heterogeneity characteristics in marine shale gas reservoir[J]. Journal of China University of Mining & Technology, 2015, 44(2): 300-307.
[9] 王同,杨克明,熊亮,等. 川南地区五峰组—龙马溪组页岩层序地层及其对储层的控制[J]. 石油学报,2015,36(8):915-925.

Wang Tong, Yang Keming, Xiong Liang, et al. Shale sequence stratigraphy of Wufeng-Longmaxi Formation in southern Sichuan and their control on reservoirs[J]. Acta Petrolei Sinica, 2015, 36(8): 915-925.
[10] 李一凡,樊太亮,高志前,等. 渝东南地区志留系黑色页岩层序地层研究[J]. 天然气地球科学,2012,23(2):299-306.

Li Yifan, Fan Tailiang, Gao Zhiqian, et al. Sequence stratigraphy of Silurian black shale and its distribution in the southeast area of Chongqing[J]. Natural Gas Geoscience, 2012, 23(2): 299-306.
[11] 赵迪斐,郭英海,Wang G,等. 层序地层格架及其对页岩储层发育特征的影响:以四川盆地龙马溪组页岩为例[J]. 沉积学报,2020,38(2):379-397.

Zhao Difei, Guo Yinghai, Wang G, et al. Sequence stratigraphic framework and its influence on the development characteristics of shale reservoirs: Taking the Longmaxi Formation shale in the Sichuan Basin as an example[J]. Acta Sedimentologica Sinica, 2020, 38(2): 379-397.
[12] 李庆辉,陈勉,金衍,等. 页岩脆性的室内评价方法及改进[J]. 岩石力学与工程学报,2012,31(8):1680-1685.

Li Qinghui, Chen Mian, Jin Yan, et al. Indoor evaluation method for shale brittleness and improvement[J]. Chinese Journal of Rock Mechanics and Engineering, 2012, 31(8): 1680-1685.
[13] Loucks R G, Reed R M, Ruppel S C, et al. Morphology, genesis, and distribution of nanometer-scale pores in siliceous mudstones of the Mississippian Barnett Shale[J]. Journal of Sedimentary Research, 2009, 79(12): 848-861.
[14] 栾国强,董春梅,马存飞,等. 基于热模拟实验的富有机质泥页岩成岩作用及演化特征[J]. 沉积学报,2016,34(6):1208-1216.

Luan Guoqiang, Dong Chunmei, Ma Cunfei, et al. Pyrolysis simulation experiment study on diagenesis and evolution of organic-rich shale[J]. Acta Sedimentologica Sinica, 2016, 34(6): 1208-1216.
[15] 孔令明,万茂霞,严玉霞,等. 四川盆地志留系龙马溪组页岩储层成岩作用[J]. 天然气地球科学,2015,26(8):1547-1555.

Kong Lingming, Wan Maoxia, Yan Yuxia, et al. Reservior diagenesis research of Silurian Longmaxi Formation in Sichuan Basin[J]. Natural Gas Geoscience, 2015, 26(8): 1547-1555.
[16] Liu H M, Zhang S, Song G Q, et al. Effect of shale diagenesis on pores and storage capacity in the Paleogene Shahejie Formation, Dongying Depression, Bohai Bay Basin, East China[J]. Marine and Petroleum Geology, 2019, 103: 738-752.
[17] 张琳娜,樊隽轩,陈清. 华南上奥陶统观音桥层的空间分布和古地理重建[J]. 科学通报,2016,61(18):2053-2063.

Zhang Linna, Fan Junxuan, Chen Qing. Geographic distribution and palaeogeographic reconstruction of the Upper Ordovician Kuanyinchiao Bed in South China[J]. Chinese Science Bulletin, 2016, 61(18): 2053-2063.
[18] 周恳恳. 中上扬子及其东南缘中奥陶世—早志留世沉积特征与岩相古地理演化[D]. 北京:中国地质科学院,2015.

Zhou Kenken. Middle Ordovician-Early Silurian lithofacies paleogeography of Middle-Upper Yangtze and its southeastern margin[D]. Beijing: Chinese Academy of Geological Sciences, 2015.
[19] Wang Y M, Li X J, Dong D Z, et al. Major controlling factors for the high-quality shale of Wufeng–Longmaxi Formation, Sichuan Basin[J]. Energy Exploration & Exploitation, 2017, 35(4): 444-462.
[20] 窦菲菲. 川东龙马溪组下部页岩储层特征研究[D]. 徐州:中国矿业大学,2014.

Dou Feifei. Reservoir characteristics research of the lower Longmaxi Formation shale in east of Sichuan[D]. Xuzhou: China University of Mining and Technology, 2014.
[21] 赵杏媛,王行信,张有瑜. 中国含油气盆地粘土矿物[M]. 武汉:中国地质大学出版社,1995:47-49.

Zhao Xingyuan, Wang Hangxin, Zhang Youyu. Clay minerals in hydrocarbon-bearing basins of China [M]. Wuhan: China University of Geosciences Press, 1995: 47-49.
[22] 张哲,陈小明,赵明. 利用伊/蒙混层矿物对山东济阳坳陷古地温和剥蚀深度的反演[J]. 南京大学学报(自然科学版),2008,44(6):621-631.

Zhang Zhe, Chen Xiaoming, Zhao Ming. The use of the mixed-layer illite/smectite to trace the paleotemperature and the eroded strata thickness in the Jiyang Basin, eastern China[J]. Journal of Nanjing University (Natural Sciences), 2008, 44(6): 621-631.
[23] 赵迪斐,郭英海,毛潇潇,等. 渝东南龙马溪组下部页岩岩石学特征与优质储层形成机理[J]. 河南理工大学学报(自然科学版),2017,36(4):32-41.

Zhao Difei, Guo Yinghai, Mao Xiaoxiao, et al. Petrographic characteristics of Lower Longmaxi Formation shale in south-east Chongqing and the Formation mechanism of high quality reservoir[J]. Journal of Henan Polytechnic University (Natural Science), 2017, 36(4): 32-41.
[24] 赵迪斐,郭英海,朱炎铭,等. 海相页岩储层微观孔隙非均质性及其量化表征[J]. 中国矿业大学学报,2018,47(2):296-307.

Zhao Difei, Guo Yinghai, Zhu Yanming, et al. Analysis of micro-scale heterogeneity characteristics in marine shale gas reservoir (II): Pore heterogeneity and its quantitative characterization[J]. Journal of China University of Mining & Technology, 2018, 47(2): 296-307.
[25] Cardott B J, Landis C R, Curtis M E. Post-oil solid bitumen network in the Woodford Shale, USA -A potential primary migration pathway[J]. International Journal of Coal Geology, 2015, 139: 106-113.
[26] Loucks R G, Reed R M, Ruppel S C, et al. Spectrum of pore types and networks in mudrocks and a descriptive classification for matrix-related mudrock pores[J]. AAPG Bulletin, 2012, 96(6): 1071-1098.
[27] 刘金库,彭军,石岩,等. 致密砂岩储层石英溶蚀成因及对孔隙发育的影响:以川中—川南过渡带须家河组为例[J]. 石油学报,2015,36(9):1090-1097.

Liu Jinku, Peng Jun, Shi Yan, et al. The genesis of quartz dissolution in tight sand reservoirs and its impact on pore development: A case study of Xujiahe Formation in the transitional zone of central-southern Sichuan Basin[J]. Acta Petrolei Sinica, 2015, 36(9): 1090-1097.
[28] 张正顺,胡沛青,沈娟,等. 四川盆地志留系龙马溪组页岩矿物组成与有机质赋存状态[J]. 煤炭学报,2013,38(5):766-771.

Zhang Zhengshun, Hu Peiqing, Shen Juan, et al. Mineral compositions and organic matter occurrence modes of Lower Silurian Longmaxi Formation of Sichuan Basin[J]. Journal of China Coal Society, 2013, 38(5): 766-771.
[29] 赵迪斐,郭英海,朱炎铭,等. 龙马溪组页岩黄铁矿微观赋孔特征及地质意义[J]. 沉积学报,2018,36(5):864-876.

Zhao Difei, Guo Yinghai, Zhu Yanming, et al. Micropore characteristics and geological significance of pyrite in shale rocks of Longmaxi Formation[J]. Acta Sedimentologica Sinica, 2018, 36(5): 864-876.
[30] 冶正阳. 云南寻甸下寒武统筇竹寺组页岩储层特征研究[D]. 北京:中国矿业大学,2018.

Ye Zhengyang. Research on shale reservoir characteristics of the Early Cambrian Qiongzhusi Formation in Xundian, Yunnan[D]. Beijing: China University of Mining and Technology, 2018.
[31] 王秀平,牟传龙,王启宇,等. 川南及邻区龙马溪组黑色岩系成岩作用[J]. 石油学报,2015,36(9):1035-1047.

Wang Xiuping, Mou Chuanlong, Wang Qiyu, et al. Diagenesis of black shale in Longmaxi Formation, southern Sichuan Basin and its periphery[J]. Acta Petrolei Sinica, 2015, 36(9): 1035-1047.
[32] Peltonen C, Marcussen Ø, Bjørlykke K, et al. Clay mineral diagenesis and quartz cementation in mudstones: The effects of smectite to illite reaction on rock properties[J]. Marine and Petroleum Geology, 2009, 26(6): 887-898.
[33] Hower W F. G. W. Brindley and G. Brown, Editors. Crystal structures of clay minerals and their identification. London (Mineralogical Society), Monograph 5, 1980. viii + 496 pp., 103 figs., 7 pls. Price £28·00 including postage[J]. Mineralogical Magazine, 1981, 44(335): 363.
[34] 赵迪斐. 川东下古生界五峰组—龙马溪组页岩储层孔隙结构精细表征[D]. 徐州:中国矿业大学,2020.

Zhao Difei. Quantitative characterization of pore structure of shale reservoirs in the Lower Paleozoic Wufeng-Longmaxi Formation of the east Sichuan area[D]. Xuzhou: China University of Mining and Technology, 2020.
[35] Zhang D C, Ranjith P G, Perera M S A. The brittleness indices used in rock mechanics and their application in shale hydraulic fracturing: A review[J]. Journal of Petroleum Science and Engineering, 2016, 143: 158-170.
[36] Gholami R, Rasouli V, Sarmadivaleh M, et al. Brittleness of gas shale reservoirs: A case study from the North Perth Basin, Australia[J]. Journal of Natural Gas Science and Engineering, 2016, 33: 1244-1259.
[37] 陈红宇,卢龙飞,刘伟新,等. 蛋白石硅质页岩成岩过程中的孔隙结构变化特征[J]. 石油实验地质,2017,39(3):341-347.

Chen Hongyu, Lu Longfei, Liu Weixin, et al. Pore network changes in opaline siliceous shale during diagenesis[J]. Petroleum Geology and Experiment, 2017, 39(3): 341-347.
[38] 付常青. 渝东南五峰组—龙马溪组页岩储层特征与页岩气富集研究[D]. 徐州:中国矿业大学,2017.

Fu Changqing. Study on reservoir characteristics and shale gas enrichment of Wufeng-Longmaxi Formation shale in southeast Chongqing[D]. Xuzhou: China University of Mining and Technology, 2017.
[39] 王玉满,李新景,王皓,等. 四川盆地东部上奥陶统五峰组—下志留统龙马溪组斑脱岩发育特征及地质意义[J]. 石油勘探与开发,2019,46(4):653-665.

Wang Yuman, Li Xinjing, Wang Hao, et al. Developmental characteristics and geological significance of the bentonite in the Upper Ordovician Wufeng-Lower Silurian Longmaxi Formation in eastern Sichuan Basin, SW China[J]. Petroleum Exploration and Development, 2019, 46(4): 653-665.
[40] Fairbridge R W. Phases of diagenesis and authigenesis[M]//Larsen G, Chilingar G V. Developments in sedimentology. Amsterdam: Elsevier, 1967: 19-89.
[41] 郭彤楼,张汉荣. 四川盆地焦石坝页岩气田形成与富集高产模式[J]. 石油勘探与开发,2014,41(1):28-36.

Guo Tonglou, Zhang Hanrong. Formation and enrichment mode of Jiaoshiba shale gas field, Sichuan Basin[J]. Petroleum Exploration and Development, 2014, 41(1): 28-36.
[42] Li Y F, Zhang T W, Ellis G S, et al. Depositional environment and organic matter accumulation of Upper Ordovician⁃Lower Silurian marine shale in the Upper Yangtze Platform, South China[J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 2017, 466: 252-264.
[43] Zhao D F, Guo Y G, Yin S, et al. Prediction of geomechanical sweet spots in a tight gas sandstone reservoir: A case study of Lower Permian strata in the southern Qinshui Basin, China[J]. Interpretation, 2019, 7(1): T207-T219.
[44] Li Z C, Li L C, Li M, et al. A numerical investigation on the effects of rock brittleness on the hydraulic fractures in the shale reservoir[J]. Journal of Natural Gas Science and Engineering, 2018, 50: 22-32.
[45] 武瑾,梁峰,吝文,等. 渝东北地区巫溪2井五峰组—龙马溪组页岩气储层及含气性特征[J]. 石油学报,2017,38(5):512-524.

Wu Jin, Liang Feng, Lin Wen, et al. Reservoirs characteristics and gas-bearing capacity of Wufeng-Longmaxi Formation shale in well WX-2, northeast Chongqing area[J]. Acta Petrolei Sinica, 2017, 38(5): 512-524.