[1] 梁狄刚,冉隆辉,戴弹申,等. 四川盆地中北部侏罗系大面积非常规石油勘探潜力的再认识[J]. 石油学报,2011,32(1):8-17.

Liang Digang, Ran Longhui, Dai Danshen, et al. A re-recognition of the prospecting potential of Jurassic large-area and non-conventional oils in the central-northern Sichuan Basin[J]. Acta Petrolei Sinica, 2011, 32(1): 8-17.
[2] 杨跃明,黄东. 四川盆地侏罗系湖相页岩油气地质特征及勘探开发新认识[J]. 天然气工业,2019,39(6):22-33.

Yang Yueming, Huang Dong. Geological characteristics and new understandings of exploration and development of Jurassic lacustrine shale oil and gas in the Sichuan Basin[J]. Natural Gas Industry, 2019, 39(6): 22-33.
[3] 郭旭升,胡东风,李宇平,等. 海相和湖相页岩气富集机理分析与思考:以四川盆地龙马溪组和自流井组大安寨段为例[J]. 地学前缘,2016,23(2):18-28.

Guo Xusheng, Hu Dongfeng, Li Yuping, et al. Analyses and thoughts on accumulation mechanisms of marine and lacustrine shale gas: A case study in shales of Longmaxi Formation and Da’anzhai Section of Ziliujing Formation in Sichuan Basin[J]. Earth Science Frontiers, 2016, 23(2): 18-28.
[4] 陈盛吉,万茂霞,杜敏,等. 川中地区侏罗系油气源对比及烃源条件研究[J]. 天然气勘探与开发,2005,28(2):11-14,42.

Chen Shengji, Wan Maoxia, Du Min, et al. Jurassic oil-gas source correlation and hydrocarbon source condition in central Sichuan region[J]. Natural Gas Exploration & Development, 2005, 28(2): 11-14, 42.
[5] 杨晓萍,邹才能,陶士振,等. 四川盆地上三叠统—侏罗系含油气系统特征及油气富集规律[J]. 中国石油勘探,2005,10(2):15-22.

Yang Xiaoping, Zou Caineng, Tao Shizhen, et al. Characteristics of Upper Triassic-Jurassic oil and gas system in Sichuan Basin and oil and gas abundance law[J]. China Petroleum Exploration, 2005, 10(2): 15-22.
[6] 王顺玉,王廷栋. 四川盆地凝析油的地球化学特征[J]. 石油与天然气地质,1990,11(4):454-461.

Wang Shunyu, Wang Tingdong. Geochemical characters of condensates in Sichuan Basin[J]. Oil & Gas Geology, 1990, 11(4): 454-461.
[7] Farrimond P, Taylor A, Telnӕs N. Biomarker maturity parameters: The role of generation and thermal degradation[J]. Organic Geochemistry, 1998, 29(5/6/7): 1181-1197.
[8] 郭正吾,邓康龄,韩永辉,等. 四川盆地形成与演化[M]. 北京:地质出版社,1996:1-200.

Guo Zhengwu, Deng Kangling, Han Yonghui, et al. The formation and development of Sichuan Basin[M]. Beijing: Geology Press, 1996: 1-200.
[9] 蒋裕强,漆麟,邓海波,等. 四川盆地侏罗系油气成藏条件及勘探潜力[J]. 天然气工业,2010,30(3):22-26.

Jiang Yuqiang, Qi Lin, Deng Haibo, et al. Hydrocarbon accumulation conditions and exploration potentials of the Jurassic reservoirs in the Sichuan Basin[J]. Natural Gas Industry, 2010, 30(3): 22-26.
[10] 杨跃明,黄东,杨光,等. 四川盆地侏罗系大安寨段湖相页岩油气形成地质条件及勘探方向[J]. 天然气勘探与开发,2019,42(2):1-12.

Yang Yueming, Huang Dong, Yang Guang, et al. Geological conditions to form lacustrine facies shale oil and gas of Jurassic Daanzhai member in Sichuan Basin and exploration directions[J]. Natural Gas Exploration and Development, 2019, 42(2): 1-12.
[11] 邓康龄. 四川盆地柏垭—石龙场地区自流井组大安寨段油气成藏地质条件[J]. 油气地质与釆收率,2001,8(2):9-13.

Deng Kangling. Geological conditions of Da’anzhai oil-gas reservoir forming in artesian well group of Baiya-Shilongchang region in Sichuan Basin[J]. Petroleum Geology and Recovery Efficiency, 2001, 8(2): 9-13.
[12] 马旭杰,周文,陈洪德,等. 川西—川北地区千佛崖组页岩气勘探潜力与方向[J]. 成都理工大学学报(自然科学版),2013,40(5):562-568.

Ma Xujie, Zhou Wen, Chen Hongde, et al. Shale gas exploration potential and direction of Qianfoya Formation in west Sichuan and north Sichuan, China[J]. Journal of Chengdu University of Technology (Science & Technology Edition), 2013, 40(5): 562-568.
[13] 朱彤,龙胜祥,王烽,等. 四川盆地湖相泥页岩沉积模式及岩石相类型[J]. 天然气工业,2016,36(8):22-28.

Zhu Tong, Long Shengxiang, Wang Feng, et al. Sedimentary models and lithofacies types of lacustrine mud shale in the Sichuan Basin[J]. Natural Gas Industry, 2016, 36(8): 22-28.
[14] 盛国英,卢鸿,廖晶,等. 地质体中藿烷类新化合物研究进展[J]. 地球化学,2019,48(5):421-446.

Sheng Guoying, Lu Hong, Liao Jing, et al. Advances on novel hopanoids present in geological bodies[J]. Geochimica, 2019, 48(5): 421-446.
[15] Peters K E, Walters C C, Moldowan J M. The biomarker guide: Volume 2, biomarkers and isotopes in petroleum systems and earth history[M]. 2nd ed. Cambridge: Cambridge University Press, 2005: 475-985.
[16] Moldowan J M, Fago F J, Carlson R M K, et al. Rearranged hopanes in sediments and petroleum[J]. Geochimica et Cosmochimica Acta, 1991, 55(11): 3333-3353.
[17] Telnaes N, Isaksen G H, Farrimond P. Unusual triterpane distributions in lacustrine oils[J]. Organic Geochemistry, 1992, 18(6): 785-789.
[18] Obermajer M, Osadetz K G, Fowler M G, et al. Delineating compositional variabilities among crude oils from Central Montana, USA, using light hydrocarbon and biomarker characteristics[J]. Organic Geochemistry, 2002, 33(12): 1343-1359.
[19] 张敏,李谨,陈菊林. 热力作用对烃源岩中重排藿烷类化合物形成的作用[J]. 沉积学报,2018,36(5):1033-1039.

Zhang Min, Li Jin, Chen Julin. Thermal effect on the distribution of rearranged hopanes in hydrocarbon source rocks[J]. Acta Sedimentologica Sinica, 2018, 36(5): 1033-1039.
[20] Lockhart R S, Meredith W, Love G D, et al. Release of bound aliphatic biomarkers via hydropyrolysis from Type II kerogen at high maturity[J]. Organic Geochemistry, 2008, 39(8): 1119-1124.
[21] Wu L L, Horsfield B. Initial insights into releasing bound biomarkers from kerogen matrices using microscale sealed vessel catalytic hydrogenation (MSSV-HY)[J]. Organic Geochemistry, 2019, 130: 22-32.
[22] 梁狄刚,郭彤楼,陈建平,等. 中国南方海相生烃成藏研究的若干新进展(二):南方四套区域性海相烃源岩的地球化学特征[J]. 海相油气地质,2009,14(1):1-15.

Liang Digang, Guo Tonglou, Chen Jianping, et al. Some progresses on studies of hydrocarbon generation and accumulation in marine sedimentary regions, southern China (Part 2): Geochemical characteristics of four suits of regional marine source rocks, South China[J]. Marine Origin Petroleum Geology, 2009, 14(1): 1-15.
[23] 包建平,倪春华,朱翠山,等. 黔北坳陷高演化烃源岩中正构烷烃单体烃碳同位素组成[J]. 石油实验地质,2019,41(6):838-848.

Bao Jianping, Ni Chunhua, Zhu Cuishan, et al. Carbon isotope compositions of individual alkanes in highly mature source rocks from northern Guizhou Depression[J]. Petroleum Geology & Experiment, 2019, 41(6): 838-848.
[24] Farrimond P, Love G D, Bishop A N, et al. Evidence for the rapid incorporation of hopanoids into kerogen[J]. Geochimica et Cosmochimica Acta, 2003, 67(7): 1383-1394.
[25] Farrimond P, Telnӕs N. Three series of rearranged hopanes in Toarcian sediments (northern Italy)[J]. Organic Geochemistry, 1996, 25(3/4): 165-177.
[26] 赵孟军,张水昌. 17α(H)-重排藿烷在塔里木盆地中的指相意义[J]. 石油勘探与开发,2001,28(1):36-38.

Zhao Menjun, Zhang Shuichang. The special sedimentary facies indicated by 17α(H)-diahopanes in Tarim Basin[J]. Petroleum Exploration and Development, 2001, 28(1): 36-38.
[27] 张水昌,张宝民,边立曾,等. 8亿多年前由红藻堆积而成的下马岭组油页岩[J]. 中国科学(D辑):地球科学,2007,37(5):636-643.

Zhang Shuichang, Zhang Baomin, Bian Lizeng, et al. Xiamaling Formation oil shale deposits from red algae in 800 million years ago[J]. Science China (Seri. D): Earth Sciences, 2007, 37(5): 636-643.
[28] 朱扬明,钟荣春,蔡勋育,等. 川中侏罗系原油重排藿烷类化合物的组成及成因探讨[J]. 地球化学,2007,36(3):253-260.

Zhu Yangming, Zhong Rongchun, Cai Xunyu, et al. Composition and origin approach of rearranged hopanes in Jurassic oils of central Sichuan Basin[J]. Geochimica, 2007, 36(3): 253-260.
[29] 张文正,杨华,侯林慧,等. 鄂尔多斯盆地延长组不同烃源岩17α(H)-重排藿烷的分布及其地质意义[J]. 中国科学(D辑):地球科学,2009,39(10):1438-1445.

Zhang Wenzheng, Yang Hua, Hou Linhui, et al. Distribution and geological significance of 17α(H)-diahopanes from different hydrocarbon source rocks of Yanchang Formation in Ordos Basin[J]. Science China (Seri. D): Earth Sciences, 2009, 39(10): 1438-1445.
[30] 程熊,陈小慧,张敏. 鄂尔多斯盆地东北部上古生界煤系烃源岩17α(H)-重排藿烷类的分布及成因探讨[J]. 沉积学报,2014,32(4):790-796.

Cheng Xiong, Chen Xiaohui, Zhang Min. Origin of 17α(H)-rearranged hopanes in Upper-Palaeozoic coal-bearing source rocks in northeast Ordos Basin[J]. Acta Sedimentologica Sinica, 2014, 32(4): 790-796.
[31] Luo G M, Hallmann C, Xie S C, et al. Comparative microbial diversity and redox environments of black shale and stromatolite facies in the Mesoproterozoic Xiamaling Formation[J]. Geochimica et Cosmochimica Acta, 2015, 151: 150-167.
[32] Jiang L, George S C, Zhang M. The occurrence and distribution of rearranged hopanes in crude oils from the Lishu Depression, Songliao Basin, China[J]. Organic Geochemistry, 2018, 115: 205-219.
[33] Talbot H M, Rohmer M, Farrimond P. Structural characterisation of unsaturated bacterial hopanoids by atmospheric pressure chemical ionisation liquid chromatography/ion trap mass spectrometry[J]. Rapid Communications in Mass Spectrometry, 2007, 21(10): 1613-1622.
[34] Xiao H, Li M J, Wang W Q, et al. Identification, distribution and geochemical significance of four rearranged hopane series in crude oil[J]. Organic Geochemistry, 2019, 138: 103929.
[35] Smith M, Bend S. Geochemical analysis and familial association of Red River and Winnipeg reservoired oils of the Williston Basin, Canada[J]. Organic Geochemistry, 2004, 35(4): 443-452.
[36] Lin R Z, Wang P R. PAH in fossil fuels and their geochemical significance[J]. Journal of Southeast Asian Earth Sciences, 1991, 5(1/2/3/4): 257-262.
[37] Asif M, Wenger L M. Heterocyclic aromatic hydrocarbon distributions in petroleum: A source facies assessment tool[J]. Organic Geochemistry, 2019, 137: 103896.
[38] 李颖,朱扬明,郝芳,等. 四川盆地北部上三叠统须家河组高成熟煤系烃源岩芳烃热演化与应用[J]. 中国科学(D辑):地球科学,2015,45(7):953-962.

Li Ying, Zhu Yangming, Hao Fang, et al. Thermal evolution and applications of aromatic hydrocarbons in highly mature coal-bearing source rocks of the Upper Triassic Xujiahe Formation in the northern Sichuan Basin[J]. Science China (Seri. D): Earth Sciences, 2015, 45(7): 953-962.