[1] |
周小康, 郭建华, 2014: 湘中涟源凹陷油气成藏与保存条件[J]. 地质力学学报, 20, 222-229.
|
Zhou Xiaokang, Guo Jianhua, 2014: Petroleum accumulation characteristics and preservation conditions of Lianyuan Sag in the central Hunan[J]. Journal of Geomechanics, 20, 222-229.
|
[2] |
敬乐, 潘继平, 徐国盛, 2012: 湘中拗陷海相页岩层系岩相古地理特征[J]. 成都理工大学学报(自然科学版), 39, 215-222.
|
Jing Le, Pan Jiping, Xu Guosheng, 2012: Lithofacies-paleogeography characteristics of the marine shale series of strata in the Xiangzhong Depression, Hunan, China[J]. Journal of Chengdu University of Technology (Science & Technology Edition), 39, 215-222.
|
[3] |
张琳婷, 郭建华, 焦鹏, 2015: 湘西北地区牛蹄塘组页岩气有利地质条件及成藏区带优选[J]. 中南大学学报(自然科学版), 46, 1715-1722.
|
Zhang Linting, Guo Jianhua, Jiao Peng, 2015: Geological conditions and favorable exploration zones of shale gas in Niutitang Formation at northwest Hunan[J]. Journal of Central South University (Science and Technology), 46, 1715-1722.
|
[4] |
祝庆敏, 卢龙飞, 潘安阳, 2021: 湘西地区下寒武统牛蹄塘组页岩沉积环境与有机质富集[J]. 石油实验地质, 43, 797-809.
|
Zhu Qingmin, Lu Longfei, Pan Anyang, 2021: Sedimentary environment and organic matter enrichment of the lower Cambrian Niutitang Formation shale, western Hunan province, China[J]. Petroleum Geology & Experiment, 43, 797-809.
|
[5] |
王河锦, 周健, 徐庆生, 2002: 湘中北黄土店—仙溪中新元古界—下古生界的甚低级变质作用[J]. 中国科学(D辑):地球科学, 32, 742-750.
|
Wang Hejin, Zhou Jian, Xu Qingsheng, 2002: Very low-grade metamorphism of the Meso-Neoproterozoic and the Lower Paleozoic along the profile from Huangtu-Dian to Xianxi in the central-northern part of Hunan province, China[J]. Science China (Seri. D): Earth Sciences, 32, 742-750.
|
[6] |
朱明新, 王河锦, 2001: 长沙—澧陵—浏阳一带冷家溪群及板溪群的甚低级变质作用[J]. 岩石学报, 17, 291-300.
|
Zhu Mingxin, Wang Hejin, 2001: Very low-grade metamorphism of the Lengjiaxi and Banxi Groups around the area of Changsha- Liling-Liuyang, Hunan province, China[J]. Acta Petrologica Sinica, 17, 291-300.
|
[7] |
罗薇, 何幼斌, 蒋金晶, 2012: 湘南地区奥陶系岩石组合及其沉积环境[J]. 地质通报, 31, 1105-1114.
|
Luo Wei, He Youbin, Jiang Jinjing, 2012: An analysis of Ordovician rock association and sedimentary environment in southern Hunan province[J]. Geological Bulletin of China, 31, 1105-1114.
|
[8] |
葛祥英, 牟传龙, 周恳恳, 2013: 湖南奥陶纪沉积演化特征[J]. 中国地质, 40, 1829-1841.
|
Ge Xiangying, Mu Chuanlong, Zhou Kenken, 2013: Characteristics of Ordovician sedimentary evolution in Hunan province[J]. Geology in China, 40, 1829-1841.
|
[9] |
葛祥英, 牟传龙, 周恳恳, 2014: 湖南晚奥陶世凯迪晚期—赫南特期沉积相及岩相古地理[J]. 沉积学报, 32, 8-18.
|
Ge Xiangying, Mu Chuanlong, Zhou Kenken, 2014: Sedimentary facies and lithofacies palaeogeography in the Late Katian-Hirnantian of Late Ordovician in Hunan province[J]. Acta Sedimentologica Sinica, 32, 8-18.
|
[10] |
吴诗情, 郭原草, 郭建华, 2020: 湘中南中奥陶统烟溪组页岩地球化学特征及有机质富集机理[J]. 中南大学学报(自然科学版), 51, 1255-1267.
|
Wu Shiqing, Guo Yuancao, Guo Jianhua, 2020: Geochemistry and organic enrichment mechanism of shale in Yanxi Formation of Middle Ordovician in central-south Hunan[J]. Journal of Central South University (Science and Technology), 51, 1255-1267.
|
[11] |
李杰, 郭建华, 王宗秀, 2018: 湘中地区中奥陶统烟溪组富有机质页岩地质特征[J]. 中南大学学报(自然科学版), 49, 2776-2786.
|
Li Jie, Guo Jianhua, Wang Zongxiu, 2018: Geological characteristics of organic-rich shale in Yanxi Formation of Middle Ordovician in central Hunan[J]. Journal of Central South University (Science and Technology), 49, 2776-2786.
|
[12] |
蔡灵慧, 余烨, 郭建华, 2021: 湘中南地区中奥陶统烟溪组页岩气勘探潜力[J]. 天然气地球科学, 32, 1247-1260.
|
Cai Linghui, Yu Ye, Guo Jianhua, 2021: Shale gas exploration potential of Middle Ordovician Yanxi Formation in central-southern Hunan province[J]. Natural Gas Geoscience, 32, 1247-1260.
|
[13] |
刘辰生, 王辉, 李想, 2020: 湘中—湘南烟溪组沉积特征及页岩气勘探潜力[J]. 沉积学报, 38, 218-230.
|
Liu Chensheng, Wang Hui, Li Xiang, 2020: Sedimentary characteristics and exploration potential for shale gas in Yanxi Formation, central and southern Hunan[J]. Acta Sedimentologica Sinica, 38, 218-230.
|
[14] |
张国伟, 郭安林, 王岳军, 2013: 中国华南大陆构造与问题[J]. 中国科学(D辑):地球科学, 43, 1553-1582.
|
Zhang Guowei, Guo Anlin, Wang Yuejun, 2013: Tectonics of South China continent and its implications[J]. Science China (Seri. D): Earth Sciences, 43, 1553-1582.
|
[15] |
Murray R W, 1994: Chemical criteria to identify the depositional environment of chert: General principles and applications[J]. Sedimentary Geology, 90, 213-232.
|
[16] |
Yamamoto K, 1987: Geochemical characteristics and depositional environments of cherts and associated rocks in the Franciscan and Shimanto Terranes[J]. Sedimentary Geology, 52, 65-108.
|
[17] |
郑宁, 李廷栋, 程木伟, 2018: 湘赣中、上奥陶统烟溪组、对耳石组硅质岩成因[J]. 地学前缘, 25, 86-98.
|
Zheng Ning, Li Tingdong, Cheng Muwei, 2018: Origin of siliceous rocks in the Middle-Upper Ordovician Yanxi Formation, Hunan province and Dui'ershi Formation, Jiangxi province in South China[J]. Earth Science Frontiers, 25, 86-98.
|
[18] |
何垚砚. 湘桂地区中—晚奥陶世之交黑色岩系沉积特征及构造意义[D]. 北京: 中国地质大学(北京), 2016: 31-41. |
He Yaoyan. Sedimentary characteristics and tectonic implication of black rock series at the turn of Middle to Late Ordovician in Hunan-Guangxi area[D]. Beijing: China University of Geo-sciences Beijing, 2016: 31-41. |
[19] |
Adachi M, Yamamoto K, Sugisaki R, 1986: Hydrothermal chert and associated siliceous rocks from the northern Pacific their geological significance as indication od ocean ridge activity[J]. Sedimentary Geology, 47, 125-148.
|
[20] |
Algeo T J, Lyons T W, 2006: Mo-total organic carbon covariation in modern anoxic marine environments: Implications for analysis of paleoredox and paleohydrographic conditions[J]. Paleoceanography and Paleoclimatology, 21, -.
|
[21] |
Algeo T J, Tribovillard N, 2009: Environmental analysis of paleoceanographic systems based on molybdenum-uranium covariation[J]. Chemical Geology, 268, 211-225.
|
[22] |
Tribovillard N, Algeo T J, Lyons T, 2006: Trace metals as paleoredox and paleoproductivity proxies: An update[J]. Chemical Geology, 232, 12-32.
|
[23] |
杨雨, 罗冰, 张本健, 2021: 四川盆地下寒武统筇竹寺组烃源岩有机质差异富集机制与天然气勘探领域[J]. 石油实验地质, 43, 611-619.
|
Yang Yu, Luo Bing, Zhang Benjian, 2021: Differential mechanisms of organic matter accumulation of source rocks in the Lower Cambrian Qiongzhusi Formation and implications for gas exploration fields in Sichuan Basin[J]. Petroleum Geology & Experiment, 43, 611-619.
|
[24] |
Tribovillard N, Algeo T J, Baudin F, 2012: Analysis of marine environmental conditions based onmolybdenum-uranium covariation: Applications to Mesozoic paleoceanography[J]. Chemical Geology, 324-325, 46-58.
|
[25] |
Gromet L P, Haskin L A, Korotev R L, 1984: The “North American shale composite”: Its compilation, major and trace element characteristics[J]. Geochimica et Cosmochimica Acta, 48, 2469-2482.
|
[26] |
Bhatia M R, 1985: Rare earth element geochemistry of Australian Paleozoic graywackes and mudrocks: Provenance and tectonic control[J]. Sedimentary Geology, 45, 97-113.
|
[27] |
张国伟, 郭安林, 董云鹏, 2011: 大陆地质与大陆构造和大陆动力学[J]. 地学前缘, 18, 1-12.
|
Zhang Guowei, Guo Anlin, Dong Yunpeng, 2011: Continental geology, tectonics and dynamics[J]. Earth Science Frontiers, 18, 1-12.
|
[28] |
关义立, 袁超, 龙晓平, 2013: 华南地块东部早古生代的陆内造山作用:来自I型花岗岩的启示[J]. 大地构造与成矿学, 37, 698-720.
|
Guan Yili, Yuan Chao, Long Xiaoping, 2013: Early Paleozoic intracontinental orogeny of the eastern South China Block: Evidence from I-type granitic plutons in the SE Yangtze Block[J]. Geotectonica et Metallogenia, 37, 698-720.
|
[29] |
舒良树, 2012: 华南构造演化的基本特征[J]. 地质通报, 31, 1035-1053.
|
Shu Liangshu, 2012: An analysis of principal features of tectonic evolution in South China Block[J]. Geological Bulletin of China, 31, 1035-1053.
|
[30] |
Chen X, Rong J Y, Mitchell C E, 2000: Late Ordovician to earliest Silurian graptolite and brachiopod biozonation from the Yangtze region, South China, with a global correlation[J]. Geological Magazine, 137, 623-650.
|
[31] |
Tan J Q, Weniger P, Krooss B, 2014: Shale gas potential of the major marine shale formations in the Upper Yangtze Platform, South China, part II: Methane sorption capacity[J]. Fuel, 129, 204-218.
|