[1] |
翟明国,吴福元,胡瑞忠,等. 战略性关键金属矿产资源:现状与问题[J]. 中国科学基金,2019,33(2):106-111.
Zhai Mingguo, Wu Fuyuan, Hu Ruizhong, et al. Critical metal mineral resources: Current research status and scientific issues[J]. Bulletin of National Natural Science Foundation of China, 2019, 33(2): 106-111. |
[2] |
代世峰,刘池洋,赵蕾,等. 煤系中战略性金属矿产资源:意义和挑战[J]. 煤炭学报,2022,47(5):1743-1749.
Dai Shifeng, Liu Chiyang, Zhao Lei, et al. Strategic metal resources in coal-bearing strata: Significance and challenges[J]. Journal of China Coal Society, 2022, 47(5): 1743-1749. |
[3] |
廖家隆,张福强,韦梦蝶,等. 广西晚二叠世典型聚煤盆地中锂、镓丰度及富集因素[J]. 煤田地质与勘探,2020,48(1):77-84.
Liao Jialong, Zhang Fuqiang, Wei Mengdie, et al. Lithium and gallium abundance and enrichment factors in typical Late Permian coal-accumulating basin in Guangxi[J]. Coal Geology & Exploration, 2020, 48(1): 77-84. |
[4] |
易同生,秦勇,吴艳艳,等. 黔东凯里梁山组煤层及其底板中镓的富集与地质成因[J]. 中国矿业大学学报,2007,36(3):330-334.
Yi Tongsheng, Qin Yong, Wu Yanyan, et al. Gallium accumulation and geological controls in coal seam and its floor from Liangshan Formation, Kaili, eastern Guizhou, China[J]. Journal of China University of Mining & Technology, 2007, 36(3): 330-334. |
[5] |
陈磊,邵培,熊武候,等. 新疆准东煤田中侏罗统煤系镓元素的分布特征及赋存机理探讨[J]. 地学前缘,2018,25(4):76-85.
Chen Lei, Shao Pei, Xiong Wuhou, et al. Discussion on distribution and occurrence mechanism of gallium in the Middle Jurassic coal-bearing strata of the eastern Junggar coalfield, Xinjiang[J]. Earth Science Frontiers, 2018, 25(4): 76-85. |
[6] |
刘帮军,林明月,褚光琛. 山西平朔矿区4#煤中镓的分布规律与富集机理?[J]. 中国煤炭,2014,40(11):25-29.
Liu Bangjun, Lin Mingyue, Chu Guangchen. Distribution law and enrichment mechanism of Ga in 4# coal seam in Pingshuo mining area in Shanxi province[J]. China Coal, 2014, 40(11): 25-29. |
[7] |
王钧漪,王文峰,李健,等. 元素锗镓铀在大同煤田北部煤中的赋存特征[J]. 煤炭科学技术,2010,38(2):117-121,85.
Wang Junyi, Wang Wenfeng, Li Jian, et al. Deposit features of Ge, Ga and U elements in northern part of Datong coalfield[J]. Coal Science and Technology, 2010, 38(2): 117-121, 85. |
[8] |
代世峰, 任德贻, 李生盛. 内蒙古准格尔超大型镓矿床的发现[J]. 科学通报,2006,51(2):177-185.
Dai Shifeng, Ren Deyi, Li Shengsheng. Discovery of the superlarge gallium ore deposit in Jungar, Inner Mongolia, North China[J]. Chinese Science Bulletin, 2006, 51(2): 177-185. |
[9] |
代世峰,任德贻,李生盛,等. 鄂尔多斯盆地东北缘准格尔煤田煤中超常富集勃姆石的发现[J]. 地质学报,2006,80(2):294-300.
Dai Shifeng, Ren Deyi, Li Shengsheng, et al. A discovery of extremely-enriched boehmite from coal in the Junger coalfield, the northeastern Ordos Basin[J]. Acta Geologica Sinica, 2006, 80(2): 294-300. |
[10] |
张复新,王立社. 内蒙古准格尔黑岱沟超大型煤型镓矿床的形成与物质来源[J]. 中国地质,2009,36(2):417-423.
Zhang Fuxin, Wang Lishe. The formation and material sources of the superlarge Hada Gol Ga-bearing coal deposit in Jungar Banner, Inner Mongolia[J]. Geology in China, 2009, 36(2): 417-423. |
[11] |
王文峰,秦勇,刘新花,等. 内蒙古准格尔煤田煤中镓的分布赋存与富集成因[J]. 中国科学(D辑):地球科学,2011,41(2):181-196.
Wang Wenfeng, Qin Yong, Liu Xinhua, et al. Distribution, occurrence and enrichment causes of gallium in coals from the Jungar coalfield, Inner Mongolia[J]. Science China (Seri. D): Earth Sciences, 2011, 41(2): 181-196. |
[12] |
吴国代,王文峰,秦勇,等. 准格尔煤中镓的分布特征和富集机理分析[J]. 煤炭科学技术,2009,37(4):117-120.
Wu Guodai, Wang Wenfeng, Qin Yong, et al. Analysis on distribution characteristic and enrichment mechanism of elements Ga in Junger coalfield[J]. Coal Science and Technology, 2009, 37(4): 117-120. |
[13] |
秦勇,王文峰,程爱国,等. 首批煤炭国家规划矿区煤中镓的成矿前景[J]. 中国煤炭地质,2009,21(1):17-21,26.
Qin Yong, Wang Wenfeng, Cheng Aiguo, et al. Study of ore-forming potential of gallium in coal for the first group of state programmed mining districts[J]. Coal Geology of China, 2009, 21(1): 17-21, 26. |
[14] |
张勇,秦身钧,杨晶晶,等. 煤中镓的地球化学研究进展[J]. 地质科技情报,2014,33(5):166-169,175.
Zhang Yong, Qin Shenjun, Yang Jingjing, et al. Progress in geochemistry of gallium in coal[J]. Geological Science and Technology Information, 2014, 33(5): 166-169, 175. |
[15] |
刘建婧,姚素玲,朱本康,等. 煤中镓元素富集规律特性研究[J]. 中国矿业,2020,29(1):150-156.
Liu Jianjing, Yao Suling, Zhu Benkang, et al. Study on enrichment characteristics of Gallium in coal[J]. China Mining Magazine, 2020, 29(1): 150-156. |
[16] |
袁亮,张通,赵毅鑫,等. 煤与共伴生资源精准协调开采:以鄂尔多斯盆地煤与伴生特种稀有金属精准协调开采为例[J]. 中国矿业大学学报,2017,46(3):449-459.
Yuan Liang, Zhang Tong, Zhao Yixin, et al. Precise coordinated mining of coal and associated resources: A case of environmental coordinated mining of coal and associated rare metal in Ordos Basin[J]. Journal of China University of Mining & Technology, 2017, 46(3): 449-459. |
[17] |
师晶,黄文辉,吕晨航,等. 鄂尔多斯盆地临兴地区上古生界泥岩地球化学特征及地质意义[J]. 石油学报,2018,39(8):876-889.
Shi Jing, Huang Wenhui, Chenhang Lü, et al. Geochemical characteristics and geological significance of the Upper Paleozoic mudstones from Linxing area in Ordos Basin[J]. Acta Petrolei Sinica, 2018, 39(8): 876-889. |
[18] |
屈晓荣,李俊,孙彩蓉,等. 鄂尔多斯盆地东缘柳林地区煤系泥页岩稀土元素地球化学特征[J]. 煤炭学报,2018,43(4):1083-1093.
Qu Xiaorong, Li Jun, Sun Cairong, et al. Geochemistry characteristics of rare earth elements in the Late Paleozoic black shale from eastern Ordos Basin[J]. Journal of China Coal Society, 2018, 43(4): 1083-1093. |
[19] |
孙彩蓉,唐书恒,张松航,等. 鄂尔多斯盆地东缘隰县地区煤层顶底板元素地球化学特征[J]. 煤炭学报,2016,41(增刊2):502-509.
Sun Cairong, Tang Shuheng, Zhang Songhang, et al. Geochemical characteristics of coal seam roof and floor elements in Xixian region of eastern Ordos Basin[J]. Journal of China Coal Society, 2016, 41(Suppl.2): 502-509. |
[20] |
李增学,韩美莲,魏久传,等. 鄂尔多斯盆地上古生界高分辨率层序划分与煤聚积规律分析[J]. 中国石油大学学报(自然科学版),2008,32(1):5-12.
Li Zengxue, Han Meilian, Wei Jiuchuan, et al. Analysis of high-resolution sequence stratigraphy and coal accumulation law of Upper Paleozoic Erathem Ordos Basin[J]. Journal of China University of Petroleum (Edition of Natural Science), 2008, 32(1): 5-12. |
[21] |
鲁静,邵龙义,孙斌,等. 鄂尔多斯盆地东缘石炭—二叠纪煤系层序—古地理与聚煤作用[J]. 煤炭学报,2012,37(5):747-754.
Lu Jing, Shao Longyi, Sun Bin, et al. Sequence-paleogeography and coal accumulation of Carboniferous-Permian coal measures in the eastern Ordos Basin[J]. Journal of China Coal Society, 2012, 37(5): 747-754. |
[22] |
王双明. 鄂尔多斯盆地构造演化和构造控煤作用[J]. 地质通报,2011,30(4):544-552.
Wang Shuangming. Ordos Basin tectonic evolution and structural control of coal[J]. Geological Bulletin of China, 2011, 30(4): 544-552. |
[23] |
郭英海,刘焕杰,陈孟晋. 鄂尔多斯地区晚古生代沉积演化[M]. 徐州:中国矿业大学出版社,2004.
Guo Yinghai, Liu Huanjie, Chen Mengjin. Late Paleozoic sedimentary evolution in Ordos area[M]. Xuzhou: China University of mining and Technology Press, 2004. |
[24] |
吴鹏,高计县,郭俊超,等. 鄂尔多斯盆地东缘临兴地区太原组桥头砂岩层序地层及沉积特征[J]. 石油与天然气地质,2018,39(1):66-76.
Wu Peng, Gao Jixian, Guo Junchao, et al. Sequence stratigraphy and sedimentary characteristic analysis of Qiaotou sandstone of Tayuan Fm in Linxing area, eastern margin of Ordos Basin[J]. Oil & Gas Geology, 2018, 39(1): 66-76. |
[25] |
Wedepohl K H. Environmental influences on the chemical composition of shales and clays[M]//Ahrens L H, Press F, Runcorn S K, et al. Physics and chemistry of the earth. Oxford: Pergamon, 1971: 307-331. |
[26] |
刘英俊,曹励明,李兆麟,等. 元素地球化学[M]. 北京:科学出版社,1984:378-386.
Liu Yingjun, Cao Liming, Li Zhaolin, et al. Elemental geochemistry[M]. Beijing: Science Press, 1984: 378-386. |
[27] |
孙志国,姚德,梁宏峰,等. 多金属结核微层中元素的富集系数特征及其成因[J]. 海洋地质与第四纪地质,1996,16(2):65-74.
Sun Zhiguo, Yao De, Liang Hongfeng, et al. Characteristics of element concentration coeficient in microlauers of polymetallic nodules[J]. Marine Geology & Quaternary Geology, 1996, 16(2): 65-74. |
[28] |
Ross D J K, Bustin R M. Investigating the use of sedimentary geochemical proxies for paleoenvironment interpretation of thermally mature organic-rich strata: Examples from the Devonian-Mississippian shales, western Canadian Sedimentary Basin[J]. Chemical Geology, 2009, 260(1/2): 1-19. |
[29] |
吴泓辰,何金先,张晓丽,等. 鄂尔多斯盆地临兴地区太原组页岩孔隙结构及分形特征[J]. 新疆石油地质,2018,39(5):549-554.
Wu Hongchen, He Jinxian, Zhang Xiaoli, et al. Pore structure and its fractal features of the shale in Taiyuan Formation of Linxing area, Ordos Basin[J]. Xinjiang Petroleum Geology, 2018, 39(5): 549-554. |
[30] |
王国茹. 鄂尔多斯盆地北部上古生界物源及层序岩相古地理研究[D]. 成都:成都理工大学,2011.
Wang Guoru. The study of sources and senquence-lithofaces palaeogeography of Upper Palaeozoic, Basin[D]. Chengdu: Chengdu University of Technology, 2011. |
[31] |
薛纯琦,吴建光,钟建华,等. 海陆交互相沉积泥页岩发育特征研究:以鄂尔多斯盆地临兴地区太原组为例[J]. 中国矿业大学学报,2019,48(4):870-881.
Xue Chunqi, Wu Jianguang, Zhong Jianhua, et al. Characteristics of the marine-terrigenous interdepositional shale: A case study of Taiyuan Formation in Linxing area of Ordos Basin[J]. Journal of China University of Mining & Technology, 2019, 48(4): 870-881. |
[32] |
Chalmers G R, Bustin R M, Power I M. Characterization of gas shale pore systems by porosimetry, pycnometry, surface area, and field emission scanning electron microscopy/transmission electron microscopy image analyses: Examples from the Barnett, Woodford, Haynesville, Marcellus, and Doig units[J]. AAPG Bulletin, 2012, 96(6): 1099-1119. |
[33] |
Bau M, Dulski P. Comparing yttrium and rare earths in hydrothermal fluids from the Mid-Atlantic Ridge: Implications for Y and REE behaviour during near-vent mixing and for the Y/Ho ratio of Proterozoic seawater[J]. Chemical Geology, 1999, 155(1/2): 77-90. |
[34] |
任江波,邓希光,邓义楠,等. 中国富钴结壳合同区海水的稀土元素特征及其意义[J]. 地球科学,2019,44(10):3529-3540.
Ren Jiangbo, Deng Xiguang, Deng Yinan, et al. Rare earth element characteristics and its geological implications for seawater from cobalt-rich ferromanganese crust exploration contract area of China[J]. Earth Science, 2019, 44(10): 3529-3540. |
[35] |
Haskin L A, Haskin M A, Frey F A, et al. Relative and absolute terrestrial abundances of the rare earths[M]//Ahrens L H. Origin and distribution of the elements. Amsterdam: Elsevier, 1968: 889-912. |
[36] |
王中刚,于学元,赵振华. 稀土元素地球化学[M]. 北京:科学出版社,1989.
Wang Zhonggang, Yu Xueyuan, Zhao Zhenhua. Geochemistry of rare earth elements[M]. Beijing: Science Press, 1989. |
[37] |
Allègre C J, Minster J F. Quantitative models of trace element behavior in magmatic processes[J]. Earth and Planetary Science Letters, 1978, 38(1): 1-25. |
[38] |
郭英海,刘焕杰,权彪,等. 鄂尔多斯地区晚古生代沉积体系及古地理演化[J]. 沉积学报,1998,16(3):44-51.
Guo Yinghai, Liu Huanjie, Quan Biao, et al. Late Paleozoic sedimentary system and paleogeographic evolution of Ordos area[J]. Acta Sedimentologica Sinica, 1998, 16(3): 44-51. |
[39] |
邓军,王庆飞,黄定华,等. 鄂尔多斯盆地基底演化及其对盖层控制作用[J]. 地学前缘,2005,12(3):91-99.
Deng Jun, Wang Qingfei, Huang Dinghua, et al. Basement evolution of the Ordos Basin and its constraint on cap rock[J]. Earth Science Frontiers, 2005, 12(3): 91-99. |
[40] |
陈全红,李文厚,刘昊伟,等. 鄂尔多斯盆地上石炭统—中二叠统砂岩物源分析[J]. 古地理学报,2009,11(6):629-640.
Chen Quanhong, Li Wenhou, Liu Haowei, et al. Provenance analysis of sandstone of the Upper Carboniferous to Middle Permian in Ordos Basin[J]. Journal of Palaeogeography, 2009, 11(6): 629-640. |
[41] |
陈全红,李文厚,郭艳琴,等. 鄂尔多斯盆地早二叠世聚煤环境与成煤模式分析[J]. 沉积学报,2009,27(1):70-76.
Chen Quanhong, Li Wenhou, Guo Yanqin, et al. The analysis of coal accumulating environment and coal forming models in Early Permian, Ordos Basin[J]. Acta Sedimentologica Sinica, 2009, 27(1): 70-76. |
[42] |
郭艳琴,李文厚,郭彬程,等. 鄂尔多斯盆地沉积体系与古地理演化[J]. 古地理学报,2019,21(2):293-320.
Guo Yanqin, Li Wenhou, Guo Bincheng, et al. Sedimentary systems and palaeogeography evolution of Ordos Basin[J]. Journal of Palaeogeography, 2019, 21(2): 293-320. |
[43] |
陈全红,李文厚,胡孝林,等. 鄂尔多斯盆地晚古生代沉积岩源区构造背景及物源分析[J]. 地质学报,2012,86(7):1150-1162.
Chen Quanhong, Li Wenhou, Hu Xiaolin, et al. Tectonic setting and provenance analysis of Late Paleozoic sedimentary rocks in the Ordos Basin[J]. Acta Geologica Sinica, 2012, 86(7): 1150-1162. |
[44] |
马收先,孟庆任,武国利,等. 内蒙古隆起晚古生代构造隆升的沉积记录[J]. 地质学报,2014,88(10):1771-1789.
Ma Shouxian, Meng Qingren, Wu Guoli, et al. Late Paleozoic exhumation of the Inner Mongolia paleo-uplift: Evidences from sedimentary records[J]. Acta Geologica Sinica, 2014, 88(10): 1771-1789. |
[45] |
贾浪波,钟大康,孙海涛,等. 鄂尔多斯盆地本溪组沉积物物源探讨及其构造意义[J]. 沉积学报,2019,37(5):1087-1103.
Jia Langbo, Zhong Dakang, Sun Haitao, et al. Sediment provenance analysis and tectonic implication of the Benxi Formation, Ordos Basin[J]. Acta Sedimentologica Sinica, 2019, 37(5): 1087-1103. |
[46] |
何登发,包洪平,开百泽,等. 鄂尔多斯盆地及其邻区关键构造变革期次及其特征[J]. 石油学报,2021,42(10):1255-1269.
He Dengfa, Bao Hongping, Baize Kai, et al. Critical tectonic modification periods and its geologic features of Ordos Basin and adjacent area[J]. Acta Petrolei Sinica, 2021, 42(10): 1255-1269. |
[47] |
郭艳琴,赵灵生,郭彬程,等. 鄂尔多斯盆地及周缘地区下二叠统沉积特征[J]. 古地理学报,2021,23(1):65-80.
Guo Yanqin, Zhao Lingsheng, Guo Bincheng, et al. Sedimentary characteristics of the Lower Permian in Ordos Basin and its adjacent areas[J]. Journal of Palaeogeography, 2021, 23(1): 65-80. |
[48] |
翟咏荷,何登发,开百泽. 鄂尔多斯盆地及邻区早二叠世构造—沉积环境与原型盆地演化[J/OL]. 地学前缘,doi:10.13745/j.esf.sf.2022.2.70 .
Zhai Yonghe, He Dengfa, Baize Kai. Tectonic-depositional environment and prototype basin evolution of the Ordos Basin during the Early Permian[J]. Earth Science Frontiers, doi:10.13745/j.esf.sf.2022.2.70 . |
[49] |
褚光琛. 准格尔煤田煤中稀有金属富集机理的实验模拟[D]. 邯郸:河北工程大学,2015.
Chu Guangchen. Simulated experiment on enrichment mechanism of rare mental in coal of Jungar coalfield[D]. Handan: Hebei University of Engineering, 2015. |
[50] |
Bhatia M R, Crook K A W. Trace element characteristics of graywackes and tectonic setting discrimination of sedimentary basins[J]. Contributions to Mineralogy and Petrology, 1986, 92(2): 181-193. |
[51] |
Gernon T M, Hincks T K, Merdith A S, et al. Global chemical weathering dominated by continental arcs since the mid-Palaeozoic[J]. Nature Geoscience, 2021, 14(9): 690-696. |
[52] |
尹锦涛,俞雨溪,姜呈馥,等. 鄂尔多斯盆地张家滩页岩元素地球化学特征及与有机质富集的关系[J]. 煤炭学报,2017,42(6):1544-1556.
Yin Jintao, Yu Yuxi, Jiang Chengfu, et al. Relationship between element geochemical characteristic and organic matter enrichment in Zhangjiatan shale of Yanchang Formation, Ordos Basin[J]. Journal of China Coal Society, 2017, 42(6): 1544-1556. |
[53] |
McLennan S M, Hemming S, McDaniel D K, et al. Geochemical approaches to sedimentation, provenance, and tectonics[M]//Johnsson M J, Basu A. Processes controlling the composition of clastic sediments. New York: Geological Society of America, 1993: 21-40. |
[54] |
宋朔,刘招君,孙平昌,等. 红色泥岩层系地球化学特征及物源分析:以松辽盆地东南隆起区上白垩统姚家组为例[J]. 世界地质,2015,34(3):774-785.
Song Shuo, Liu Zhaojun, Sun Pingchang, et al. Geochemical characteristics and sediment provenance analysis of red mudstone formation: A case study of Upper Cretaceous Yaojia Formation of southeastern uplift area in Songliao Basin[J]. World Geology, 2015, 34(3): 774-785. |
[55] |
Taylor S R, McClennan S M. The continental crust: Its composition and evolution: An examination of the geochemical record preserved in sedimentary rocks[M]. Oxford: Blackwell Scientific, 1985. |
[56] |
刘英俊. 华南某些花岗岩类气成—热液蚀变中镓的地球化学[J]. 南京大学学报(自然科学版),1965,9(2):236-248.
Liu Yingjun. Geochemistry of gallium in some granitoids of South China[J]. Journal of Nanjing University (Natural Science), 1965, 9(2): 236-248. |
[57] |
Nesbitt H W, Young G M. Early Proterozoic climates and plate motions inferred from major element chemistry of lutites[J]. Nature, 1982, 299(5885): 715-717. |
[58] |
Fedo C M, Nesbitt H W, Young G M. Unraveling the effects of potassium metasomatism in sedimentary rocks and paleosols, with implications for paleoweathering conditions and provenance[J]. Geology, 1995, 23(10): 921-924. |
[59] |
徐小涛,邵龙义. 利用泥质岩化学蚀变指数分析物源区风化程度时的限制因素[J]. 古地理学报,2018,20(3):515-522.
Xu Xiaotao, Shao Longyi. Limiting factors in utilization of chemical index of alteration of mudstones to quantify the degree of weathering in provenance[J]. Journal of Palaeogeography, 2018, 20(3): 515-522. |
[60] |
张天福,孙立新,张云,等. 鄂尔多斯盆地北缘侏罗纪延安组、直罗组泥岩微量、稀土元素地球化学特征及其古沉积环境意义[J]. 地质学报,2016,90(12):3454-3472.
Zhang Tianfu, Sun Lixin, Zhang Yun, et al. Geochemical characteristics of the Jurassic Yan’an and Zhiluo Formations in the northern margin of Ordos Basin and their paleoenvironmental implications[J]. Acta Geologica Sinica, 2016, 90(12): 3454-3472. |
[61] |
邓宏文,钱凯. 沉积地球化学与环境分析[M]. 兰州:甘肃科学技术出版社,1993:95-104.
Deng Hongwen, Qian Kai. Sedimentary geochemistry and environmental analysis[M]. Lanzhou: Gansu Science and Technology Press, 1993: 95-104. |
[62] |
范玉海,屈红军,王辉,等. 微量元素分析在判别沉积介质环境中的应用:以鄂尔多斯盆地西部中区晚三叠世为例[J]. 中国地质,2012,39(2):382-389.
Fan Yuhai, Qu Hongjun, Wang Hui, et al. The application of trace elements analysis to identifying sedimentary media environment: A case study of Late Triassic strata in the middle part of western Ordos Basin[J]. Geology in China, 2012, 39(2): 382-389. |
[63] |
梁文君,肖传桃,肖凯,等. 藏北安多晚侏罗世古环境、古气候与地球化学元素关系研究[J]. 中国地质,2015,42(4):1079-1091.
Liang Wenjun, Xiao Chuantao, Xiao Kai, et al. The relationship of Late Jurassic paleoenvironment and paleoclimate with geochemical elements in Amdo country of northern Tibet[J]. Geology in China, 2015, 42(4): 1079-1091. |
[64] |
李广之,胡斌,邓天龙,等. 微量元素V和Ni的油气地质意义[J]. 天然气地球科学,2008,19(1):13-17.
Li Guangzhi, Hu Bin, Deng Tianlong, et al. Petroleum geological significance of microelements V and Ni[J]. Natural Gas Geoscience, 2008, 19(1): 13-17. |
[65] |
Dill H. Metallogenesis of Early Paleozoic graptolite shales from the Graefenthal Horst (northern Bavaria-Federal Republic of Germany)[J]. Economic Geology, 1986, 81(4): 889-903. |
[66] |
Dill H, Teschner M, Wehner H. Petrography, inorganic and organic geochemistry of Lower Permian carbonaceous fan sequences (“Brandschiefer Series”)-Federal Republic of Germany: Constraints to their paleogeography and assessment of their source rock potential[J]. Chemical Geology, 1988, 67(3/4): 307-325. |
[67] |
Patterson J H, Ramsden A R, Dale L S, et al. Geochemistry and mineralogical residences of trace elements in oil shales from Julia Creek, Queensland, Australia[J]. Chemical Geology, 1986, 55(1/2): 1-16. |
[68] |
金明,李妩巍. 乌兰花地区下白垩统、上新统岩石地球化学特征及其古气候演变[J]. 铀矿地质,2003,19(6):349-354.
Jin Ming, Li Wuwei. Petrogeochemical characteristics of Lower Cretaceous and Pliocene rocks and paleoclimate evolution in Wulanhua region[J]. Uranium Geology, 2003, 19(6): 349-354. |
[69] |
田景春,张翔. 沉积地球化学[M]. 北京:地质出版社,2016:63-77.
Tian Jingchun, Zhang Xiang. Sedimentary geochemistry[M]. Beijing: Geological Publishing House, 2016: 63-77. |
[70] |
文华国,郑荣才,唐飞,等. 鄂尔多斯盆地耿湾地区长6段古盐度恢复与古环境分析[J]. 矿物岩石,2008,28(1):114-120.
Wen Huaguo, Zheng Rongcai, Tang Fei, et al. Reconstruction and analysis of paleosalanity and paleoenvironment of the Chang 6 member in the Gengwan region, Ordos Basin[J]. Mineralogy and Petrology, 2008, 28(1): 114-120. |
[71] |
王敏芳,焦养泉,王正海,等. 沉积环境中古盐度的恢复:以吐哈盆地西南缘水西沟群泥岩为例[J]. 新疆石油地质,2005,26(6):719-722.
Wang Minfang, Jiao Yangquan, Wang Zhenghai, et al. Recovery paleosalinity in sedimentary environment: An example of mudstone in Shuixigou Group, southwestern margin of Turpan-Hami Basin[J]. Xinjiang Petroleum Geology, 2005, 26(6): 719-722. |
[72] |
许璟,蒲仁海,杨林,等. 塔里木盆地石炭系泥岩沉积时的古盐度分析[J]. 沉积学报,2010,28(3):509-517.
Xu Jing, Pu Renhai, Yang Lin, et al. The palaeosalinity analysis of Carboniferous mudstone, Tarim Basin[J]. Acta Sedimentologica Sinica, 2010, 28(3): 509-517. |
[73] |
钱利军,陈洪德,林良彪,等. 四川盆地西缘地区中侏罗统沙溪庙组地球化学特征及其环境意义[J]. 沉积学报,2012,30(6):1061-1071.
Qian Lijun, Chen Hongde, Lin Liangbiao, et al. Geochemical characteristics and environmental implications of Middle Jurassic Shaximiao Formation, western margin of Sichuan Basin[J]. Acta Sedimentologica Sinica, 2012, 30(6): 1061-1071. |
[74] |
王益友,吴萍. 江浙海岸带沉积物的地球化学标志[J]. 同济大学学报,1983(4):79-87.
Wang Yiyou, Wu Ping. Geochemical criteria of sediments in the coastal area of Jiangsu and Zhejang provinces[J]. Journal of Tongji University, 1983(4): 79-87. |