[1] 常苏娟,朱杰勇,刘益,贺瑾瑞. 2010. 西南滇黔风化磷块岩研究现状与趋势. 化工矿物与加工,(12): 41-44. [Chang S J,Zhu J Y,Liu Y,He J R. 2010. Research status and trend of weathered phosphorus block rocks in Guizhou,Southwest Yunnan. Chemical Minerals and Processing,(12): 41-44] [2] 陈国勇,杜远生,张亚冠,陈庆刚,范玉梅,王泽鹏,谭华. 2015. 黔中地区震旦纪含磷岩系时空变化及沉积模式. 地质科技情报, 34(6): 17-25. [Chen G y,Du Y S,Zhang Y G,Chen Q G,Fan Y M,Wang Z P,Tan H. 2015. Spatio-temporal variations and sedimentary models of the Sinian Phosphorus-bearing rocks in the central Guizhou Region. Geological Science and Technology Information, 34(6): 17-25] [3] 东野脉兴. 2001. 扬子地块陡山沱期与梅树村期磷矿区域成矿规律. 化工矿产地质,23(4): 193-209. [Dongye M X. 2001. Regional metallogenic regularities of the Doushantuo and Meishucun phosphate deposits in the Yangtze Block. Geology of Chemical Minerals,23(4): 193-209] [4] 东野脉兴,朱熙槐,王淑丽. 2019. 鄂西—黔中陆缘坻磷块岩迁移沉积及控矿(成矿)模型. 化工矿产地质, 41(1): 8-13. [Dongye M X,Zhu X H,Wang S L. 2019. Model of migration deposition and ore-controlling(ore-forming)at the continental margin of Western Hubei and central Guizhou. Geology of Chemical Minerals, 41(1): 8-13] [5] 冯增昭. 2004. 单因素分析多因素综合作图法: 定量岩相古地理重建. 古地理学报, 6(1): 3-19. [Feng Z Z. 2004. Quantitative lithofacies and palaeogeography reconstruction by single factor analysis and multi-factor comprehensive mapping. Journal of Palaeogeography(Chinese Edition), 6(1): 3-19] [6] 冯增昭. 2013. 定量岩相古地理. 见: 冯增昭. 中国沉积学(第二版). 北京: 石油工业出版社,1399-1449. [Feng Z Z. 2013. Quantitative Lithofacies Palaeogeography. In: Feng Z Z(ed). Sedimentology of China(Second Edition). Beijing: Petroleum Industry Press,1399-1449] [7] 黄毅,田升平. 1995. 云南滇池地区风化磷块岩的风化指标研究. 矿物学报, 15(1): 15-20. [Huang Y, Tian S P. 1995. Study on weathering index of weathered phosphorus block in Dianchi Lake,Yunnan. Acta Mineralogica Sinica, 15(1): 15-20] [8] 何进忠. 2016. 三位一体找矿预测模型的表达式. 地质论评,62(s1): 31-32. [He J Z. 2016. Expression of the srinity prospecting prediction model. Geological Review,62(s1): 31-32] [9] 刘静江,李伟,张宝民,周慧,袁晓红,单秀琴,张静,邓胜徽,谷志东,樊茹,王拥军,李鑫. 2015. 上扬子地区震旦纪沉积古地理. 古地理学报, 17(6): 735-753. [Liu J J,Li W,Zhang B M,Zhou H,Yuan X H,Shan X Q,Zhang J,Deng S H,Gu Z D,Fan R,Wang Y J,Li X. 2015. Sedimentary palaeogeography of the Sinian in Upper Yangtze Region. Journal of Palaeogeography(Chinese Edition), 17(6): 735-753] [10] 刘建中,王泽鹏,杜远生,陈国勇,张亚冠,吴文明,王大福,谭代卫,李松涛,唐嗣刚,付芝康,万大学,向群,杨妮娅,汪小勇,李磊,唐铸,宋威方,苏成鹏. 2019. 贵州开阳地区富磷矿成矿作用过程与找矿潜力. 贵州地质, 36(1): 10-17. [Liu J Z,Wang Z P,Du Y S,Chen G Y,Zhang Y G,Wu W M,Wang D F,Tan D W,Li S T,Tang S G,Fu Z K,Wan D X,Xiang Q,Yang N Y,Wang X Y,Li L,Tang Z,Song W F,Su C P. 2019. Guizhou mizar region rich phosphate rock mineralization process and prospecting potential. Guizhou Geology, 36(1): 10-17] [11] 密文天,林丽,马叶情,王新利,任才云,周玉华. 2010. 贵州瓮安陡山沱组含磷岩系沉积序列及磷块岩的形成. 沉积与特提斯地质, 30(3): 46-52. [Mi W T,Lin L,Ma Y Q,Wang X L,Ren C Y,Zhou Y H. 2010. Depositional sequences of the phosphatic rock series and formation of the phosphorites in the Doushantuo Formation in Weng'an,Guizhou. Sedimentary Geology and Tethyan Geology, 30(3): 46-52] [12] 王剑,段太忠,谢渊,汪正江,郝明,刘伟. 2012. 扬子地块东南缘大地构造演化及其油气地质意义. 地质通报, 31(11): 1739-1749. [Wang J,Duan T Z,Xie Y,Wang Z J,Hao M,Liu W. 2012. Tectonic evolution and hydrocarbon geology of the southeastern margin of the Yangtze Block. Geological Bulletin, 31(11): 1739-1749] [13] 王泽鹏,张亚冠,杜远生,陈国勇,刘建中,徐园园,谭代卫,李磊,王大福,吴文明. 2016. 黔中开阳磷矿沉积区震旦纪陡山沱期定量岩相古地理重建. 古地理学报, 18(3): 399-409. [Wang Z P,Zhang Y G,Du Y S,Chen G Y,Liu J Z,Xu Y Y,Tan D W,Li L,Wang D F,Wu W M. 2016. Reconstruction of quantitative lithofacies palaeogeography of the Sinian Doushantuo age of phosphorite depositional zone in Kaiyang area,central Guizhou Province. Journal of Palaeogeography(Chinese Edition), 18(3): 399-409] [14] 杨爱华,朱茂炎,张俊明,赵方臣,吕苗. 2015. 扬子板块埃迪卡拉系(震旦系)陡山沱组层序地层划分与对比. 古地理学报, 17(1): 1-20. [Yang A H,Zhu M Y,Zhang J M,Zhao F C,Lü M. 2015. Sequence stratigraphy division and correlation of the Doushantuo Formation of the Ediacaran(Sinian)Formation in the Yangtze Plate. Journal of Palaeogeography(Chinese Edition), 17(1): 1-20] [15] 叶连俊,陈其英,赵东旭,陈志明,陈友明,刘魁梧. 1989. 中国磷块岩. 北京: 科学出版社, 22-35. [Ye L J,Chen Q Y,Zhao D X,Chen Z M,Chen Y M,Liu K W. 1989. Chinese Phosphorous Rock. Beijing: Science Press,22-35] [16] 张伟,杨瑞东,毛铁,任海利,高军波,陈吉艳. 2015. 瓮安埃迪卡拉系灯影组叠层石磷块岩形成环境及成矿机制. 高校地质学报,21(2): 186-195. [Zhang W,Yang R D,Mao T,Ren H L,Gao J B,Chen J Y. 2015. Formation environment and metallogenic mechanism of stromatolites and phosphorus blocks of Dengying Formation,Weng'an Ediacaran Formation. Geological Journal of China Universities,21(2): 186-195] [17] 张亚冠,杜远生,陈国勇,刘建中,王泽鹏,徐圆圆,谭代卫,李磊,王大福,吴文明. 2016. 黔中开阳地区震旦纪陡山沱期富磷矿沉积特征与成矿模式. 古地理学报, 18(4): 581-594. [Zhang Y G,Du Y S,Chen G Y,Liu J Z,Wang Z P,Xu Y Y,Tan D W,Li L,Wang D F,Wu W M. 2016. Sedimentary characteristics and mineralization model of high-grade phosphorite in the Sinian Doushantuo Age of Kaiyang area,central Guizhou Province. Journal of Palaeogeography(Chinese Edition), 18(4): 581-594] [18] 张亚冠,杜远生,陈国勇,刘建中,陈庆刚,赵征,王泽鹏,邓超. 2019. 富磷矿三阶段动态成矿模式: 黔中开阳式高品位磷矿成矿机制. 古地理学报, 21(2): 351-368. [Zhang Y G,Du Y S,Chen G Y,Liu J Z,Chen Q G,Zhao Z,Wang Z P,Deng C. 2019. Three-stage dynamic mineralization model of rich phosphate deposits: The kaiyang type high grade phosphate mineralization mechanism in central Guizhou. Journal of Palaeogeography(Chinese Edition), 21(2): 351-368] [19] 朱士兴,王砚耕. 1983. 关于开阳磷块岩矿床成因的探讨. 科学通报,(19): 1191-1194. [Zhu S X,Wang Y G. 1983. Discussion on the genesis of the phosphate rock deposit in Kaiyang. Chinese Science Bulletin,(19): 1191-1194] [20] Abed A M,Arouri K R,Boreham C J. 2005. Source rock potential of the phosphorite-bituminous chalk-marl sequence in Jordan. Marine and Petroleum Geology, 22(3): 413-425. [21] Arning E T,Lückge A,Breuer C,Gussone N,Birgel D,Peckmann J. 2009. Genesis of phosphorite crusts off Peru. Marine Geology, 262(1-4): 68-81. [22] Banerjee D M,Khan M W Y,Srivastava N,Saigal G C. 1982. Precambrian phosphorites in the Bijawar rocks of Hirapur-Bassia areas,sagar district,madhya pradesh,India.Mineralium Deposita, 17(3): 349-362. [23] Gao Y,Zhang X,Zhang G,Chen K,Shen Y. 2018. Ediacaran negative C-isotopic excursions associated with phosphogenic events: Evidence from South China. Precambrian Research, 307: 218-228. [24] Garrison R E,Kastner M. 1990. Phosphatic sediments and rocks recovered from the Peru margin during ODP Leg 112. Proceedings of the Ocean Drilling Program. Scientific Results, 112: 111-134. [25] Jiang G Q,Shi X Y,Zhang S H,Wang Y,Xiao S H. 2011. Stratigraphy and paleogeography of the Ediacaran Doushantuo Formation(ca. 635-551Ma)in South China. Gondwana Research, 19(4): 831-849. [26] Krajewski K P,Le Niak P M,Cka B,Zawidzki P. 2000. Origin of phosphatic stromatolites in the Upper Cretaceous condensed sequence of the Polish Jura Chain. Sedimentary Geology, 136(1): 89-112. [27] Li Z X,Li X H,Kinny P D,Wang J,Zhang S,Zhou H. 2003. Geochronology of Neoproterozoic syn-rift magmatism in the Yangtze Craton,South China and correlations with other continents: Evidence for a mantle superplume that broke up Rodinia. Precambrian Research, 122(1): 85-109. [28] Lucas J,Flicoteaux R,Nathan Y,Prévôt L,Shahar Y. 1980. Different aspects of phosphorite weathering. In: Bentor Y K(ed).Marine Phosphorites. Tulsa: SEPM Special Publication,Society for Sedimentary Geology,41-51. [29] Papineau D. 2010. Global biogeochemical changes at both ends of the Proterozoic: Insights from phosphorites. Astrobiology, 10(2): 165-181. [30] Planavsky N J,Rouxel O J,Bekker A,Lalonde S V,Konhauser K O,Reinhard C T,Lyons T W. 2010. The evolution of the marine phosphate reservoir. Nature, 467: 1088-1090. [31] Pufahl P K,Groat L A. 2017. Sedimentary and igneous phosphate deposits: Formation and exploration: An invited paper. Economic Geology, 112(3): 483-516. [32] Pufahl P K, Hiatt E E. 2012. Oxygenation of the Earth's atmosphere ocean system: A veriew of physical and chemical sedimentologic responses. Marine and Petroleum Geology, 32(1):1-20. [33] Sánchez-Navas A,Martín-Algarra A. 2001. Genesis of apatite in phosphate stromatolites. European Journal of Mineralogy, 13(2): 361-376. [34] Soudry D. 1992. Primary bedded phosphorites in the Campanian Mishash Formation,Negev,southern Israel. Sedimentary Geology, 80(1-2): 77-88. [35] Zhang Y G,Peir K, Pufahl,Du Y S,Chen G Y,Liu J Z,Chen Q G,Wang Z P,Yu W C. 2019. Economic phosphorite from the Ediacaran Doushantuo Formation,South China,and the Neoproterozoic-Cambrian Phosphogenic Event. Sedimentary Geology, 388: 1-19. |