Reconstruction of quantitative lithofacies palaeogeography of the Sinian Doushantuo Age of phosphorite depositional zone in Kaiyang area,central Guizhou Province
Wang Zepeng1, Zhang Yaguan2, Du Yuansheng2, Chen Guoyong3, Liu Jianzhong1, Xu Yuanyuan2, Tan Daiwei1, Li Lei1, Wang Dafu1, Wu Wenming1
1 Geological Party 105,Guizhou Provincial Bureau of Geology and Mineral Exploration and Development,Guiyang 550018,Guizhou; 2 State Key Laboratory of Biogeology and Environmental Geology,China University of Geosciences(Wuhan),Wuhan 430074,Hubei; 3 Science and Technology Information Department,Guizhou Provincial Bureau of Geology and Mineral Exploration and Development,Guiyang 550004,Guizhou;
Abstract The deposition and mineralization of phosphorite had intimate relationship with the paleogeographic environment of phosphogenesis. This paper first used the single factor analysis and multifactor comprehensive mapping method to analyze and predict the phosphorite deposits in Kaiyang area during Sinian Doushantuo Age. This paper selected the stratum thickness of the Doushantuo Formation and its each lithologic section and the ore grade of phosphorite bed as the single factors to reflect the palaeogeographical pattern of Kaiyang area. Based on these isoline maps of single factors and other factors like lithologic combinations and sedimentary characteristics,the sedimentary environments of metallogenic epoch were clearly recovered and at last the quantitative lithofacies palaeogeographical maps of the Early,Middle and Late Doushantuo Age were compiled. According to the result of reconstruction of quantitative lithofacies palaeogeography, we proposed that Kaiyang area was in seashore environment which was located in north margin of Central Guizhou Old Land,and the topography became higher from north to south and local terrain was rugged. The nearshore areas were targeted as the most advantageous metallogenic belt and the changeful local terrain affected the thickenss and ore grade of phosphorite, and the phosphorite which experienced multi-stages erosion,exposure,leaching and reworking would had higher ore grade. Using quantitative lithofacies palaeogeography can accurately recover the palaeogeographical environment of metallogenic epoch and analyze the sedimentation and mineralization processes,and it has important significance for confirming the controlling factors of phosphorite, constructing mineral prediction model and predicting the spatial location of orebody.
Corresponding Authors:
Du Yuansheng,born in 1958,is a professor and Ph.D. supervisor of China University of Geosciences(Wuhan), and is mainly engaged in sedimentary geology. E-mail: duyuansheng126@126.com.
E-mail: wangzepengyu@126.com。
Cite this article:
Wang Zepeng,Zhang Yaguan,Du Yuansheng et al. Reconstruction of quantitative lithofacies palaeogeography of the Sinian Doushantuo Age of phosphorite depositional zone in Kaiyang area,central Guizhou Province[J]. JOPC, 2016, 18(3): 399-410.
Wang Zepeng,Zhang Yaguan,Du Yuansheng et al. Reconstruction of quantitative lithofacies palaeogeography of the Sinian Doushantuo Age of phosphorite depositional zone in Kaiyang area,central Guizhou Province[J]. JOPC, 2016, 18(3): 399-410.
[1] 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. Spatial and temporal variation and mineralization model of the Sinian phosphorus-bearing sequences in central Guizhou Province. Geological Science and Technology Information,34(6):17-25] [2] 陈其英,郭师曾. 1985. 中国东部震旦纪和寒武纪磷块岩的结构成因类型及其沉积相和环境. 地质科学,(3):224-235. [Chen Q Y,Guo S Z. 1985. Texture-genetic types,facies characteristics and formation environment of phosphorites of Sinian and Cambrian in eastern China. Chinese Journal of Geology,(3):224-235] [3] 冯增昭. 1977. 华北下奥陶统岩相古地理新探. 华东石油学院学报,(3):57-79. [Feng Z Z. 1977. A Preliminary Discussion on the Lower Ordovician litho-facies and paleogegeography in north China. Journal of East China Petroleum Institute,(3):57-79] [4] 冯增昭. 1979. 华北早奥陶世岩相古地理新探. 地质科学,(4):302-313. [Feng Z Z. 1979. A Preliminary Discussion on the Lower Ordovician litho-facies and paleogegeography in north China. Scientia Geologica Sinica,(4):302-313] [5] 冯增昭. 1992. 单因素分析综合作图法:岩相古地理学方法论. 沉积学报,10(3):70-77. [Feng Z Z. 1992. Single factor analysis and comprehensive mapping method-methodology of lithofacies paleogeography. Acta Sedimentologica Sinica,10(3):70-77] [6] 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. Single factor analysis and multifactor comprehensive mapping method-reconstruction of quantitative lithofacies palaeogeography. Journal of Palaeogeography(Chinese Edition),6(1):3-19] [7] 冯增昭. 2013. 定量岩相古地理. 见:冯增昭(主编). 中国沉积学(第二版). 北京:石油工业出版社,1399-1454. [Feng Z Z. 2013. Quantitative Lithofacies Palaeogeography. In: Feng Z Z (ed). Sedimentology of China (Second Edition). Beijing:Petroleum Industry press,1399-1454] [8] 戈定夷,刘永先,曾允孚. 1994. 滇东磷矿风化型矿石的判别指标讨论及次生风化富集作用. 矿物岩石,14(3):29-42. [Ge D Y,Liu Y X,Zeng Y F. 1994. A discussion on weathering indexes of phosphorus ore from eastern Yunnan and the weathering process of phosphorite. Journal of Mineralogy and Petrology,14(3):29-42] [9] 胡宗全,由伟丰,李松,张海清,周小进,杨帆. 2013. 中国早震旦世构造—岩相古地理. 地学前缘,20(5):248-255. [Hu Z Q,You W F,Li S,Zhang H Q,Zhou X J,Yang F. 2013. Tectono-lithofacies-palaeogeography of China in the early Sinian.Earth Science Frontiers,20(5):248-255] [10] 李铁生,文素秋,田平,唐泽军,黄毅. 1996. 中国南方风化磷块岩研究. 化工矿产地质,18(3):53-57. [Li T S,Wen S Q,Tian P,Tang Z J,Huang Y. 1996. Weathered phosphorites in South China. Geology of Chemical Minerals,18(3):53-57] [11] 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 Z 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] [12] 毛铁,杨瑞东,高军波,毛家仁. 2015. 贵州织金寒武系磷矿沉积特征及灯影组古喀斯特面控矿特征研究. 地质学报,89(12):2374-2388. [Mao T,Yang R D,Gao J B,Mao J R. 2015. Study of Sedimentary Feature of Cambrian Phosphorite and Ore-controlling Feature of Old Karst Surface of the Dengying Formation in Zhijin,Guizhou. Acta Geologica Sinica,89(12):2374-2388] [13] 密文天. 2010. 上扬子地区震旦纪陡山沱期成磷事件研究:以贵州瓮安、湖北宜昌磷矿床为例. 成都理工大学博士学位论文. [Mi W T. 2010. Phosphorites’ Sedimentary Event in Sinian Doushantuo period,West Yangtze Area-the Cases Study of Weng’an Phosphorite in Guizhou and Yichang Phosphorite in Hubei. Doctoral Dissertation of Chengdu University of Technology] [14] 汪建国,陈代钊,王清晨,严德天,王卓卓. 2007. 中扬子地区晚震旦世—早寒武世转折期台—盆演化及烃源岩形成机理. 地质学报,81(8):1102-1109. [Wang J G,Chen D Z,Wang Q C,Yan D T,Wang Z Z. 2007. Platform evolution and marine source rock deposition during the terminal Sinian to early Cambrian in the middle Yangtze region. Acate Geologica Sinica,81(8):1102-1109] [15] 汪正江,王剑,卓皆文,杨平,刘家洪,谢尚克. 2011. 扬子陆块震旦纪—寒武纪之交的地作用壳伸展作用:来自沉积序列与沉积地球化学证据. 地质论评,57(5):731-742. [Wang Z J,Wang J,Zhuo J W,Yang P,Liu J H,Xie S K. 2011. Crust Extensional Activity during the Transition from Sinian(Ediacaran)to Cambrian in Yangtze Block:Evidences from the Depositional Sequence and Its Geochemical Data. Geological Review,57(5):731-742] [16] 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. The tectonic evolution and its oil and gas prospect of southeast margin of Yangtze Block. Geological Bulletin of China, 31(11):1739-1749] [17] 吴祥和,韩至钧,蔡继峰,肖永连. 1999. 贵州磷块岩. 北京:地质出版社,30-43,49-66. [ X H,Han Z J,Cai J F,Xiao Y L. 1999. Phosphorites in Guizhou. Beijing:Geological Publishing House,30-43,49-66] [18] 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 stratigraphic subdivision and correlation of the Ediacaran(Sinian)Doushantuo Formation of Yangtze Plate,South China. Journal of Palaeogeography(Chinese Edition),17(1):1-20] [19] 叶连俊,陈其英,赵东旭,陈志明,陈有明,刘魁梧. 1989. 中国磷块岩. 北京:科学出版社,89-102,223-237. [Ye L J,Chen Q Y,Zhao D X,Chen Z M,Chen Y M,Liu K W. 1989. China Phosphate Rock.Beijing:Science Press,89-102,223-237] [20] 赵东旭. 1986. 震旦纪陡山沱组的碎屑磷块岩. 岩石学报,2(3):66-75. [Zhao D X. 1986. Intraclzstic phosphorites of Doushantuo formation in Sinian period. Acta Petrologica Sinica,2(3):66-75] [21] 周小进,杨帆. 2007. 中国南方新元古代—早古生代构造演化与盆地原型分析. 石油实验地质,29(5):446-451. [Zhou X J,Yang F. 2007. Tectonic evolution and prototypes analysis from neoproterozoic to early paleozoic South China. Petroleum Geology & Experiment,29(5):446-451] [22] Cook P J. 1992. Phosphogenesis around the Proterozoic-Phanerozoic transition. Journal of the Geological Society,149(4):615-620. [23] Cook P J, Shergold J H. 1984. Phosphorus,phosphorites and skeletal evolution at the Precambrian-Cambrian boundary. Nature,10(308):231-236. [24] Delaney M L. 1998. Phosphorus accumulation in marine sediments and the oceanic phosphorus cycle. Global Biogeochemical Cycles,12(4):563. [25] Filippelli G M. 2011. Phosphate rock formation and marine phosphorus geochemistry:The deep time perspective. Chemosphere,84(6):759-766.