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    Volume 46 Issue 7
    Jul.  2021
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    Xiao Bin, Liu Shugen, Ran Bo, Li Zhiwu, Ye Yuehao, Han Yuyue, 2021. Study on Sedimentary Tectonic Pattern of Wufeng Formation and Longmaxi Formation in the Northern Margin of Sichuan Basin, South China. Earth Science, 46(7): 2449-2465. doi: 10.3799/dqkx.2020.208
    Citation: Xiao Bin, Liu Shugen, Ran Bo, Li Zhiwu, Ye Yuehao, Han Yuyue, 2021. Study on Sedimentary Tectonic Pattern of Wufeng Formation and Longmaxi Formation in the Northern Margin of Sichuan Basin, South China. Earth Science, 46(7): 2449-2465. doi: 10.3799/dqkx.2020.208

    Study on Sedimentary Tectonic Pattern of Wufeng Formation and Longmaxi Formation in the Northern Margin of Sichuan Basin, South China

    doi: 10.3799/dqkx.2020.208
    • Received Date: 2020-07-14
    • Publish Date: 2021-07-15
    • In order to reconstruct the sedimentary tectonic pattern of Wufeng Formation and Longmaxi Formation in the northern margin of Sichuan Basin, the Wufeng Formation and Longmaxi Formation in the Micangshan-Dabashan area of the northern margin of Sichuan Basin were taken as the research objects. The stratigraphic framework correlation and sedimentary facies analysis were carried out, and Mo/TOC and Al-Co[EF]×Mn[EF] geochemical indicators were used to determine the degree of water mass restricted in the sedimentary period. It is found that near the uplift area, controlled by the material supply and sedimentary space, the thickness of strata varies greatly, and the thickness of black shale is smaller as a whole. However, far away from the uplift area, the black shale gradually thickens from west to east and the TOC content increases under the control of the upwelling at the continental margin and intracontinental depression.Research shows that: (1) The Wufeng Formation in Micangshan area was deposited in Fucheng of Nanzheng County, and Qiaoting of Nanjiang County, in the intersection area of two kinds of upwelling currents, which were influenced by the upwelling currents for a long time. The sedimentary period of Longmaxi Formation was mainly influenced by the Xixiang Rise, which resulted in the uplift of Wangcang and Nanjiang areas into islands, with the thickest deposition in Well Mashen 1. (2) Generally, the Wufeng Formation in the Dabashan front and the western Hubei-eastern Chongqing area presents a pattern of uplift-depression alternation. Due to the continuous compression of the Cathaysian block from SE to NW, the Shizhu-Wuxi line subsided continuously during the sedimentary period of the Longmaxi Formation, resulting in a relatively thick stratigraphic deposition.

       

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    • 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. Paleoceanography, 21(1): 279-298. https://doi.org/10.1029/2004pa001112
      Algeo, T. J., Tribovillard, N., 2009. Environmental Analysis of Paleoceanographic Systems Based on Molybdenum-Uranium Covariation. Chemical Geology, 268(3/4): 211-225. https://doi.org/10.1016/j.chemgeo.2009.09.001
      Chen, X., Fan, J.X., Zhang, Y. D., et al., 2015. Subdivision and Delineation of the Wufeng and Lungmachi Black Shales in the Subsurface Areas of the Yangtze Platform. Journal of Stratigraphy, 39(4): 351-358(in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTotal-DCXZ201504001.htm
      Chen, X., Xu, J.T., Cheng, H.J., et al., 1990. On the Hannan Old Land and the Dabashan Uplift. Journal of Stratigraphy. 14(2): 81-116(in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-DCXZ199002000.htm
      Deng, X., Yang, K. G., Liu, Y. L., et al., 2010. Characteristics and Tectonic Evolution of Qianzhong Uplift. Earth Science Frontiers, 17(3): 79-89(in Chinese with English abstract).
      Dong, D.Z., Shi, Z. S, Guan, Q. Z., et al., 2018. Progress, Challenges and Prospects of Shale Gas Exploration in the Wufeng-Longmaxi Reservoirs in the Sichuan Basin. Natural Gas Industry, 38(4): 67-76 (in Chinese with English abstract). http://www.zhangqiaokeyan.com/academic-journal-cn_natural-gas-industry_thesis/0201218476547.html
      Erickson, B. E., Helz, G. R., 2000. Molybdenum(Ⅵ) Speciation in Sulfidic Waters. Geochimica et Cosmochimica Acta, 64(7): 1149-1158. https://doi.org/10.1016/s0016-7037(99)00423-8
      Fu, X. D., Qin, J. Z., Teng, G. E., et al., 2013. Study on Hydrocarbon Source in Marine Sequences in Shizhu Synclinorium, Western Hubei-Eastern Chongqing Area. Natural Gas Geoscience. 24(2): 372-381 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-TDKX201302024.htm
      Guo, X. M., 2015. Accumulation Conditions and Favorable Exploration Zones of Shale Gas in Wufeng-Longmaxi Formation, Northeast of Chongqing(Dissertation). Chengdu University of Technology, Chengdu, 1-67 (in Chinese with English abstract).
      Guo, X. S., 2017. Sequence Stratigraphy and Evolution Model of the Wufeng-Longmaxi Shale in the Upper Yangtze Area. Earth Science, 42(7): 1069-1082 (in Chinese with English abstract).
      Helz, G. R., Miller, C. V., Charnock, J. M., et al., 1996. Mechanism of Molybdenum Removal from the Sea and its Concentration in Black Shales: EXAFS Evidence. Geochimica et Cosmochimica Acta, 60(19): 3631-3642. https://doi.org/10.1016/0016-7037(96)00195-0
      Landing, W. M., Bruland, K. W., 1980. Manganese in the North Pacific. Earth and Planetary Science Letters, 49(1): 45-56. https://doi.org/10.1016/0012-821x(80)90149-1
      Li, S. J., Xiao, K. H., Wo, Y. J., et al., 2008. Developmental Controlling Factors of Upper Ordovician-Lower Silurian High Quality Source Rocks in Marine Sequence, South China. Acta Sedimentologica Sinica, 26(5): 872-880(in Chinese with English abstract). http://www.cqvip.com/Main/Detail.aspx?id=28481728
      Li, W.H., 1997. Sedimentary Characteristics and Environments of the Strata near the Ordovician-Silurian Boundary in Liangshan, Nanzheng. Journal of Stratigraphy, 21(2): 68-72(in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-DCXZ702.008.htm
      Li, Y. F., Zhang, T. W., Ellis, G. S., et al., 2017. Depositional Environment and Organic Matter Accumulation of Upper Ordovician-Lower Silurian Marine Shale in the Upper Yangtze Platform, South China. Palaeogeography, Palaeoclimatology, Palaeoecology, 466(3): 252-264. https://doi.org/10.1016/j.palaeo.2016.11.037
      Li, Z., Jiang, Z. X., Tang, X. L., et al., 2017. Lithofacies Characteristics and Its Effect on Pore Structure of the Marine Shale in the Low Silurian Longmaxi Formation, Southeastern Chongqing. Earth Science, 42(7): 1116-1123 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-DQKX201707007.htm
      Liang, F., Bai, W. H., Zou, C. N., et al., 2016. Shale Gas Enrichment Pattern and Exploration Significance of Well WuXi-2 in Northeast Chongqing, NE Sichuan Basin. Petroleum Exploration and Development, 43(3): 386-394(in Chinese with English abstract). doi: 10.1016/S1876-3804(16)30045-3
      Little, S. H., Vance, D., Lyons, T. W., et al., 2015. Controls on Trace Metal Authigenic Enrichment in Reducing Sediments: Insights from Modern Oxygen-Deficient Settings. American Journal of Science, 315(2): 77-119. https://doi.org/10.2475/02.2015.01
      Liu, S. G., Deng, B., Sun, W., et al., 2018. Sichuan Basin: A Superimposed Sedimentary Basin Mainly Controlled by Its Peripheric Tectonics. Chinese Journal of Geology, 53(1): 308-326(in Chinese with English abstract). http://www.researchgate.net/publication/322615210_Sichuan_Basin_A_superimposed_sedimentary_basin_mainly_controlled_by_its_peripheric_tectonics
      Lu, Y. B., Ma, Y. Q., Wang, Y. X., et al., 2017. The Sedimentary Response to the Major Geological Events and Lithofacies Characteristics of Wufeng Formation-Longmaxi Formation in the Upper Yangtze Area. Earth Science, 42(7): 1169-1184 (in Chinese with English abstract).
      Ma, Y. Q., Fan, M. J., Lu, Y. C., et al., 2016. Geochemistry and Sedimentology of the Lower Silurian Longmaxi Mudstone in Southwestern China: Implications for Depositional Controls on Organic Matter Accumulation. Marine and Petroleum Geology, 75: 291-309. https://doi.org/10.1016/j.marpetgeo.2016.04.024
      Nie, H. K., Jin, Z. J., Ma, X., et al., 2017. Graptolites Zone and Sedimentary Characteristics of Upper Ordovician Wufeng Formation-Lower Silurian Longmaxi Formation in Sichuan Basin and Its Adjacent Areas. Acta Petrolei Sinica, 38(2): 160-174 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTotal-SYXB201702004.htm
      Parrish, J. T., Gautier, D. L., 1993. Sharon Springs Member of Pierre Shale: Upwelling in the Western Interior Seaway? In: Caldwell, W. G. E., Kauffman, E. G., eds. Evolution of the Western Interior Basin. Geological Association of Canada Special Paper, Canada, 39: 319-332.
      Qiu, J.W., 2015. Shale Lithofacies Characteristics Study of Wufeng-Longmaxi Formation in Eastern Maginal Part of Sichuan Basin (Dissertation). Chengdu University of Technology, Chengdu, 1-85(in Chinese with English abstract).
      Rong, J. Y., Zhan, R. B., Xu, H. G., et al., 2010. Expansion of the Cathaysian Oldland through the Ordovician-Silurian Transition: Emerging Evidence and Possible Dynamics. Science in China (Series D: Earth Sciences), 53(1): 1-17. https://doi.org/10.1007/s11430-010-0005-3
      Statham, P. J., Burton, J. D., 1986. Dissolved Manganese in the North Atlantic Ocean, 0-35°N. Earth and Planetary Science Letters, 79(1/2): 55-65. https://doi.org/10.1016/0012-821x(86)90040-3
      Sun, X. Y., Mu, C. L., Ge, X. Y., et al., 2016. Geochemistry and Sedimentary Environments of the Upper Ordovician Wufeng Formation in Guangyuan, Northern Sichuan and Zhenba, Southern Shaanxi. Sedimentary Geology and Tethyan Geology, 36(1): 46-54(in Chinese with English abstract). http://www.zhangqiaokeyan.com/academic-journal-cn_sedimentary-geology-tethyan_thesis/0201252082742.html
      Sweere, T., van den Boorn, S., Dickson, A. J., et al., 2016. Definition of New Trace-Metal Proxies for the Controls on Organic Matter Enrichment in Marine Sediments Based on Mn, Co, Mo and Cd Concentrations. Chemical Geology, 441(12): 235-245. https://doi.org/10.1016/j.chemgeo.2016.08.028
      Tribovillard, N., Algeo, T. J., Lyons, T., et al., 2006. Trace Metals as Paleoredox and Paleoproductivity Proxies: An Update. Chemical Geology, 232(1/2): 12-32. https://doi.org/10.1016/j.chemgeo.2006.02.012
      Wang, C., Zhang, B. Q., Shu, Z. G., et al., 2019. Shale Lamination and Its Influence on Shale Reservoir Quality of Wufeng Formation-Longmaxi Formation in Jiaoshiba Area. Earth Science, 44(3): 972-982 (in Chinese with English abstract).
      Wang, J., Bao, H. Y., Lu, Y. Q., et al., 2019. Quantitative Characterization and Main Controlling Factors of Shale Gas Occurrence in Jiaoshiba Area, Fuling. Earth Science, 44(3): 1001-1011 (in Chinese with English abstract). http://www.researchgate.net/publication/333043098_Quantitative_Characterization_and_Main_Controlling_Factors_of_Shale_Gas_Occurrence_in_Jiaoshiba_Area_Fuling
      Wang, X.F., 2016. Ordovician Tectonic-Paleogeography in South China and Chrono- and Bio-Stratigraphic Division and Correlation. Earth Science Frontiers, 23(6): 253-267(in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-DXQY201606026.htm
      Wang, Y.M., Li, X.J., Dong, D.Z., et al., 2017. Main Factors Controlling the Sedimentation of High-Quality Shale in Wufeng-Longmaxi Fm, Upper Yangtze Region. Natural Gas Industry. 37(4): 9-20(in Chinese with English abstract). http://www.sciencedirect.com/science/article/pii/S2352854017301250
      Wang, Y.M., Chen, B., Li, X. J., et al., 2018. Sedimentary Characteristics of Upwelling Facies Shale in Lower Silurian Longmaxi Formation, Northeast Sichuan Area. Acta Petrolei Sinica, 39(10): 1092-1102(in Chinese with English abstract). http://www.researchgate.net/publication/330344163_Sedimentary_characteristics_of_upwelling_facies_shale_in_Lower_Silurian_Longmaxi_Formation_northeast_Sichuan_area
      Wu, J., Liang, F., Lin, W., et al., 2017. Reservoirs Characteristics and Gas-Bearing Capacity of Wufeng-Longmaxi Formation Shale in Well WX-2, Northeast Chongqing Area. Acta Petrolei Sinica, 38(5): 32-44 (in Chinese with English abstract). http://www.researchgate.net/publication/321722120_Reservoirs_characteristics_and_gas-bearing_capacity_of_Wufeng-Longmaxi_Formation_shale_in_Well_WX-2_northeast_Chongqing_area
      Xiong, G. Q., Wang, J., Li, Y. Y., et al., 2017. Zircon U-Pb Dating and Geological Significance of the Bentonites from the Upper Ordovician Wufeng Formation and Lower Silurian Longmaxi Formation in Western Daba Mountains. Sedimentary Geology and Tethyan Geology, 37(2): 46-58(in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-TTSD201702006.htm
      Ye, Y. H., Liu, S. G., Ran, B., et al., 2017. Characteristics of Black Shale in the Upper Ordovician Wufeng and Lower Silurian Longmaxi Formations in the Sichuan Basin and its Periphery, China. Australian Journal of Earth Sciences, 64(5): 667-687. https://doi.org/10.1080/08120099.2017.1321581
      Zheng, Y., Anderson, R. F., van Geen, A., et al., 2000. Authigenic Molybdenum Formation in Marine Sediments: A Link to Pore Water Sulfide in the Santa Barbara Basin. Geochimica et Cosmochimica Acta, 64(24): 4165-4178. https://doi.org/10.1016/s0016-7037(0)00495-6
      Zhou, Y.X., 2014. Study on the Sedimentary Facies and the Geochemical Character of the Hydrocarbon of Wufeng-Longmaxi Formation, Northeast of Chongqing (Dissertation). Chengdu University of Technology, Chengdu, 1-74 (in Chinese with English abstract).
      Zhou, Y. X., Ding, J., Yu, Q., et al., 2017. Sedimentary and Organic Carbon Isotopic Characteristics of the Kuanyinchiao Member in Northeastern Chongqing and Its Regional Correlation. Acta Geological Sinica. 91(5): 1097-1107 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/ http://search.cnki.net/down/default.aspx?filename=DZXE201705010&dbcode=CJFD&year=2017&dflag=pdfdown
      陈旭, 樊隽轩, 张元动, 等, 2015. 五峰组及龙马溪组黑色页岩在扬子覆盖区内的划分与圈定. 地层学杂志, 39(4): 351-358. https://www.cnki.com.cn/Article/CJFDTOTAL-DCXZ201504001.htm
      陈旭, 徐均涛, 成汉钧, 等, 1990. 论汉南古陆及大巴山隆起. 地层学杂志, 14(2): 81-116. https://www.cnki.com.cn/Article/CJFDTOTAL-DCXZ199002000.htm
      邓新, 杨坤光, 刘彦良, 等, 2010. 黔中隆起性质及其构造演化. 地学前缘, 17(3): 79-89. https://www.cnki.com.cn/Article/CJFDTOTAL-DXQY201003009.htm
      董大忠, 施振生, 管全中, 等, 2018. 四川盆地五峰组-龙马溪组页岩气勘探进展、挑战与前景. 天然气工业, 38(4): 67-76. https://www.cnki.com.cn/Article/CJFDTOTAL-TRQG201804013.htm
      付小东, 秦建中, 滕格尔, 等, 2013. 鄂西渝东地区石柱复向斜海相层系烃源研究. 天然气地球科学, 24(2): 372-381. https://www.cnki.com.cn/Article/CJFDTOTAL-TDKX201302024.htm
      郭秀梅, 2015. 渝东北地区五峰组-龙马溪组页岩气成藏条件及有利区预测(硕士学位论文). 成都: 成都理工大学, 1-67.
      郭旭升, 2017. 上扬子地区五峰组-龙马溪组页岩层序地层及演化模式. 地球科学, 42(7): 1069-1082. doi: 10.3799/dqkx.2017.086
      李双建, 肖开华, 沃玉进, 等, 2008. 南方海相上奥陶统-下志留统优质烃源岩发育的控制因素. 沉积学报, 26(5): 872-880. https://www.cnki.com.cn/Article/CJFDTOTAL-CJXB200805024.htm
      李文厚, 1997. 南郑梁山奥陶系与志留系界线附近的沉积特征及沉积环境. 地层学杂志, 21(2): 68-72. https://www.cnki.com.cn/Article/CJFDTOTAL-DCXZ702.009.htm
      李卓, 姜振学, 唐相路, 等, 2017. 渝东南下志留统龙马溪组页岩岩相特征及其对孔隙结构的控制. 地球科学, 42(7): 1116-1123. doi: 10.3799/dqkx.2017.090
      梁峰, 拜文华, 邹才能, 等, 2016. 渝东北地区巫溪2井页岩气富集模式及勘探意义. 石油勘探与开发, 43(3): 350-358. doi: 10.11698/PED.2016.03.04
      刘树根, 邓宾, 孙玮, 等, 2018. 四川盆地: 周缘活动主控下形成的叠合盆地. 地质科学, 53(1): 308-326. https://www.cnki.com.cn/Article/CJFDTOTAL-DZKX201101021.htm
      陆扬博, 马义权, 王雨轩, 等, 2017. 上扬子地区五峰组-龙马溪组主要地质事件及岩相沉积响应. 地球科学, 42(7): 1169-1184. doi: 10.3799/dqkx.2017.095
      聂海宽, 金之钧, 马鑫, 等, 2017. 四川盆地及邻区上奥陶统五峰组-下志留统龙马溪组底部笔石带及沉积特征. 石油学报, 38(2): 160-174. https://www.cnki.com.cn/Article/CJFDTOTAL-SYXB201702004.htm
      邱嘉文, 2015. 四川盆地东缘五峰-龙马溪组页岩岩相特征研究(硕士学位论文). 成都: 成都理工大学, 1-85.
      孙小勇, 牟传龙, 葛祥英, 等, 2016. 四川广元-陕西镇巴地区上奥陶统五峰组地球化学特征及沉积环境意义. 沉积与特提斯地质, 36(1): 46-54. doi: 10.3969/j.issn.1009-3850.2016.01.006
      王超, 张柏桥, 舒志国, 等, 2019. 焦石坝地区五峰组-龙马溪组页岩纹层发育特征及其储集意义. 地球科学, 44(3): 972-982. doi: 10.3799/dqkx.2019.018
      王进, 包汉勇, 陆亚秋, 等, 2019. 涪陵焦石坝地区页岩气赋存特征定量表征及其主控因素. 地球科学, 44(3): 1001-1011. doi: 10.3799/dqkx.2018.388
      汪啸风, 2016. 中国南方奥陶纪构造古地理及年代与生物地层的划分与对比. 地学前缘, 23(6): 253-267. https://www.cnki.com.cn/Article/CJFDTOTAL-DXQY201606026.htm
      王玉满, 李新景, 董大忠, 等, 2017. 上扬子地区五峰组-龙马溪组优质页岩沉积主控因素. 天然气工业, 37(4): 9-20. https://www.cnki.com.cn/Article/CJFDTOTAL-TRQG201704004.htm
      王玉满, 陈波, 李新景, 等, 2018. 川东北地区下志留统龙马溪组上升洋流相页岩沉积特征. 石油学报, 39(10): 1092-1102. doi: 10.7623/syxb201810002
      武瑾, 梁峰, 吝文, 等, 2017. 渝东北地区巫溪2井五峰组-龙马溪组页岩气储层及含气性特征. 石油学报, 38(5): 32-44. https://www.cnki.com.cn/Article/CJFDTOTAL-SYXB201705004.htm
      熊国庆, 王剑, 李园园, 等, 2017. 大巴山西段上奥陶统-下志留统五峰组-龙马溪组斑脱岩锆石U-Pb年龄及其地质意义. 沉积与特提斯地质, 37(2): 46-58. doi: 10.3969/j.issn.1009-3850.2017.02.006
      周业鑫, 2014. 渝东北地区五峰-龙马溪组页岩沉积相及其油气地球化学特征(硕士学位论文). 成都: 成都理工大学, 1-74.
      周业鑫, 丁俊, 余谦, 等, 2017. 渝东北地区观音桥段沉积与有机碳同位素特征及其区域对比. 地质学报, 91(5): 1097-1107. doi: 10.3969/j.issn.0001-5717.2017.05.010
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