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    扬子西缘新元古代中期裂谷作用:来自年代学与沉积学的新证据

    刘石磊 崔晓庄 汪长林 任光明 王鹏 庞维华 任飞

    刘石磊, 崔晓庄, 汪长林, 任光明, 王鹏, 庞维华, 任飞, 2020. 扬子西缘新元古代中期裂谷作用:来自年代学与沉积学的新证据. 地球科学, 45(8): 3082-3093. doi: 10.3799/dqkx.2020.145
    引用本文: 刘石磊, 崔晓庄, 汪长林, 任光明, 王鹏, 庞维华, 任飞, 2020. 扬子西缘新元古代中期裂谷作用:来自年代学与沉积学的新证据. 地球科学, 45(8): 3082-3093. doi: 10.3799/dqkx.2020.145
    Liu Shilei, Cui Xiaozhuang, Wang Changlin, Ren Guangming, Wang Peng, Pang Weihua, Ren Fei, 2020. New Sedimentological and Geochronological Evidence for Mid-Neoproterozoic Rifting in Western Yangtze Block, South China. Earth Science, 45(8): 3082-3093. doi: 10.3799/dqkx.2020.145
    Citation: Liu Shilei, Cui Xiaozhuang, Wang Changlin, Ren Guangming, Wang Peng, Pang Weihua, Ren Fei, 2020. New Sedimentological and Geochronological Evidence for Mid-Neoproterozoic Rifting in Western Yangtze Block, South China. Earth Science, 45(8): 3082-3093. doi: 10.3799/dqkx.2020.145

    扬子西缘新元古代中期裂谷作用:来自年代学与沉积学的新证据

    doi: 10.3799/dqkx.2020.145
    基金项目: 

    国家自然科学基金项目 41802137

    国家自然科学基金项目 41872120

    国家自然科学基金项目 41502114

    中国地质调查局项目 DD20190054

    中国地质调查局项目 DD20190375

    详细信息
      作者简介:

      刘石磊(1986-), 男, 助理研究员, 博士, 主要从事前寒武沉积地质研究.ORCID:0000-0002-0384-1601.E-mail:hanliliushilei@163.com

    • 中图分类号: P548

    New Sedimentological and Geochronological Evidence for Mid-Neoproterozoic Rifting in Western Yangtze Block, South China

    • 摘要: 华南新元古代沉积盆地演化与Rodinia超大陆裂解存在紧密联系,但仍缺乏精细刻画.对扬子西缘澄江组开展了系统的碎屑锆石年代学和沉积学研究.澄江组砂岩的碎屑锆石U-Pb年龄主要为新元古代(870~780 Ma),少数为前新元古代(2 850~1 010 Ma),最显著的峰值为820 Ma,最年轻一组碎屑锆石206Pb/238U年龄加权平均值为804.5±5.4 Ma.结合已发表年龄数据,将澄江组沉积时限进一步限定为800~720 Ma.物源分析揭示澄江组的新元古代碎屑锆石剥蚀自邻近的新元古代岩浆岩,而前新元古代锆石可能来自于邻近新元古代岩体的剥蚀或地层的沉积再循环.扬子西缘新元古代中期沉积盆地具有由冲积扇相逐渐过渡为前扇三角洲相的沉积演化序列,最终形成了具有裂谷充填特征的“楔状地层”.这种沉积超覆演化过程在整个华南新元古代裂谷系普遍存在,指示在800 Ma左右华南全面进入裂谷盆地成熟阶段.

       

    • 图  1  滇中地区峨山县舍郎地区(a)和晋宁县王家湾地区(b)的地质简图及剖面位置

      Fig.  1.  Geological map and section location of Shelang area in Eshan County (a) and Wangjiawan area in Jinning County (b) in central Yunnan

      图  2  澄江组样品WJW-N1的代表性碎屑锆石CL图

      Fig.  2.  Typical CL images of detrital zircons for sample WJW-N1 in the Chengjiang Formation

      图  3  澄江组样品WJW-N1的碎屑锆石U-Pb年龄谐和图(a)和直方图(b)

      Fig.  3.  U-Pb concordia diagram (a) and histogram (b) of detrital zircons for sample WJW-N1 in the Chengjiang Formation

      图  4  澄江组岩石类型

      a.分选磨圆较差的厚块状砾岩,舍郎剖面底部;b.弱定向排列的砾石,舍郎剖面中部;c.发育平行层理的长石岩屑砂岩,王家湾剖面中下部;d.发育水平层理的泥质粉砂岩,王家湾剖面中上部;e.发育小型交错层理的长石石英砂岩,王家湾剖面中上部;f.粉砂质泥岩,王家湾剖面顶部

      Fig.  4.  Rock types of the Chengjiang Formation

      图  5  扬子西缘新元古代澄江组岩性柱状对比图

      舍郎剖面及王家湾剖面为本文实测剖面,澄江凤凰山剖面及陆良小井子剖面王剑等(2019)

      Fig.  5.  Columnar comparison of Chengjiang Formation on the western margin of Yangtze Block

      图  6  不同地块碎屑锆石年龄谱对比图

      数据来源:印支(Wang et al., 2016);云开地区(Wang et al., 2007, 2011; Wan et al., 2010; Yu et al., 2010王磊等,2015; 周雪瑶等,2015);扬子北缘(Liu et al., 2008);扬子东南缘(Wang et al., 2006, 2010, 2016);扬子西缘(Zhou et al., 2002, 2006; Sun et al., 2009; Zhao et al., 2010; Wang et al., 2012);昆阳群(Sun et al., 2009

      Fig.  6.  Comparison of U-Pb age spectra of detrital zircons from different blocks

      表  1  研究区澄江组沉积相特征

      Table  1.   Sedimentary characteristics of Chengjiang Formation in the study area

      沉积相 亚相 微相 岩石类型 沉积构造、结构
      冲积扇 扇根 主水道 砾石质支撑漂浮砾岩;多级颗粒支撑砾石;砂质支撑漂浮砾岩 块状构造、颗粒支撑,分选较差,杂基含量高,磨圆较差呈棱角-次棱角状
      主水道间 紫红色粉砂岩、细砂岩 薄层状、粒度较细
      扇中 辫状水道 多级颗粒支撑砾石、含砾砂岩、递变层理砂砾岩、弱定向砾岩 块状构造,平行层理、交错层理、偶见冲刷面.颗粒支撑或杂基支撑,分选较差,杂基含量较高,磨圆较差呈次棱角-次圆状
      辫状水道间 粉砂岩、泥质粉砂岩、粉砂质泥岩 水平层理、粒度较细
      扇端 粉砂岩、细砂岩、泥岩 水平层理
      扇三角洲 扇三角洲平原 辫状河道 叠瓦状砾岩、含砾砂岩、不等粒砂岩、中粗粒砂岩 块状构造,正递变粒序、交错层理、颗粒支撑,分选较好,杂基含量稍高,磨圆较好,呈次圆-圆状
      辫状河道间 细砂岩、泥质粉砂岩 水平层理、粒度较细
      扇三角洲前缘 水下分流河道 中厚层状岩屑砂岩、长石岩屑砂岩常与泥岩互层 平行层理、粒序层理、颗粒支撑,分选较好,杂基含量较低,磨圆好,多呈次圆-圆状
      远砂坝 细粒长石岩屑砂岩、粉砂岩 中薄层状、粒度较细
      间湾 灰绿色粉砂质泥岩 水平层理、偶见砂纹层理
      前扇三角洲 灰绿色泥岩或粉砂质泥岩 水平纹层、偶见透镜状层理
      下载: 导出CSV
    • [1] Black, L. P., Kamo, S. L., Williams, I. S., et al., 2003. The Application of SHRIMP to Phanerozoic Geochronology:A Critical Appraisal of Four Zircon Standards. Chemical Geology, 200(1):171-188. https://doi.org/10.1016/S0009-2541(03)00166-9
      [2] Chen, Q., Sun, M., Long, X. P., et al., 2016. U-Pb Ages and Hf Isotopic Record of Zircons from the Late Neoproterozoic and Silurian-Devonian Sedimentary Rocks of the Western Yangtze Block:Implications for Its Tectonic Evolution and Continental Affinity. Gondwana Research, 31:184-199. https://doi.org/10.1016/j.gr.2015.01.009
      [3] Cui, X.Z., Jiang, X.S., Wang, J., et al., 2013. Zircon U-Pb Geochronology for the Stratotype Section of the Neoproterozoic Chengjiang Formation in Central Yunnan and Its Geological Significance. Geoscience, 27(3):547-556 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=xddz201303005
      [4] Cui, X.Z., Jiang, X.S., Wang, J., et al., 2014. Filling Sequence and Evolution Model of the Neoproterozoic Rift Basin in Central Yunnan Province, South China:Response to the Breakup of Rodinia Supercontinent. Acta Sedimentologica Sinica, 32(3):399-409 (in Chinese).
      [5] Cui, X. Z., Wang, J., Ren, G. M., et al., 2020. Paleoproterozoic Tectonic Evolution of the Yangtze Block:New Evidence from ca. 2.36 to 2.22 Ga Magmatism and 1.96 Ga Metamorphism in the Cuoke Complex, SW China. Precambrian Research, 337:105525. https://doi.org/10.1016/j.precamres.2019.105525
      [6] Du, Q. D., Wang, Z. J., Wang, J., et al., 2013. Geochronology and Paleoenvironment of the Pre-Sturtian Glacial Strata:Evidence from the Liantuo Formation in the Nanhua Rift Basin of the Yangtze Block, South China. Precambrian Research, 233:118-131. https://doi.org/10.1016/j.precamres.2013.04.012
      [7] Fu, B., Kita, N. T., Wilde, S. A., et al., 2013. Origin of the Tongbai-Dabie-Sulu Neoproterozoic Low-δ18O Igneous Province, East-Central China. Contributions to Mineralogy and Petrology, 165(4):641-662. https://doi.org/10.1007/s00410-012-0828-3
      [8] Hu, Z. C., Zhang, W., Liu, Y. S., et al., 2015. "Wave" Signal-Smoothing and Mercury-Removing Device for Laser Ablation Quadrupole and Multiple Collector ICPMS Analysis:Application to Lead Isotope Analysis. Analytical Chemistry, 87(2):1152-1157. https://doi.org/10.1021/ac503749k
      [9] Jiang, X.S., Wang, J., Cui, X.Z., et al., 2012. Zircon SHRIMP U-Pb Geochronology of the Neoproterozoic Chengjiang Formation in Central Yunnan Province (SW China) and Its Geological Significance. Scientia Sinica Terrae, 42(10):1496-1507 (in Chinese with English abstract). doi: 10.1360/zd-2012-42-10-1496
      [10] Li, W. X., Li, X. H., Li, Z. X, 2005. Neoproterozoic Bimodal Magmatism in the Cathaysia Block of South China and Its Tectonic Significance. Precambrian Research, 136(1):51-66. https://doi.org/10.1016/j.precamres.2004.09.008
      [11] Li, X. H., Li, W. X., Li, Z. X., et al., 2008a.850-790 Ma Bimodal Volcanic and Intrusive Rocks in Northern Zhejiang, South China:A Major Episode of Continental Rift Magmatism during the Breakup of Rodinia. Lithos, 102(1-2):341-357. https://doi.org/10.1016/j.lithos.2007.04.007
      [12] Li, Z. X., Bogdanova, S.V., Collins, A. S., et al., 2008b. Assembly, Configuration, and Break-Up History of Rodinia:A Synthesis. Precambrian Research, 160(1-2):179-210. https://doi.org/10.1016/j.precamres.2007.04.021
      [13] Li, X. H., Li, Z. X., Ge, W. C., et al., 2003a. Neoproterozoic Granitoids in South China:Crustal Melting above a Mantle Plume at ca. 825 Ma? Precambrian Research, 122(1-4):45-83. https://doi.org/10.1016/s0301-9268(02)00207-3 doi: 10.1016/S0301-9268(02)00207-3
      [14] Li, X. H., Li, Z. X., Zhou, H. W., et al., 2003b. SHRIMP U-Pb Zircon Age, Geochemistry and Nd Isotope of the Guandaoshan Pluton in SW Sichuan:Petrogenesis and Tectonic Significance. Science China Earth Sciences, 46(1):73-83. https://doi.org/10.1360/03dz9029
      [15] Li, Z. X., Li, X. H., Kinny, P. D., et al., 2003c. 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. https://doi.org/10.1016/s0301-9268(02)00208-5
      [16] Li, X. H., Li, Z. X., Zhou, H. W., et al., 2002a. U-Pb Zircon Geochronology, Geochemistry and Nd Isotopic Study of Neoproterozoic Bimodal Volcanic Rocks in the Kangdian Rift of South China:Implications for the Initial Rifting of Rodinia. Precambrian Research, 113(1):135-154. https://doi.org/10.1016/s0301-9268(01)00207-8
      [17] Li, Z. X., Li, X. H., Zhou, H. W., et al., 2002b. Grenvillian Continental Collision in South China:New SHRIMP U-Pb Zircon Results and Implications for the Configuration of Rodinia. Geology, 30(2):163-166. https://doi.org/10.1130/0091-7613(2002)0300163:gccisc > 2.0.co; 2 doi: 10.1130/0091-7613(2002)0300163:gccisc>2.0.co;2
      [18] Ling, W. L., Gao, S., Zhang, B. R., et al., 2003. Neoproterozoic Tectonic Evolution of the Northwestern Yangtze Craton, South China:Implications for Amalgamation and Break-Up of the Rodinia Supercontinent. Precambrian Research, 122(1):111-140. https://doi.org/10.1016/s0301-9268(02)00222-x
      [19] Liu, X.M., Gao, S., Diwu, C.R., et al., 2008. Precambrian Crustal Growth of Yangtze Craton as Revealed by Detrital Zircon Studies. American Journal of Science, 308(4):421-468. https://doi.org/10.2475/04.2008.02 http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=2e622439606af6ab566b5f44dcb309cf
      [20] Liu, Y. S., Gao, S., Hu, Z. C., et al., 2010. Continental and Oceanic Crust Recycling-Induced Melt-Peridotite Interactions in the Trans-North China Orogen:U-Pb Dating, Hf Isotopes and Trace Elements in Zircons from Mantle Xenoliths. Journal of Petrology, 51(1-2):537-571. https://doi.org/10.1093/petrology/egp082
      [21] Lu, J. Z., Jiang, X.S., Wang, J., et al., 2013. SHRIMP Zircon U-Pb Age and Its Geological Significance of Neoproterozoic Chengjiang Formation in Qiaojia Northeast Yunnan. Journal of Mineralogy and Petrology, 33(2):65-71 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=kwys201302010
      [22] Ludwig, K.R., 2003. User's Manual for Isoplot 3.00: A Geochronological Toolkit for Microsoft Excel. Berkeley Geochronological Center Special Publication, Berkeley.
      [23] Qiu, X. F., Ling, W. L., Liu, X. M., et al., 2011. Recognition of Grenvillian Volcanic Suite in the Shennongjia Region and Its Tectonic Significance for the South China Craton. Precambrian Research, 191(3):101-119. https://doi.org/10.1016/j.precamres.2011.09.011 http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=60f7f1ad395bf5b11bf18758f3709b3b
      [24] Spencer, C. J., Kirkland, C. L., Taylor, R. J. M., 2016. Strategies towards Statistically Robust Interpretations of In Situ U-Pb Zircon Geochronology. Geoscience Frontiers, 7(4):581-589. https://doi.org/10.1016/j.gsf.2015.11.006
      [25] Sun, W. H., Zhou, M. F., Yan, D. P., et al., 2008. Provenance and Tectonic Setting of the Neoproterozoic Yanbian Group, Western Yangtze Block (SW China). Precambrian Research, 167(1-2):213-236. https://doi.org/10.1016/j.precamres.2008.08.001
      [26] Sun, W. H., Zhou, M. F., Gao, J. F., et al., 2009. Detrital Zircon U-Pb Geochronological and Lu-Hf Isotopic Constraints on the Precambrian Magmatic and Crustal Evolution of the Western Yangtze Block, SW China. Precambrian Research, 172(1-2):99-126. https://doi.org/10.1016/j.precamres.2009.03.010
      [27] Wang, J., Jiang, X. S., Zhuo, J. W., et al., 2019.Neoproterozoic Rifting History and Lithofacies Palaeogeography in South China. Science Press, Beijing (in Chinese).
      [28] Wang, J., Li, Z. X, 2003. History of Neoproterozoic Rift Basins in South China; Implications for Rodinia Break-Up. Precambrian Research, 122(1):141-158. https://doi.org/10.1016/s0301-9268(02)00209-7
      [29] Wang, J., Zeng, Z.G., Chen, W.X., et al., 2006. The Neoproterozoic Rift Systems in Southern China:New Evidence for the Sedimentary on Lap and Its Initial Age. Sedimentary Geology and Tethyan Geology, 26(4):1-7 (in Chinese with English abstract).
      [30] Wang, J., Zhou, X.L., Guo, X.M., et al., 2013. The Onset and Sedimentary Evolution of the Neoproterozoic Basin in South China:A Case Study of the Jiangnan Sub-Basin, Northeastern Jiangxi. Acta Sedimentologica Sinica, 31(5):834-844 (in Chinese with English abstract).
      [31] Wang, L., Long, W.G., Xu, D.M., et al., 2015. Zircon U-Pb Geochronology of Metamorphic Basement in Yunkai Area and Its Implications on the Grenvillian Event in the Cathaysia Block. Earth Science Frontiers, 22(2):25-40 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=dxqy201502003
      [32] Wang, L. J., Yu, J. H., Griffin, W. L., et al., 2012. Early Crustal Evolution in the Western Yangtze Block:Evidence from U-Pb and Lu-Hf Isotopes on Detrital Zircons from Sedimentary Rocks. Precambrian Research, 222-223:368-385. https://doi.org/10.1016/j.precamres.2011.08.001
      [33] Wang, Q.Y., Mou, C.L., He, J., et al., 2018. Provenance Analysis and Tectonic Setting Judgment in Shanglan Formation of Middle Triassic in Weixi Area. Earth Science, 43(8):2811-2832 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=dqkx201808020
      [34] Wang, Y. J., Fan, W. M., Zhao, G. C., et al., 2007. Zircon U-Pb Geochronology of Gneissic Rocks in the Yunkai Massif and Its Implications on the Caledonian Event in the South China Block. Gondwana Research, 12(4):404-416. https://doi.org/10.1016/j.gr.2006.10.003
      [35] Wu, Y. B., Gao, S., Zhang, H. F., et al., 2012. Geochemistry and Zircon U-Pb Geochronology of Paleoproterozoic Arc Related Granitoid in the Northwestern Yangtze Block and Its Geological Implications. Precambrian Research, 200-203:26-37.https://doi.org/10.1016/j.precamres.2011.12.015 http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=da5d33eb1dba1ee1643452034bfd7dce
      [36] Yu, J. H., O'Reilly, S. Y., Wang, L. J., et al., 2010. Components and Episodic Growth of Precambrian Crust in the Cathaysia Block, South China:Evidence from U-Pb Ages and Hf Isotopes of Zircons in Neoproterozoic Sediments. Precambrian Research, 181(1-4):97-114. https://doi.org/10.1016/j.precamres.2010.05.016
      [37] Zhang, H.C., Xu, Y.J., Du, Y.S., et al., 2018. Detrital Zircon Geochronology of Late Paleozoic Strata from Southern Hillside of Taiping Hill in Zhoukoudian Area, Beijing and Their Tectonic Implications. Earth Science, 43(6):2100-2115 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=dqkx201806023
      [38] Zhao, J. H., Zhou, M. F., 2007. Neoproterozoic Adakitic Plutons and Arc Magmatism along the Western Margin of the Yangtze Block, South China. The Journal of Geology, 115(6):675-689. https://doi.org/10.1086/521610
      [39] Zhao, Y.L., Liu, Y.J., Li, W.M., et al., 2018. Detrital Zircon LA-ICP-MS U-Pb Age of Late Carboniferous to Early Permian Sandstones in Central Great Xing'an Range and Its Geological Significance. Earth Science, 43(6):2055-2075 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=dqkx201806021
      [40] Zhou, B.G., Wang, S.W., Sun, X.M., et al., 2012. SHRIMP U-Pb Age and Its Significance of Zircons in Welded Tuff of Wangchang Formation in Dongchuan Area, Yunnan Province, SW China. Geological Review, 58(2):359-368 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=dzlp201202018
      [41] Zhou, M. F., Yan, D. P., Kennedy, A.K., et al., 2002. SHRIMP U-Pb Zircon Geochronological and Geochemical Evidence for Neoproterozoic Arc-Magmatism along the Western Margin of the Yangtze Block, South China. Earth and Planetary Science Letters, 196(1):51-67. https://doi.org/10.1016/S0012-821x(01)00595-7 http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=fa451c838d83ba45f2729cf180d2373c
      [42] Zhou, M. F., Ma, Y. X., Yan, D. P., et al., 2006. The Yanbian Terrane (Southern Sichuan Province, SW China):A Neoproterozoic Arc Assemblage in the Western Margin of the Yangtze Block. Precambrian Research, 144(1-2):19-38. https://doi.org/10.1016/j.precamres.2005.11.002
      [43] Zhou, X.Y., Yu, J.H., Wang, L.J., et al., 2015. Compositions and Formation of the Basement Metamorphic Rocks in Yunkai Terrane, Western Guangdong Province, South China. Acta Petrologica Sinica, 31(3):855-882 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=ysxb98201503018
      [44] Zhu, G. L., Yu, J. H., Zhou, X. Y., et al., 2019. The Western Boundary between the Yangtze and Cathaysia Blocks, New Constraints from the Pingbian Group Sediments, Southwest South China Block. Precambrian Research, 331:105350. https://doi.org/10.1016/j.precamres.2019.105350
      [45] Zhuo, J. W., Jiang, X. S., Wang, J., et al., 2013.Opening Time and Filling Pattern of the Neoproterozoic Kangdian Rift Basin, Western Yangtze Continent, South China. Scientia Sinica Terrae, 43(12):1952-1963 (in Chinese). doi: 10.1360/zd-2013-43-12-1952
      [46] Zhuo, J.W., Jiang, X.S., Wang, J., et al., 2015. Zircon SHRIMP U-Pb Age of Sedimentary Tuff at the Bottom of Neoproterozoic Kaijianqiao Formation in Western Sichuan, and Its Geological Implication. Journal of Mineralogy and Petrology, 35(1):91-99 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=kwys201501012
      [47] Zhuo, J.W., Jiang, Z.F., Jiang, X.S., et al., 2017. SHRIMP Zircon U-Pb Ages for the Stratotype Section of Neoproterozoic Suxiong Formation in Western Sichuan Province and Their Geological Significance. Geological Review, 63(1):177-188 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=dzlp201701016
      [48] Zong, K. Q., Klemd, R., Yuan, Y., et al., 2017. The Assembly of Rodinia:The Correlation of Early Neoproterozoic (ca. 900 Ma) High-Grade Metamorphism and Continental Arc Formation in the Southern Beishan Orogen, Southern Central Asian Orogenic Belt (CAOB). Precambrian Research, 290:32-48. https://doi.org/10.1016/j.precamres.2016.12.010
      [49] 崔晓庄, 江新胜, 王剑, 等, 2013.滇中新元古代澄江组层型剖面锆石U-Pb年代学及其地质意义.现代地质, 27(3):547-556. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=xddz201303005
      [50] 崔晓庄, 江新胜, 王剑, 等, 2014.滇中新元古代裂谷盆地充填序列及演化模式:对Rodinia超大陆裂解的响应.沉积学报, 32(3):399-409.
      [51] 江新胜, 王剑, 崔晓庄, 等, 2012.滇中新元古代澄江组锆石SHRIMP U-Pb年代学研究及其地质意义.中国科学:地球科学, 42(10):1496-1507. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=zgkx-cd201210004
      [52] 陆俊泽, 江新胜, 王剑, 等, 2013.滇东北巧家地区新元古界澄江组SHRIMP锆石U-Pb年龄及其地质意义.矿物岩石, 33(2):65-71. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=kwys201302010
      [53] 王剑, 江新胜, 卓皆文, 等, 2019.华南新元古代裂谷盆地演化与岩相古地理.北京:科学出版社.
      [54] 王剑, 曾昭光, 陈文西, 等, 2006.华南新元古代裂谷系沉积超覆作用及其开启年龄新证据.沉积与特提斯地质, 26(4):1-7. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=yxgdl200604001
      [55] 王剑, 周小琳, 郭秀梅, 等, 2013.华南新元古代盆地开启年龄及沉积演化特征:以赣东北江南次级盆地为例.沉积学报, 31(5):834-844. http://d.wanfangdata.com.cn/conference/8210575
      [56] 王磊, 龙文国, 徐德明, 等, 2015.云开地区变质基底锆石U-Pb年代学及对华夏地块Grenvillian事件的指示.地学前缘, 22(2):25-40. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=dxqy201502003
      [57] 王启宇, 牟传龙, 贺娟, 等, 2018.维西地区中三叠统上兰组物源分析及构造背景判断.地球科学, 43(8):2811-2832. doi: 10.3799/dqkx.2018.307
      [58] 张航川, 徐亚军, 杜远生, 等, 2018.北京周口店太平山南坡晚古生代碎屑锆石U-Pb年代学及其大地构造意义.地球科学, 43(6):2100-2115. doi: 10.3799/dqkx.2018.548
      [59] 赵英利, 刘永江, 李伟民, 等, 2018.大兴安岭中段晚石炭世-早二叠世砂岩碎屑锆石LA-ICP-MS U-Pb年龄及地质意义.地球科学, 43(6):2055-2075. doi: 10.3799/dqkx.2018.613
      [60] 周邦国, 王生伟, 孙晓明, 等, 2012.云南东川望厂组熔结凝灰岩锆石SHRIMP U-Pb年龄及其意义.地质论评, 58(2):359-368. http://www.cnki.com.cn/Article/CJFDTotal-DZLP201202024.htm
      [61] 周雪瑶, 于津海, 王丽娟, 等, 2015.粤西云开地区基底变质岩的组成和形成.岩石学报, 31(3):855-882. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=ysxb98201503018
      [62] 卓皆文, 江新胜, 王剑, 等, 2013.华南扬子古大陆西缘新元古代康滇裂谷盆地的开启时间与充填样式.中国科学:地球科学, 43(12):1952-1963. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=zgkx-cd201312006
      [63] 卓皆文, 江新胜, 王剑, 等, 2015.川西新元古界开建桥组底部沉凝灰岩锆石SHRIMP U-Pb年龄及其地质意义.矿物岩石, 35(1):91-99. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=kwys201501012
      [64] 卓皆文, 江卓斐, 江新胜, 等, 2017.川西新元古代苏雄组层型剖面SHRIMP锆石U-Pb年龄及其地质意义.地质论评, 63(1):177-188. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=dzlp201701016
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