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    西藏色龙西山二叠系-三叠系界线剖面稳定碳同位素特征

    安显银 张予杰 朱同兴 张以春 袁东勋

    安显银, 张予杰, 朱同兴, 张以春, 袁东勋, 2018. 西藏色龙西山二叠系-三叠系界线剖面稳定碳同位素特征. 地球科学, 43(8): 2848-2857. doi: 10.3799/dqkx.2018.103
    引用本文: 安显银, 张予杰, 朱同兴, 张以春, 袁东勋, 2018. 西藏色龙西山二叠系-三叠系界线剖面稳定碳同位素特征. 地球科学, 43(8): 2848-2857. doi: 10.3799/dqkx.2018.103
    An Xianyin, Zhang Yujie, Zhu Tongxing, Zhang Yichun, Yuan Dongxun, 2018. Stable Carbon Isotope Characteristics of Permian-Triassic Boundary at the Selong Xishan Section. Earth Science, 43(8): 2848-2857. doi: 10.3799/dqkx.2018.103
    Citation: An Xianyin, Zhang Yujie, Zhu Tongxing, Zhang Yichun, Yuan Dongxun, 2018. Stable Carbon Isotope Characteristics of Permian-Triassic Boundary at the Selong Xishan Section. Earth Science, 43(8): 2848-2857. doi: 10.3799/dqkx.2018.103

    西藏色龙西山二叠系-三叠系界线剖面稳定碳同位素特征

    doi: 10.3799/dqkx.2018.103
    基金项目: 

    中国地质调查局项目 DD20160018

    中国地质调查局项目 DD20160015

    中国地质调查局项目 1212011121257

    国家自然科学基金项目 41602126

    详细信息
      作者简介:

      安显银(1988-), 男, 硕士, 工程师, 主要从事地层学及沉积学研究

    • 中图分类号: P53;P59

    Stable Carbon Isotope Characteristics of Permian-Triassic Boundary at the Selong Xishan Section

    • 摘要: 古生代-中生代之交的生物灭绝过程和原因一直是科学家关注和致力解决的关键古生物学问题之一.色龙西山剖面的牙形石分带工作取得了重要进展,为认识该地区地层序列和沉积历史提供了新的证据.全岩碳同位素分析表明,在长兴阶与印度阶附近该剖面存在着碳同位素负偏,可以同我国华南多个剖面进行对比,揭示了古生代-中生代之交的碳同位素变化和生物灭绝模式具有全球对比性.新识别出的奥伦尼克阶底部(Neospathodus waageni带底部)碳同位素值大幅度负偏及之后的正偏,与华南等地的变化规律一致,反映了二叠纪末期到早三叠世长期的、复杂的生物和环境变化过程.

       

    • 图  1  西藏色龙地区地质图及构造位置

      潘桂棠等(2002)修改.Ⅲ2.拉达克-冈底斯-拉萨-腾冲陆块;Ⅲ2-1.昂龙岗日-班戈-腾冲燕山期岩浆弧带;Ⅲ2-4.革吉-措勤晚古生代复合弧后盆地带;Ⅲ2-5.隆格尔-工布江达断隆带;Ⅲ2-6.冈底斯-下察隅晚燕山-喜马拉雅期岩浆弧带;Ⅲ2-7.冈底斯南缘弧前盆地带;Ⅲ3.印度河-雅鲁藏布江结合带;Ⅲ4.印度陆块;Ⅲ4-1.北喜马拉雅特提斯沉积褶冲带;Ⅲ4-2.高喜马拉雅结晶岩带或基底逆冲带;Ⅲ4-3.低喜马拉雅褶冲带;Ⅲ4-4.锡瓦利克厚造山前陆盆地带

      Fig.  1.  The geological map and tectonic framework of Selong area, Tibet

      图  2  西藏色龙西山PTB剖面野外露头照片

      Fig.  2.  Outcrop photographs of PTB at the Selong Xishan section, Tibet

      图  3  西藏色龙西山剖面牙形石生物地层及δ13CPDB变化曲线

      牙形石带划分方案据Yuan et al.(2018)修改

      Fig.  3.  Conodont biostratigraphy and curves of δ13CPDB at the Selong Xishan section, Tibet

      图  4  西藏色龙西山剖面产出的典型牙形石

      a.Hindeodus parvus,侧视;b.Neospathodus waageni,侧视

      Fig.  4.  Conodonts from the Selong Xishan section, Tibet

      图  5  西藏色龙西山剖面与我国华南等地剖面δ13CPDB对比

      其余剖面的碳同位素值来自Tong et al.(2007)

      Fig.  5.  Correlation of δ13CPDB between the Selong Xishan section and other well-studied Lower Triassic sections in South China

      表  1  色龙西山剖面δ13CPDBδ18OPDB同位素值测试结果

      Table  1.   The contents of δ13CPDB and δ18OPDB at the Selong Xishan section, Tibet

      样品δ13CPDB(‰)δ18OPDB(‰)
      TWS(6.55 m)-0.675-10.790
      TWS(6.2 m)-0.292-13.330
      TWS(6.0 m)-0.524-15.480
      TWS(5.8 m)0.166-12.598
      TWS(5.6 m)-0.066-14.623
      TWS(5.5 m)2.658-11.960
      TWS(5.4 m)1.543-13.417
      TWS(5.2 m)0.703-12.420
      TWS(5.0 m)1.677-12.564
      TWS(4.8 m)-1.465-19.436
      TWS(4.6m)0.010-17.250
      TWS(4.4m)1.048-17.279
      TWS(4.2m)1.872-16.835
      TWS(2.0m)2.197-13.831
      TWS(1.8m)2.606-13.637
      TWS(1.6m)2.190-13.491
      TWS(1.4m)1.679-14.679
      TWS(1.2m)1.838-14.122
      TWS(1.0m)1.937-13.604
      TWS(0.9 m)2.616-11.843
      TWS(0.8 m)2.069-12.972
      TWS(0.7 m)1.697-13.673
      TWS(0.6 m)1.779-13.649
      TWS(0.5 m)1.879-13.753
      TWS(0.4 m)2.026-12.213
      TWS(0.3 m)2.327-13.062
      TWS(0.2 m)1.841-13.069
      TWS(0.1 m)2.125-13.451
      TWS(0.05 m)2.246-11.489
      TWS(-0.05 m)1.707-14.833
      TWS(-0.1m)2.572-8.907
      TWS(-0.2m)2.869-10.305
      TWS(-0.7m)2.480-14.065
      TWS(-0.9m)1.943-14.371
      TWS(-1.1m)2.236-15.273
      TWS(-1.5m)2.317-14.955
      TWS(-2.0m)2.210-13.206
      TWS(-2.5m)3.150-13.351
      下载: 导出CSV
    • [1] Brühwiler, T., Goudemand, N., Galfetti, T., et al., 2009.The Lower Triassic Sedimentary and Carbon Isotope Records from Tulong (South Tibet) and Their Significance for Tethyan Palaeoceanography.Sedimentary Geology, 222(3-4):314-332. https://doi.org/10.1016/j.sedgeo.2009.10.003
      [2] Cao, C.Q., Wang, W., Jin, Y., 2002.Carbon Isotope Variation near the Boundary of the Permian-Triassic in Meishan, Zhejiang.Chinese Science Bulletin, 47(4):302-306 (in Chinese). doi: 10.1360/02tb9072
      [3] Cui, Y., Liu, J.B.Jiang, Q.Y.Y., 2009.Fluctuations of Stable Carbon Isotopes around the Permian-Triassic Boundary in Huaying of Sichuan, South China:Its Characteristics and Biogeochemical Origin.Acta Scientiarum Naturalium Universitatis Pekinensis, 45(3):461-471 (in Chinese with English abstract).
      [4] Hu, X.M., Wang, C.S., Li, X.H., 2001.Stable Carbon Isotope Response to Oceanic Anoxic Events.Journal of Chengdu University of Technology, 28(1):1-6 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=cdlgxyxb200101001
      [5] Huang, K.K., Huang, S.J., Lan, Y.F., et al., 2013.Review of the Carbon Isotope of Early Triassic Carbonates.Advance in Earth Sciences, 28(3):357-365 (in Chinese with English abstract). http://d.old.wanfangdata.com.cn/Periodical/dqkxjz201303007
      [6] Isozaki, Y., 1997.Permo-Triassic Boundary Superanoxia and Stratified Superocean:Records from Lost Deep Sea.Science, 276(5310):235-238. https://doi.org/10.1126/science.276.5310.235
      [7] Li, Y.C., Zhou, Z.Z., 2002.Massive Dissociation of Gas Hydrate during Oceanic Anoxia as a Cause of Mass Extinction at the End of Permian.Geology-Geochemistry, 30(1):57-63 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=dzdqhx200201010
      [8] Liang, H.D., Liang, Y.C., 2004.Observation and Determination of Residue Acid Trapped in the White Clay near Permian-Triassic Boundary of the Meishan Section in South China.Science Technology and Engineering, 4(1):7-11 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=kxjsygc200401003
      [9] Magaritz, M., Krishnamurthy, R.V., Holser, W.T., 1992.Parallel Trends in Organic and Inorganic Carbon Isotopes across the Permian/Triassic Boundary.American Journal of Science, 292(10):727-739. https://doi.org/10.2475/ajs.292.10.727
      [10] Pan, G.T., Li, X.Z., Wang, L.Q., et al., 2002.Preliminary Division of Tectonic Units of the Qinghai-Tibet Plateau and Its Adjacent Regions.Regional Geology of China, 21(11):701-707 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=zgqydz200211002
      [11] Payne, J.L., Lehrmann, D.J., Wei, J.Y., et al., 2004.Large Perturbations of the Carbon Cycle during Recovery from the End-Permian Extinction.Science, 305(5683):506-509. https://doi.org/10.1126/science.1097023
      [12] Payne, J.L., Turchyn, A.V., Paytan, A., et al., 2010.Calcium Isotope Constraints on the End-Permian Mass Extinction.Proceedings of the National Academy of Sciences, 107(19):8543-8548. https://doi.org/10.1073/pnas.0914065107
      [13] Renne, P.R., Black, M.T., Zichao, Z., et al., 1995.Synchrony and Causal Relations between Permian-Triassic Boundary Crises and Siberian Flood Volcanism.Science, 269(5229):1413-1416. https://doi.org/10.1126/science.269.5229.1413
      [14] Riccardi, A., Kump, L.R., Arthur, M.A., et al., 2007.Carbon Isotopic Evidence for Chemocline Upward Excursions during the End-Permian Event.Palaeogeography, Palaeoclimatology, Palaeoecology, 248(1-2):73-81. https://doi.org/10.1016/j.palaeo.2006.11.010
      [15] Shi, G.R., Shen, S.Z., N.W.Archbold, 1999.Gruntea gen.nov., A New Permian Spirigerellid (Brachiopoda) Genus From Selong, Southern Tibet, China.Acta Palaeontologica Sinica, 38(3):346-352 (in Chinese with English abstract).
      [16] Song, H.J., Tong, J.N., Xiong, Y.L., et al., 2012.The Large increase of δ13Ccarb-Depth Gradient and the End-Permian Mass Extinction.Science in China(Series D), 42(8):1182-1191(in Chinese). http://www.cnki.com.cn/Article/CJFDTotal-JDXG201207005.htm
      [17] Song, H.J., Tong, J.N., 2016.Mass Extinction and Survival during the Permina-Triassic Crisis.Earth Science, 41(6):901-918. https://doi.org/10.3799/dqkx.2016.077
      [18] Song, H.J., Tong, J.N., Algeo, T.J., et al., 2013.Large Vertical δ13CDIC Gradients in Early Triassic Seas of the South China Craton:Implications for Oceanographic Changes Related to Siberian Traps Volcanism.Global and Planetary Change, 105:7-20. https://doi.org/10.1016/j.gloplacha.2012.10.023
      [19] Shen, S.Z., Archbold, N.W., Shi, G.R., et al., 2000.Permian Brachiopods from the Selong Xishan Section, Xizang (Tibet), China Part 1:Stratigraphy, Strophomenida, Productida and Rhynchonellida.Geobios, 33(6):725-752. https://doi.org/10.1016/s0016-6995(00)80125-4
      [20] Shen, S.Z., Cao, C.Q., Henderson, C.M., et al., 2006.End-Permian Mass Extinction Pattern in the Northern Peri-Gondwanan Region.Palaeoworld, 15(1):3-30. https://doi.org/10.1016/j.palwor.2006.03.005
      [21] Shen, S.Z., Crowley, J.L., Wang, Y., et al., 2011.Calibrating the End-Permian Mass Extinction.Science, 334(6061):1367-1372. https://doi.org/10.1126/science.1213454
      [22] Shen, S.Z., Jin, Y.G., 1999.Brachiopods from the Permian-Triassic Boundary Beds at the Selong Xishan Section, Xizang (Tibet), China.Journal of Asian Earth Sciences, 17(4):547-559. https://doi.org/10.1016/s1367-9120(99)00004-8
      [23] Tian, L., Tong, J.N., Sun, D.Y., et al., 2014.The Microfacies and Sedimentary Responses to the Mass Extinction during the Permian-Triassic Transition at Yangou Section, Jiangxi Province, South China.Science China Earth Sciences, 57(9):2195-2207. https://doi.org/10.1007/s11430-014-4869-5
      [24] Tong, J.N., Zuo, J.X., Chen, Z.Q, 2007.Early Triassic Carbon Isotope Excursions from South China:Proxies for Devastation and Restoration of Marine Ecosystems Following the End-Permian Mass Extinction.Geological Journal, 42(3-4):371-389. https://doi.org/10.1002/gj.1084
      [25] Wang, L.N., Wignall, P.B., Sun, Y.D., et al., 2017.New Permian-Triassic Conodont Data from Selong (Tibet) and the Youngest Occurrence of Vjalovognathus.Journal of Asian Earth Sciences, 146:152-167. https://doi.org/10.13039/501100001809
      [26] Wang, W., Shen, S.Z., Zhu, Z.L., 1997.Carbon-Isotope Characteristic of the Permian-Triassic Boundary Selong Section, Xizang(Tibet), China and Its Significance.Chinese Science Bulletin, 42(4):406-408 (in Chinese). https://www.researchgate.net/publication/311709269_Carbon-isotope_characteristic_of_the_Permian-Triassic_boundary_Selong_section_Xizang_Tibet_China_and_its_significance
      [27] Wang, Z.H., Wang, Y.G., 1995.Permian-Lower Triassic Conodonts from Selong Xishan of Nyalam, S.Tibet, China.Acta Micropalaeontologica Sinica, 12(4):333-348 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=QK199500519315
      [28] Wignall, P.B., Twitchett, R.J., 1996.Oceanic Anoxia and the End Permian Mass Extinction.Science, 272(5265):1155-1158. https://doi.org/10.1126/science.272.5265.1155
      [29] Xia, F.S., Zhang, B.G., 1992.Age of the Selong Group in Xishan, Selong of Xizang and the Permian-Triassic Boundary.Journal of Stratigraphy, 16(4):256-263 (in Chinese).
      [30] Xu, D.Y., Yan, Z., 1993.Carbon Isotope and Iridium Event Markers near the Permian/Triassic Boundary in the Meishan Section, Zhejiang Province, China.Palaeogeography, Palaeoclimatology, Palaeoecology, 104(1-4):171-176. https://doi.org/10.1016/0031-0182(93)90128-6
      [31] Xie, S.C., Pancost, R.D., Huang, J.H., et al., 2007.Changes in the Global Carbon Cycle Occurred as Two Episodes during the Permian-Triassic Crisis.Geology, 35(12):1083-1086. https://doi.org/10.1130/g24224a.1
      [32] Yao, J.X., Li, Z., 1987.Permian-TriassicConodont Faunas and the Permian-Triassic Boundary at the Selong Section in Nyalam County, Xizang, China.Chinese Science Bulletin, 32(22):1555-1560. http://kns.cnki.net/KCMS/detail/detail.aspx?filename=JXTW198722008&dbname=CJFD&dbcode=CJFQ
      [33] Yin, H.F., Huang, S.J., Zhang, K.X., et al., 1989.VolcanicActivity at the Turn of the Permian-Triassic in South China and Its Impact on Biological Extinction.Journal of Geology, 62(2):169-181 (in Chinese).
      [34] Yin, H.F., Jiang, H.S., Xia, W.C., et al., 2014.The End-Permian Regression in South China andIts Implication on Mass Extinction.Earth-Science Reviews, 137:19-33. https://doi.org/10.1016/j.earscirev.2013.06.003
      [35] Yin, H.F., Xie, S.C., Luo, G.M., et al., 2012.Two Episodes of Environmental Change at the Permian-Triassic Boundary of the GSSP Section Meishan.Earth-Science Reviews, 115(3):163-172. https://doi.org/10.1016/j.earscirev.2012.08.006
      [36] Yuan, D.X., Zhang, Y.C., Shen, S.Z., 2018.Conodont Succession and Reassessment of Major Events around the Permian-Triassic Boundary at the Selong Xishan Section, Southern Tibet, China.Global and Planetary Change, 161:194-210. https://doi.org/10.13039/501100001809
      [37] Zhang, B.G., 1974.The Stratigraphic of the Mount Qomolangma Area-Permian, Scientific Expedition Report in Mount Qomolangma Area (1966-1968).Science Press, Beijing (in Chinese).
      [38] Zhang, S.X., Jin, Y.G., 1976.Upper Palaeozoic Brachiopod Fossils in Mount Qomolangma Area.Science Press, Beijing (in Chinese).
      [39] Zhu, T.X., Zhou, M.K., Feng, X.T., et al., 2005.Phanerozoic Multiple Strata and Basin Evolution on the Northern Slope of Himalaya, Tibet.Geological Publishing House, Beijing (in Chinese).
      [40] Zuo, J.X., Tong, J.N., Qiu, H.O., et al., 2003.Carbon and Oxygen Isotopic Stratigraphic Correlation and Its Paleoenvironment Significance during the Lower Triassic, Chaohu, Anhui Province, China.Geology-Geochemistry, 31(3):26-33 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=dzdqhx200303005
      [41] Zuo, J.X., Tong, J.N., Qiu, H.O., et al., 2004.Carbon and Oxygen Isotope Stratigraphy of the Lower Triassic at Northern Pingdingshan Section of Chaohu, Anhui Province, China.Journal of Stratigraphy, 28(1):35-40, 47 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=dcxzz200401004
      [42] 曹长群, 王伟, 金玉, 2002.浙江煤山二叠-三叠系界线附近碳同位素变化.科学通报, 47(4):302-306. doi: 10.3321/j.issn:0023-074X.2002.04.014
      [43] 崔莹, 刘建波, 江崎洋一, 2009.四川华蓥二叠-三叠系界线剖面稳定碳同位素变化特征及其生物地球化学循环成因.北京大学学报(自然科学版), 45(3):461-471. doi: 10.3321/j.issn:0479-8023.2009.03.015
      [44] 胡修棉, 王成善, 李祥辉, 2001.大洋缺氧事件的碳稳定同位素响应.成都理工学院学报, 28(1):1-6. doi: 10.3969/j.issn.1671-9727.2001.01.001
      [45] 黄可可, 黄思静, 兰叶芳, 等, 2013.早三叠世海相碳酸盐碳同位素研究进展.地球科学进展, 28(3):357-365. http://d.old.wanfangdata.com.cn/Periodical/dqkxjz201303007
      [46] 李玉成, 周忠泽, 2002.华南二叠纪末缺氧海水中的有毒气体与生物集群绝灭.地质地球化学, 30(1):57-63. doi: 10.3969/j.issn.1672-9250.2002.01.010
      [47] 梁汉东, 梁言慈, 2004.中国煤山剖面二叠系/三叠系界线附近白粘土中残余酸的发现与意义.科学技术与工程, 4(1):7-11. doi: 10.3969/j.issn.1671-1815.2004.01.003
      [48] 潘桂棠, 李兴振, 王立全, 等, 2002.青藏高原及邻区大地构造单元初步划分.地质通报, 21(11):701-707. doi: 10.3969/j.issn.1671-2552.2002.11.002
      [49] 石光荣, 沈树忠, N.W.Archbold, 1999.西藏南部色龙二叠纪腕足动物携螺贝类——新属:Gruntea gen.nov..古生物学报, 38(3):346-352. doi: 10.3969/j.issn.0001-6616.1999.03.005
      [50] 宋海军, 童金南, 熊炎林, 等, 2012.δ13Ccarb-深度梯度的剧增与二叠纪末生物大灭绝.中国科学(D辑), 42(8):1182-1191. http://d.old.wanfangdata.com.cn/Conference/7858007
      [51] 宋海军, 童金南, 2016二叠纪-三叠纪之交生物大灭绝与残存.地球科学, 41(6):901-918. https://doi.org/10.3799/dqkx.2016.077
      [52] 王志浩, 王义刚, 1995.中国西藏聂拉木色龙西山二叠系-下三叠统牙形刺.微体古生物学报, 12(4):333-348. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=QK199500519315
      [53] 王伟, 沈树忠, 朱自力, 1997.中国西藏色龙二叠系-三叠系界线剖面的碳同位素特征及其意义.科学通报, 42(4):406-408. doi: 10.3321/j.issn:0023-074X.1997.04.022
      [54] 夏凤生, 章炳高, 1992.西藏色龙西山色龙群的时代及二叠系与三叠系的界线.地层学杂志, 16(4):256-263. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=QK000000162341
      [55] 殷鸿福, 黄思骥, 张克信, 等, 1989.华南二叠-三叠纪之交的火山活动及其对生物灭绝的影响.地质学报, 62(2):169-181. doi: 10.3321/j.issn:0001-5717.1989.02.002
      [56] 章炳高, 1974.珠穆朗玛峰地区的地层——二叠系, 珠穆朗玛峰地区科学考察报告(1966-1968).北京:科学出版社.
      [57] 张守信, 金玉玕, 1976.珠穆朗玛峰地区上古生界腕足动物化石.北京:科学出版社.
      [58] 朱同兴, 周铭魁, 冯心涛, 等, 2005.西藏喜马拉雅北坡显生宙多重地层与盆地演化.北京:地质出版社.
      [59] 左景勋, 童金南, 邱海鸥, 等, 2003.巢湖地区早三叠世碳氧同位素地层对比及其古生态环境意义.地质地球化学, 31(3):26-33. doi: 10.3969/j.issn.1672-9250.2003.03.005
      [60] 左景勋, 童金南, 邱海鸥, 等, 2004.巢湖平顶山北坡剖面早三叠世碳、氧同位素地层学研究.地层学杂志, 28(1):35-40, 47. doi: 10.3969/j.issn.0253-4959.2004.01.004
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