• 中国出版政府奖提名奖

    中国百强科技报刊

    湖北出版政府奖

    中国高校百佳科技期刊

    中国最美期刊

    Volume 44 Issue 5
    May  2019
    Turn off MathJax
    Article Contents
    Liu Demin, Guo Hongjie, Zhang Genyuan, Kong Linghao, Shao Junqi, Zhang Jinqi, 2019. Petrogenesis and Tectonic Setting of High-Mg Volcanic Rock Xenoliths in Jianshui Area, Southeast Yunnan, China. Earth Science, 44(5): 1749-1760. doi: 10.3799/dqkx.2019.078
    Citation: Liu Demin, Guo Hongjie, Zhang Genyuan, Kong Linghao, Shao Junqi, Zhang Jinqi, 2019. Petrogenesis and Tectonic Setting of High-Mg Volcanic Rock Xenoliths in Jianshui Area, Southeast Yunnan, China. Earth Science, 44(5): 1749-1760. doi: 10.3799/dqkx.2019.078

    Petrogenesis and Tectonic Setting of High-Mg Volcanic Rock Xenoliths in Jianshui Area, Southeast Yunnan, China

    doi: 10.3799/dqkx.2019.078
    • Received Date: 2019-04-11
    • Publish Date: 2019-05-15
    • It reports for the first time the presence of a suite of high-Mg volcanic xenoliths in Jianshui area of Southeast Yunnan, western Yangtze platform, China, which provides new insights into mantle plume activity in the platform during the Permian. Zircon U-Pb dating, geochemistry and petrology of the xenoliths were studied to assess the petrogenetic origin and geodynamic setting of these high-Mg volcanic rocks in this paper. The high-Mg volcanic xenoliths are porphyritic texture and contain only large phenocrysts of olivine, which show as dense mass, develop as lenticulars in the Permian Emeishan basalts in Jianshui area, Southeast Yunnan. The igneous zircons from the volcanic xenoliths yield a weighted age of ca. 259±2 Ma that is interpreted to be the formation age of the magmatic protolith, which is the same as the host rocks of the Emeishan basalts. The volcanic xenoliths are characterized by low SiO2, moderate TiO2 and high Mg#. All the volcanic xenoliths are enriched in LREE but depleted in HREE. The geochemical characteristics of the xenoliths show that they belong to sub-alkali basalts and intra-plate tholeiitic basalts, suggesting that the primary magma of the high-Mg volcanic rock is likely produced by low partial melting of garnet lherzolite. The original magma may have undergone the process of fractional crystallization of olivines and clinopyroxenes. The original magma has not been affected obviously by crustal material contamination in the emplacement and uplifting. The high-Mg volcanic xenoliths may origin from riched-mantle and may be the product of the main stage of the mantle plume activity. All above indicates that there was a mantle branch developed in the study area in Late Permian. It is proposed that several mantle branches have not only ascending motion but also lateral movement while the thermal melting mantle plume arrives at the boundary of mantle and crust.

       

    • loading
    • Campbell, I.H., Daviese, G.F., 2006.Do Mantle Plumes Exist?.Episodes, 29(3):162-168. http://d.old.wanfangdata.com.cn/NSTLQK/NSTL_QKJJ025023479/
      Chen, Z.L., Chen, S.Y., 1987.Tectonic Evolution of Western Yangtze Block.Chongqing Publishing House, Chongqing, 104-120 (in Chinese).
      Chung, S.L., Jahn, B.M., 1995.Plume-Lithosphere Interaction in Generation of the Emeishan Flood Basalts at the Permian-Triassic Boundary.Geology, 23(10):889-892.https://doi.org/10.1130/0091-7613(1995)023 < 0889:pliigo > 2.3.co; 2 doi: 10.1130/0091-7613(1995)023<0889:pliigo>2.3.co;2
      Condie, K.C., 2003.Incompatible Element Ratios in Oceanic Basalts and Komatiites:Tracking Deep Mantle Sources and Continental Growth Rates with Time.Geochemistry, Geophysics, Geosystems, 4(1):1-28. https://doi.org/10.1029/2002gc000333
      Dmitriev, Y.I., Bogatikov, O.A., 1996.Emeishan Flood Basalts, Yangtze Platform:Indications of an Aborted Oceanic Environment.Petrology, 4:407-418.
      Frey, F.A., Green, D.H., Roy, S.D., 1978.Integrated Models of Basalt Petrogenesis:A Study of Quartz Tholeiites to Olivine Melilitites from South Eastern Australia Utilizing Geochemical and Experimental Petrological Data.Journal of Petrology, 19(3):463-513. https://doi.org/10.1093/petrology/19.3.463
      Gan, X.C., Zhao, F.Q., Jin, W.S., et al., 1996.The U-Pb Ages of Early Proterozoic-Archean Zircons Captured by Igneous Rocks in Southern China.Geochimica, 25(2):112-120 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=QK199600048548
      Geoffrey, F.D., 2005.Grounds for the Mantle Existing.Chinese Science Bulletin, 50(17):1801-1813.
      He, Q., Xiao, L., Balta, B., et al., 2010.Variety and Complexity of the Late-Permian Emeishan Basalts:Reappraisal of Plume-lithosphere Interaction Processes.Lithos, 119(1-2):91-107. https://doi.org/10.1016/j.lithos.2010.07.020
      He, B., Xu, Y.G., Xiao, L., et al., 2006.Sedimentary Responses to Uplift of Emeishan Mantle Plume and Its Implications.Geological Review, 52(1):30-37 (in Chinese with English abstract). http://d.old.wanfangdata.com.cn/Periodical/OA000004910
      Hofmann, A.W., 1988.Chemical Differentiation of the Earth:The Relationship between Mantle, Continental Crust, and Oceanic Crust.Earth and Planetary Science Letters, 90(3):297-314. https://doi.org/10.1016/0012-821x(88)90132-x
      Hou, Z.Q., Lu, J.R., Lin, S.Z., 2005.The Axial Zone Consisting of Pyrolite and Eclogite in the Emei Mantle Plume Major, Trace Element and Sr-Nd-Pb Isotope Evidence.Acta Geologica Sinica, 79(2):200-219 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=dizhixb200502007
      Hou, Z.Q., Wang, Y.L., Zhang, C.J., et al., 1999.Chemical Characteristic of Major Elements, Cr and Ni of Mantle Plume in Emei Igneous Province.Geological Review, 45(Suppl.):880-884 (in Chinese with English abstract). http://d.old.wanfangdata.com.cn/Periodical/OA000002294
      Irvine, T.N., Baragar, W.R.A., 1971.A Guide to the Chemical Classification of the Common Volcanic Rocks.Canadian Journal of Earth Sciences, 8(5):523-548. https://doi.org/10.1139/e71-055
      Lassiter, J.C., Depaolo, D.J., 1997.Plume/Lithosphere Interaction in the Generation of Continental and Oceanic Flood Basalts:Chemical and Isotope Constraints.Geophysical Monography 100, American Geophysical Union, 100:335-355.
      Le, M.J., Le, R.W., Streckeisen, A., 1986.A Chemical Classification of Volcanic Rocks Based on the Total Alkalisilica Diagram.Journal of Petrology, 27:745-750. doi: 10.1093/petrology/27.3.745
      Li, H.B., Zhang, Z.C., Lü, L.S., 2010.Geometry of the Mafic Dyke Swarms in Emeishan Large Igneous Province:Implications for Mantle Plume.Acta Petrologica Sinica, 26(10):3143-3152 (in Chinese with English abstract).
      Li, X.R., Wang, J., Wan, Y.L., et al., 2018.Geochemical Characteristics and Tetonic Implications of Nayixiong Formation Basalts in Eastern Qiangtang Basin, Tibet.Earth Science, 43(2):401-416 (in Chinese with English abstract).
      Liu, Y.P., Ye, L., Li, C.Y., et al., 2006.Discovery of the Neoproterozoic Magmatics in Southeastern Yunnan:Evidence from SHRIMP Zircon U-Pb Dating and Lithogeochemistry.Acta Petrologica Sinica, 22(4):916-926 (in Chinese with English abstract).
      Luo, Z.L., Jin, Y.Z., Zhao, X.K., 1990.The Emei Taphrogenesis of the Upper Yangtze Platform in South China.Geological Magazine, 127(5):393-405. https://doi.org/10.1017/s0016756800015156
      Neal, C.R., 2002.Mantle Sources and the Highly Variable Role of Continental Lithosphere in Basalt Petrogenesis of the Kerguelen Plateau and Broken Ridge LIP:Results from ODP Leg 183.Journal of Petrology, 43(7):1177-1205. https://doi.org/10.1093/petrology/43.7.1177
      Nickel, K.G., 1986.Phase Equilibria in the System SiO2-MgO-Al2O3-CaO-Cr2O3(SMACCR) and Their Bearing on Spinel/Garnet Iherzolite Relationships.Neues Jahrbuch Fur Mineralogie-Abhandlungen, 155(3):259-287.
      Pan, X.N., Zhao, J.T., Zhang, X.Y., et al., 1987.Tectonics and Rifting in Kangdian Region.Chongqing Publishing House, Chongqing, 214-224 (in Chinese).
      Pearce, J.A., Cann, J.R., 1973.Tectonic Setting of Basic Volcanic Rocks Determined Using Trace Element Analyses.Earth and Planetary Science Letters, 19(2):290-300. https://doi.org/10.1016/0012-821x(73)90129-5
      Song, X.Y., Hou, Z.Q., Cao, Z.M., et al., 2001.Geochemical Characteristics and Period of the Emei Igneous Province.Acta Geologica Sinica, 75(4):498-506 (in Chinese with English abstract).
      Song, X.Y., Zhou, M.F., Cao, Z.M., et al., 2004.Late Permian Rifting of the South China Craton Caused by the Emeishan Mantle Plume?.Journal of the Geological Society, 161(5):773-781. https://doi.org/10.1144/0016-764903-135
      Wang, L.X., Ma, C.Q., Lai, Z.X., et al., 2015.Early Jurassic Mafic Dykes from the Xiazhuang Ore District (South China):Implications for Tectonic Evolution and Uranium Metallogenesis.Lithos, 239:71-85. https://doi.org/10.1016/j.lithos.2015.10.008
      Wang, Y., Ma, C.Q., Wang, L.X., et al., 2018.Zircon U-Pb Geochronoloty, Geochemistry and Sr-Nd-Hf Isotopes of the Neoproterozoic Granites on the Southeastern Margin of the Yangtze Block:Constraint on Crustal Growth.Earth Science, 43(3):635-654 (in Chinese with English abstract).
      Wang, Y.L., Zhang, C.J., Xiu, S.Z., 2001.Th/Hf-Ta/Hf Identification of Tectonic Setting of Basalts.Acta Petrologica Sinica, 17(3):413-421 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=ysxb98200103009
      Winchester, J.A., Floyd, P.A., 1977.Geochemical Discrimination of Different Magma Series and Their Differentiation Products Using Immobile Elements.Chemical Geology, 20:325-343. https://doi.org/10.1016/0009-2541(77)90057-2
      Wood, D.A., 1980.The Application of a ThHfTa Diagram to Problems of Tectonomagmatic Classification and to Establishing the Nature of Crustal Contamination of Basaltic Lavas of the British Tertiary Volcanic Province.Earth and Planetary Science Letters, 50(1):11-30. https://doi.org/10.1016/0012-821x(80)90116-8
      Wu, Y.B., Zheng, Y.F., 2004.Study on the Mineralogy of Zircon and Its Constraints on the Interpretation of U-Pb Age.Chinese Science Bulletin, 49(16):1589-1604 (in Chinese).
      Xiao, L., Xu, Y.G., Mei, H.J., et al., 2003.Geochemistry of Emeishan Flood Basalts at Binchuan Area, SW China:Rock Types and Temporal Evolution.Chinese Journal of Geology, 38(4):478-494 (in Chinese with English abstract).
      Xiong, S.H., Li, J.L., 1984.The Characteristics of the Late Permian Basalts in the Margin of Continental Rift in Emeishan Area.Journal of Chengdu College of Geology, 11(3):43-59 (in Chinese with English abstract). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=89c0a2363521ff34b3b7a2a8378b168a
      Xu, Y.G., Chung, S.L., 2001.The Emeishan Large Igneous Province:Evidence for Mantle Plume Activity and Melting Conditions.Geochimica, 30(1):1-9 (in Chinese with English abstract).
      Xu, Y.G., Chung, S.L., Jahn, B.M., et al., 2001.Petrologic and Geochemical Constraints on the Petrogenesis of Permian-Triassic Emeishan Flood Basalts in Southwestern China.Lithos, 58(3-4):145-168. https://doi.org/10.1016/s0024-4937(01)00055-x
      Xu, Y.G., He, B., Chung, S.L., et al., 2004.Geologic, Geochemical, and Geophysical Consequences of Plume Involvement in the Emeishan Flood-Basalt Province.Geology, 32(10):917-920. https://doi.org/10.1130/g20602.1
      Zhang, Z.C., Wang, F.S., Hao, Y.L., 2005.Picrites from the Emeishan Large Igneous Province:Evidence for the Mantle Plume Activity.Bulletin of Mineralogy, Petrology and Geochemistry, 24(1):17-22 (in Chinese with English abstract).
      陈智梁, 陈世瑜, 1987.扬子地块西缘地质构造演化.重庆:重庆出版社, 104-120.
      甘晓春, 赵风清, 金文山, 等, 1996.华南火成岩中捕获锆石的早元古代-太古宙U-Pb年龄信息.地球化学, 25(2): 112-120. doi: 10.3321/j.issn:0379-1726.1996.02.002
      何斌, 徐义刚, 肖龙, 等, 2006.峨眉山地幔柱上升的沉积响应及其地质意义.地质论评, 52(1): 30-37. doi: 10.3321/j.issn:0371-5736.2006.01.005
      侯增谦, 卢记仁, 林盛中, 2005.峨眉地幔柱轴部的榴辉岩-地幔岩源区:主元素、痕量元素及Sr、Nd、Pb同位素证据.地质学报, 79(2): 200-219. http://d.old.wanfangdata.com.cn/Periodical/dizhixb200502007
      侯增谦, 汪云亮, 张成江, 等, 1999.峨眉火成岩省地幔热柱的主要元素及Cr, Ni地球化学特征.地质论评, 45(增刊): 880-884. http://d.old.wanfangdata.com.cn/Periodical/OA000002294
      李宏博, 张招崇, 吕林素, 2010.峨眉山大火成岩省基性墙群几何学研究及对地幔柱中心的指示意义.岩石学报, 26(10): 3143-3152. http://d.old.wanfangdata.com.cn/Periodical/ysxb98201010025
      李学仁, 王剑, 万友利, 等, 2018.羌塘盆地东部那益雄组玄武岩地球化学特征及构造意义.地球科学, 43(2): 401-416. http://www.earth-science.net/WebPage/Article.aspx?id=3749
      刘玉平, 叶霖, 李朝阳, 等, 2006.滇东南发现新元古代岩浆岩:SHRIMP锆石U-Pb年代学和岩石地球化学证据.岩石学报, 22(4): 916-926. http://d.old.wanfangdata.com.cn/Periodical/ysxb98200604015
      潘杏南, 赵济汀, 张选阳, 等, 1987.康滇构造与裂谷作用.重庆:重庆出版社, 214-224.
      宋谢炎, 侯增谦, 曹志敏, 等, 2001.峨眉大火成岩省的岩石地球化学特征及时限.地质学报, 75(4): 498-506. doi: 10.3321/j.issn:0001-5717.2001.04.009
      王艳, 马昌前, 王连训, 等, 2018.扬子东南缘新元古代花岗岩的锆石U-Pb年代学、地球化学和Sr-Nd-Hf同位素:对地壳生长的约束.地球科学, 43(3): 635-654. http://www.earth-science.net/WebPage/Article.aspx?id=3772
      汪云亮, 张成江, 修淑芝, 2001.玄武岩类形成的大地构造环境的Th/Hf-Ta/Hf图解判别.岩石学报, 17(3): 413-421. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=ysxb98200103009
      吴元保, 郑永飞, 2004.锆石成因矿物学研究及其对U-Pb年龄解释的制约.科学通报, 49(16): 1589-1604. doi: 10.3321/j.issn:0023-074X.2004.16.002
      肖龙, 徐义刚, 梅厚钧, 等, 2003.云南宾川地区峨眉山玄武岩地球化学特征岩石类型及随时间演化规律.地质科学, 38(4): 478-494. doi: 10.3321/j.issn:0563-5020.2003.04.007
      熊舜华, 李建林, 1984.峨眉山区晚二叠世大陆裂谷边缘玄武岩系的特征.成都地质学院学报, 11(3): 43-59.
      徐义刚, 钟孙霖, 2001.峨眉山大火成岩省:地幔柱活动的证据及其熔融条件.地球化学, 30(1): 1-9. http://d.old.wanfangdata.com.cn/Periodical/cckjdxxb201602010
      张招崇, 王福生, 郝艳丽, 2005.峨眉山大火成岩省中的苦橄岩:地幔柱活动证据.矿物岩石地球化学通报, 24(1): 17-22. doi: 10.3969/j.issn.1007-2802.2005.01.003
    • 加载中

    Catalog

      通讯作者: 陈斌, bchen63@163.com
      • 1. 

        沈阳化工大学材料科学与工程学院 沈阳 110142

      1. 本站搜索
      2. 百度学术搜索
      3. 万方数据库搜索
      4. CNKI搜索

      Figures(11)  / Tables(3)

      Article views (5076) PDF downloads(88) Cited by()
      Proportional views

      /

      DownLoad:  Full-Size Img  PowerPoint
      Return
      Return