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    Volume 43 Issue 8
    Aug.  2018
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    He Juan, Wang Qiyu, Yan Guochuan, 2018. Genesis and Geodynamic Settings of the Eocene Lamprophyres from Jinshajiang-Red River Tectonic Belt, Ludian, Western Yunnan Province. Earth Science, 43(8): 2586-2599. doi: 10.3799/dqkx.2018.105
    Citation: He Juan, Wang Qiyu, Yan Guochuan, 2018. Genesis and Geodynamic Settings of the Eocene Lamprophyres from Jinshajiang-Red River Tectonic Belt, Ludian, Western Yunnan Province. Earth Science, 43(8): 2586-2599. doi: 10.3799/dqkx.2018.105

    Genesis and Geodynamic Settings of the Eocene Lamprophyres from Jinshajiang-Red River Tectonic Belt, Ludian, Western Yunnan Province

    doi: 10.3799/dqkx.2018.105
    • Received Date: 2018-05-30
    • Publish Date: 2018-08-15
    • Researches on the lamprophyres from the Jinshajiang-Red River tectonic belt are mainly concentrated in the southern Ailaoshan area.The zircon U-Pb geochronology and the whole rock geochemistry of the newly discovered Ludian lamprophyres located in the middle segment of the belt are applied in this paper.Zircon U-Pb dating proves Eocene emplacement age of Ludian lamprophyres, which is consistent with the peak age of the Cenozoic magmatism in the Jingshajiang-Red River alkali-rich intrusion belt.Geochemical data indicate that Ludian lamprophyres have the characteristics of high K2O, high (K2O + Na2O) and Mg#, low TiO2, being enriched in LILE and LREE, depleted in HFSE (especially Ta-Nb-Ti).The source of the Ludian lamprophyres should be the lithosphere mantle which had been enriched by subduction-related fluids and melts, and the source should be phlogopite bearing spinel harzburgite.Combined with the study of coeval mafic lava and felsic intrusion, we put forward that the mantle in western Yunnan might have been enriched by the Protozoic subduction related to the assembly of the Rodinia supercontinent.In the Eocene, following the collision between Indian and Asia, the continental lithosphere in the Jingshajiang-Red River tectonic belt underwent convective thinning or delamination, which induced rising of the asthenosphere, and then partial melting of the enriched lithosphere mantle which generated the lamprophyre melt.

       

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