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Details of the Faculty or Staff
Name   Li, Jinxiang Home Page     
Highest Education      Ph.D Office      Building 3,Courtyard 16, Lin Cui Road, Chaoyang District, Beijing P.R. China
Phone      010-8409 7034 Zip Code      100101
Fax      010-8409 7079 Email      ljx@itpcas.ac.cn

Education and Appointments:

  1999/09-2003/07: Bachelor, Geochemistry, Northwestern University, Xi’an, China

  2003/09-2008/07: Ph.D, Mineralogy, Petrology, Economic Geology, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing, China

  2008/07-2011/12: Post-doctoral, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing, China

  2012/01-2013/04: Assistant professor, Institute of Tibetan Plateau Research, Chinese Academy of Sciences

  2013/01-2013/12: Post-doctoral fellow, Department of Earth & Atmospheric Sciences, University of Alberta,Canada

  2013/05-now: Associate t professor, Institute of Tibetan Plateau Research, Chinese Academy of Sciences


Research Interest:
Economic geology, mineralogy, petrology and geochemistry Porphyry Cu-Mo-Au deposits, Porphyry-HS epithermal system, Porphyry-Skarn Cu-Fe-Pb-Zn deposits
Public Services:

Honors:
Selected Publications:
  1. Li, J.X., Qin, K.Z., Li, G.M., Richards, J.P., Zhao, J.X., Cao, M.J., 2014. Geochronology, geochemistry, and zircon Hf isotopic compositions of Mesozoic intermediate-felsic intrusions in central Tibet: Petrogenetic and tectonic implications. Lithos 198, 77-91.
  2. Li, J.X., Li, G.M., Qin, K.Z., Xiao, B., 2011. High-temperature magmatic fluid exsolved from magma at the Duobuza porphyry copper-gold deposit, Northern Tibet. Geofluids, 11(2): 134-143.
  3. Li, J.X., Li, G.M., Qin, K.Z., Xiao, B., Chen, L., Zhao, J.X., 2012. Mineralogy and Mineral Chemistry of the Cretaceous Duolong Gold-Rich Porphyry Copper Deposit in the Bangongco Arc, Northern Tibet. Resource Geology, 62(1): 19-41.
  4. Li, J.X., Qin, K.Z., Li, G.M., Cao, M.J., Xiao, B., Chen, L., Zhao, J.X., Evans, N.J., McInnes, B.I.A., 2012. Petrogenesis and thermal history of the Yulong porphyry copper deposit, Eastern Tibet: insights from U-Pb and U-Th/He dating, and zircon Hf isotope and trace element analysis. Mineralogy and Petrology, 105(3-4): 201-221.
  5. Li, J.X., Qin, K.Z., Li, G.M., Xiao, B., Chen, L., Zhao, J.X., 2011. Post-collisional ore-bearing adakitic porphyries from Gangdese porphyry copper belt, southern Tibet: Melting of thickened juvenile arc lower crust. Lithos, 126(3-4): 265-277.
  6. Li, J.X., Qin, K.Z., Li, G.M., Xiao, B., Zhao, J.X., Cao, M.J., Chen, L., 2013. Petrogenesis of ore-bearing porphyries from the Duolong porphyry Cu–Au deposit, central Tibet: Evidence from U–Pb geochronology, petrochemistry and Sr-Nd-Hf-O isotope characteristics. Lithos, 160–161: 216-227.
  7. Li, J.X., Qin, K.Z., Li, G.M., Xiao, B., Zhao, J.X., Chen, L., 2011. Magmatic-hydrothermal evolution of the Cretaceous Duolong gold-rich porphyry copper deposit in the Bangongco metallogenic belt, Tibet: Evidence from U-Pb and 40Ar/39Ar geochronology. Journal of Asian Earth Sciences, 41(6): 525-536.

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