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Associate Professor
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Associate Senior Title
 
 
 
 
 
 
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Details of the Faculty or Staff
Name  
ZHAO Junxing
Title  
  Associate Professor
Highest Education  
  Ph.D.
Subject Categories  
  Geology
Phone  
  010-82998190
Zip Code  
  100029
Fax  
  010-62010846
Email  
  zhaojunxing[a]mail.iggcas.ac.cn
Office  
  No.19 Beitucheng West Road, Chaoyang District, Beijing, 100029, China

Education and Appointments:
  • 2003.9-2007.7 B.S., Geology, Sun Yat-sen University, Guangzhou, China
  • 2007.9-2013.6 Ph.D., Economic Geology, Institute of Geology and Geophysics, Chinese Academy of Sciences, China
  • 2013.6-2017.1 Postdoctoral research, Institute of Geology and Geophysics, Chinese Academy of Sciences, China
  • 2015.4-2016.4 Visiting Scholar (CSC), Economic Geology Research Centre (EGRU), James Cook University, Australia (Host prof. Dr. Zhaoshan Chang)
  • 2017.1-present Associate Professor, Institute of Geology and Geophysics, Chinese Academy of Sciences, China

Research Interests:
  1. Ore-forming process in porphyry-skarn-epithermal system 
  2. Exhumation and preservation in hydrothermal ore deposit
Public Services:

Honors:

Supported Projects:
  1. National Natural Science Foundation of China (41402080) 
  2. Postdoctoral Science Foundation of China (2014M550836)

Selected Publication:

First-author and corresponding-author SCI papers (*)

1.      Shi, R.Z., Zhao, J.X.*, Evans, N.J., Qin, K.Z., Wang, F.Y., Li, Z.Z., Han, R., Li, X.H., 2021. Temporal-spatial variations in Li-Fe mica compositions from the Weilasituo Sn-polymetallic deposit (NE China): Implications for deposit-scale fluid evolution. Ore Geology Reviews, 134. 104132

2.        Zhao, J.X., He, C.T., Qin, K.Z., Shi, R.Z., Liu, X.C., Hu, F.Y., Yu, K.L. and Sun, Z.H., 2021a. Geochronology, source features and the characteristics of fractional crystallization in pegmatite at the Qongjiagang giant pegmatite-type lithium deposit, Himalaya, Tibet. Acta Petrologica Sinica, 37(11): 3325-3347.

3.        Zhao, J.X., Su, B.X., UYSAL, ?., AYDIN, F., Xiao, Y., SEN, C., Hui, K.X. and Qin, K.Z., 2021b. Evolution of magma oxidation states and volatile components in the Cenozoic porphyry ore systems in the western Turkey, Tethyan domain: Constraints from the compositions of zircon and apatite. Acta Petrologica Sinica, 37(8): 2339-2363.

4.        Zhao, J.X., Qin, K.Z., Evans, N.J., Li, G.M., Shi, R.Z., 2020. Volatile components and magma-metal sources at the Sharang porphyry Mo deposit, Tibet. Ore Geology Reviews, 126, 103779.

5.        Zhao, J. X., Qin, K. Z.*, Xiao, B., McInnes, B. A., Li, G. M., Evans, N., Cao, M.J., Li, J. X., 2016. Thermal history of the giant Qulong Cu–Mo deposit, Gangdese metallogenic belt, Tibet: Constraints on magmatic–hydrothermal evolution and exhumation. Gondwana Research, 36: 390-409.

6.      Zhao, J. X., Li, G. M.*, Evans, N. J., Qin, K. Z., Li, J. X., Zhang, X. N., 2016. Petrogenesis of Paleocene-Eocene porphyry deposit-related granitic rocks in the Yaguila-Sharang ore district, central Lhasa terrane, Tibet. Journal of Asian Earth Sciences, 129: 38-53.

7.        Zhao, J.X., Qin, K.Z.*, Li, G.M., Cao, M.J., Evans, N., McInnes, B.A., Li, J.X., Xiao, B., Chen, L., 2015. The exhumation history of collision-related mineralizing systems in Tibet: Insights from thermal studies of the Sharang and Yaguila deposits, central Lhasa. Ore Geology Reviews, 65: 1043-1061.

8.        Zhao, J.X., Qin, K.Z.*, Li, G.M., Li, J.X., Xiao, B., Chen, L., Yang, Y.H., Li, C., Liu, Y.S., 2014. Collision- related genesis for the Sharang porphyry molybdenum deposit, Tibet: Evidence from zircon UPb ages, Re-Os ages and Lu-Hf isotopes. Ore Geology Reviews, 56: 312-326.

9.        Zhao, J.X., Qin, K.Z.*, Li, G.M., Li, J.X., Xiao, B. and Chen, L., 2012. Geochemistry and Petrogenesis of granitoids at Eocene Sharang porphyry Mo deposit in the main-stage of India-Asia continental collision, northern Gangdese, Tibet. Resource Geology, 62(1): 84-98.

Collaborated SCI papers (From re按时间由新到老)

1.        Yu, K.L., Li, G.M., Zhao, J.X., Evans, N.J., Li, J.X., Jiang, G.W., Zou, X.Y., Qin, K. Z. and Guo. H. 2022. Biotite composition as a tracer of fluid evolution and mineralization center: a case study at the Qulong porphyry Cu-Mo deposit, Tibet. Mineralium Deposita, (2022), https://doi.org/10.1007/s00126-021-01085-w.

2.      Cao, M.J., Qin, K.Z., Evans, N.J., Li, G.M., Ling, X.X., McInnes, B.I.A., Zhao, J.X., 2021. Titanite in situ SIMS U–Pb geochronology, elemental and Nd isotopic signatures record mineralization and fluid characteristics at the Pusangguo skarn deposit, Tibet. Mineralium Deposita, 56, 907-916.

3.        Hui, K.X., Qin, K.Z., Li, Z.Z., Wang, F.Y., Gao, S., Han, R., Kan, J., Zhao, J.X., Li, G.M., 2021. The linkage between the Jiawula-Chaganbulagen Ag-Pb-Zn and adjacent porphyry Mo-Cu mineralization, Inner Mongolia, northeast China. Ore Geology Reviews, 134, 104153.

4.      Chen, L., Qin, K.Z., Li, G.M., Li, J.X., Xiao, B., Zhao, J.X., 2020. In situ major and trace elements of garnet and scheelite in the Nuri Cu–W–Mo deposit, South Gangdese, Tibet: Implications for mineral genesis and ore-forming fluid records. Ore Geology Reviews, 122, 103549.

5.        Zhang, X.-N., Li, G.-M., Qin, K.-Z., Lehmann, B., Li, J.-X., Zhao, J.-X., 2020. Porphyry to epithermal transition at the Rongna Cu-(Au) deposit, Tibet: Insights from H-O isotopes and fluid inclusion analysis. Ore Geology Reviews, 123, 103585.

6.        Kouhestani, H., Mokhtari, M.A.A., Qin, K.Z., Zhao, J.X., 2019a. Origin and evolution of hydrothermal fluids in the Marshoun epithermal Pb–Zn–Cu (Ag) deposit, Tarom-Hashtjin metallogenic belt, NW Iran. Ore Geology Reviews, 113, 103087.

7.        Kouhestani, H., Mokhtari, M.A.A., Qin, K.Z., Zhao, J.X., 2019b. Fluid inclusion and stable isotope constraints on ore genesis of the Zajkan epithermal base metal deposit, Tarom–Hashtjin metallogenic belt, NW Iran. Ore Geology Reviews,109:564-584.

8.      Cao, M.J., Qin, K.Z., Li, G. M., Evans, N.J., McInnes, B., Li, J.X., Zhao, J.X.. 2018. Oxidation state inherited from the magma source and implications for mineralization: Late Jurassic to Early Cretaceous granitoids, Central Lhasa subterrane, Tibet. Mineralium Deposita, 53(3):299-309.

9.        Li, J.X., Qin, K.Z., Li, G.M., Evans, N.J., Huang, F., Zhao JX. 2018a. Iron isotope fractionation during magmatic-hydrothermal evolution: A case study from the Duolong porphyry Cu-Au deposit, Tibet. Geochimica et Cosmochimica Acta, 238: 1-15.

10.    Li, J.X., Qin, K.Z., Li, G.M., Evans, N.J., Zhao, J.X., Yue, Y.H., Xi, J. 2018b. Volatile variations in magmas related to porphyry Cu-Au deposits: Insights from amphibole geochemistry, Duolong district, central Tibet. Ore Geology Reviews, 95: 649 – 662.

11.   Zhang, X.N., Li, G.M., Qin, K.Z., Lehmann, B., Li, J.X., Zhao, J.X., Cao, M.J., Zou, X.Y.. 2018. Petrogenesis and tectonic setting of Early Cretaceous granodioritic porphyry from the giant Rongna porphyry Cu deposit, central Tibet. Journal of Asian Earth Sciences, 161: 74-92.

12.    Li, G.-M., Qin, K.-Z., Li, J.-X., Evans, N.J., Zhao, J.-X., Cao, M.-J., Zhang, X.-N., 2017. Cretaceous magmatism and metallogeny in the Bangong–Nujiang metallogenic belt, central Tibet: Evidence from petrogeochemistry, zircon U–Pb ages, and Hf–O isotopic compositions. Gondwana Research 41, 110-127.

13.    Li, J.-X., Qin, K.-Z., Li, G.-M., Evans, N.J., Zhao, J.-X., Cao, M.-J., Huang, F., 2016a. The Nadun Cu–Au mineralization, central Tibet: Root of a high sulfidation epithermal deposit. Ore Geology Reviews, 78, 371-387.

14.    Li, J.X., Qin, K.Z., Li, G.M., Xiao, B., Zhao, J.X., Chen, L., 2016b. Petrogenesis of Cretaceous igneous rocks from the Duolong porphyry Cu–Au deposit, central Tibet: evidence from zircon U–Pb geochronology, petrochemistry and Sr–Nd–Pb–Hf isotope characteristics. Geological Journal, 51, 285-307.

15.    Li, J.-X., Qin, K.-Z., Li, G.-M., Zhao, J.-X., Cao, M.-J., 2015. Petrogenesis of diabase from accretionary prism in the southern Qiangtang terrane, central Tibet: Evidence from U–Pb geochronology, petrochemistry and Sr–Nd–Hf–O isotope characteristics. Island Arc, 24, 232-244.

16.    Chen, L. Qin, K.Z., Li, G.M., Li, J.X., Xiao, B., Zhao, J.X. and Fan, X. 2015. Zircon U–Pb ages, geochemistry, and Sr–Nd–Pb–Hf isotopes of the Nuri intrusive rocks in the Gangdese area, southern Tibet: Constraints on timing, petrogenesis, and tectonic transformation. Lithos, 212-215: 379-396.

17.    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.

18.    Chen, L., Qin, K.Z., Li, J.X., Xiao, B., Li, G.M., Zhao, J.X. and Fan, X., 2012. Fluid inclusions and hydrogen, oxygen, sulfur isotopes of Nuri Cu-W-Mo deposit in the southern Gangdese, Tibet. Resource Geology, 62(1): 42-62.

19.    Li, J.X., Qin, K.Z., Li, G.M., Cao, M.J., Xiao, B., Chen, L., Zhao, J.X., Evans, N., McInnes, B.A., 2012a. 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, 201-221.

20.    Li, J.X., Li, G.M., Qin, K.Z., Xiao, B., Chen, L. and Zhao, J.X., 2012b. 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.

21.    Xiao, B., Qin, K.Z., Li, G.M., Li, J.X., Xia, D.X., Chen, L. and Zhao, J.X., 2012. Highly oxidized magma and fluid evolution of Miocene Qulong giant porphyry Cu- Mo deposit, southern Tibet, China. Resource Geology, 62 (1): 4-18.

22.    Li, G.M., Li, J.X., Qin, K.Z., Duo, J., Zhang, T.P., Xiao, B. and Zhao, J.X., 2012. Geology and hydrothermal alteration of the Duobuza gold-rich porphyry copper district in the Bangongco metallogenetic belt, northwestern Tibet. Resource Geology, 62(1): 99-118.

23.    Li, J.X., Qin, K.Z., Li, G.M., Xiao, B., Zhao, J.X., Chen, L., 2011a. 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, 525-536.

24.  Li, J.X., Qin, K.Z., Li, G.M., Xiao, B., Chen, L., Zhao, J.X., 2011b. Post-collisional ore-bearing adakitic porphyries from Gangdese porphyry copper belt, southern Tibet: Melting of thickened juvenile arc lower crust. Lithos, 126, 265-277.

 
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