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李欢

领域:新材料产业 学校:中南大学职称:

结合国际前沿热点,广泛开展国际合作,在构造与成矿领域开展了深入研究。1)提出了脉状矿床“双脉构造”成矿模型,指出热液矿床系统中同时形成的硅化脉与含矿脉均具有重要勘查找矿意义,该模型已用于华南诸多W-Sn矿床及Li-Be-Nb-Ta等稀有金属矿床的勘查中,取得不错经济效益。2)提出了海底喷流矿床“沉积扇”新构造成因模式。该模式系统总结了不同构造环境中的海底喷流矿床的特征及控制机理,确定了海底喷流矿床最终定位及矿床特征空间变异的构造控制机制,指出中继斜坡构造控制了成矿流体迁移、定位及矿体的空间分布。该构造模式被成功运用到锡铁山、赵卡隆、虎头崖等矿床深部矿体的预测中。3)发现了不同构造-岩浆环境下热液矿物形成机理的差异,厘定了构造驱动热液流体的性质及其源区特征。总结了湘南多金属矿集区不同成矿构造中热液矿物的产出形式,揭示了湘南多期次成矿流体构造-岩浆属性。4)建立了华南南岭侏罗纪大地构造-岩浆-成矿的多阶段复杂过程模型,探索性地进行了华南侏罗纪岩石圈伸展演化规律的总结,阐述了岩石圈不同的伸展速率对成矿岩体的上升及冷却速率的控制,指出不同大地构造形式控制了岩体的上升及冷却速率,进而对多金属矿化过程起到至关重要作用。5)基于华北北缘新发现的W-Mo-Pb-Zn多金属矿床进行了大地构造的成因模式研究,建立了三叠世-侏罗世矿床演化序列及与对应大地构造背景的关联,认为在古亚洲洋的俯冲背景下,大地构造的演化控制了高-中-低温矿床组合。基于矿床大地构造的成因模式,圈定了找矿靶区,取得了较好的经济效益。6)探索了成矿后构造过程对矿床的影响,运用低温热年代学对胶东相关金矿进行了隆升剥露差异的构造改造对比研究,指出焦家式金矿成矿后剥露程度应强于玲珑式金矿,玲珑式金矿下部有存在焦家式金矿的可能。
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1. Li, H., Sun, H.S.*, Evans, N.J., Li, J.W., Wu, J.H., Jiang, W.C., Halassane, N., 2019g. Geochemistry and geochronology of zircons from granite-hosted gold mineralization in the Jiaodong Peninsula, North China: implications for ore genesis. Ore Geology Reviews 115, https://doi.org/10.1016/j.oregeorev.2019.103188.

2. Li, H., Kong, H.*, Zhou, Z.K., Tindell, T., Tang, Y.Q., Wu, Q.H., Xi, X.S., 2019f. Genesis of the Banxi Sb deposit, South China: Constraints from wall-rock geochemistry, fluid inclusion microthermometry, Rb–Sr geochronology, and H–O–S isotopes. Ore Geology Reviews 115, https://doi.org/10.1016/j.oregeorev.2019.103162.

3. Li, H.*, Zhou, Z.K., Evans, N.J., Kong, H., Wu, Q.H., Xi, X.S., 2019e. Fluid–zircon interaction during low-temperature hydrothermal processes: Implications for the genesis of the Banxi antimony deposit, South China. Ore Geology Reviews, https://doi.org/10.1016/j.oregeorev.2019.103137 (SCI).

4. Li, H., Cao, J.*, Algeo, T.J., Jiang, W., Liu, B., Wu, Q., 2019d. Zircons reveal multi-stage genesis of the Xiangdong (Dengfuxian) tungsten deposit, South China. Ore Geology Reviews, https://doi.org/10.1016/j.oregeorev.2019.102979 (SCI).

5. Li, H.*, Zhou, Z.K., Algeo, T.J., Wu J.H., Jiang, W.C., 2019c. Geochronology and geochemistry of tuffaceous rocks from the Banxi Group: Implications for Neoproterozoic tectonic evolution of the southeastern Yangtze Block, South China. Journal of Asian Earth Sciences 177, 152-176 (SCI).

6. Li, H.*, Palinka?, L.A., Evans, N.J., Watanabe, K., 2019b. Genesis of the Huangshaping W–Mo–Cu–Pb–Zn deposit, South China: Role of magmatic water, metasomatized fluids, and basinal brines during intra-continental extension. Geological Journal, DOI: 10.1002/gj.3505 (SCI).

7. Li, H., Kong, H.*, Zhou, Z.K., Wu, Q.H., Xi, X.S., Gabo-Ratio, J.A.S., 2019a. Ore-forming material sources of the Jurassic Cu–Pb–Zn mineralization in the Qin–Hang ore belt, South China: Constraints from S–Pb isotopes. Chemie der Erde - Geochemistry 79, 280–306. (SCI).

8.Wang, T.G., Li, H.*, Liu, J.S., Evans, N.J., Wang, Y.C., Zha, D., 2019. Whole-rock and zircon geochemistry of the Xiaoliugou granites, North Qilian Orogen (NW China): Implications for tectonic setting, magma evolution and W–Mo mineralization. Ore Geology Reviews 115, https://doi.org/10.1016/j.oregeorev.2019.103166.

9. Jiang, W.C., Li, H.*, Mathur, R., Wu, J.H., 2019a. Genesis of the giant Shizhuyuan W–Sn–Mo–Bi–Pb–Zn polymetallic deposit, South China: Constraints from zircon geochronology and geochemistry in skarns. Ore Geology Reviews 111, https://doi.org/10.1016/j.oregeorev. 2019.102980.

10. Jiang, W.C., Li, H.*, Evans, N.J., Wu, J.H., 2019b. Zircon records multiple magmatic-hydrothermal processes at the giant Shizhuyuan W–Sn–Mo–Bi polymetallic deposit, South China. Ore Geology Reviews 115, https://doi.org/10.1016/j.oregeorev. 2019.103160.

11. Girei, M.B., Li, H.*, Algeo, T.J., Bonin, B., Ogunleye, P.O., Bute, S.I., Ahmed, H.A., 2019. Petrogenesis of A-type granites associated with Sn–Nb–Zn mineralization in Ririwai complex, north-Central Nigeria: Constraints from whole-rock Sm–Nd and zircon Lu–Hf isotope systematics. Lithos 340–341, 49–70 (SCI).

12. Liu, B., Li, H.*, Wu, Q.H.*, Evans, N.J. Cao, J.Y., Jiang, J.B., Wu, J.H., 2019a. Fluid evolution of Triassic and Jurassic W mineralization in the Xitian ore field, South China: Constraints from scheelite geochemistry and microthermometry. Lithos 330–331, 1–15.

13. Liu, B., Wu, Q.H., Li, H.*, Evans, N.J., Wu, J.H., Cao, J.Y., Jiang, J.B., 2019b. Fault-fluid evolution in the Xitian W–Sn ore field (South China): Constraints from scheelite texture and composition. Ore Geology Reviews 114, https://doi.org/10.1016/j.oregeorev.2019.103140.

14. Liu, B., Li, H.*, Wu, Q.H., Kong, H., Xi, X.S., 2019c. Double-vein (ore-bearing vs. ore-free) structures in the Xitian ore field, South China: Implications for fluid evolution and mineral exploration. Ore Geology Reviews 115, https://doi.org/10.1016/j.oregeorev.2019.103181.

15. Huang, C.W., Li, H.*, Lai, C.K., 2019. Genesis of the Binh Do Pb-Zn deposit in northern Vietnam: Evidence from H-O-S-Pb isotope geochemistry. Journal of Earth Science, Accepted (SCI).

16. Liu, W., Li H.*, Chen, Z., Feng, Y., Ji, G., Tian, Y., 2019. Geochemical characteristics and metal enrichment rules of black shales in the Zhuxi vanadium ore field, eastern Guizhou. Earth Science, http://kns.cnki.net/kcms/detail/42.1874.p.20190224.1453.012.html (EI).

17. Lin, Z., Wu, Q., Li, H.*, Xi, X., Kong, H., Tang, Y., Liu, B., 2019. The genesis of two types of quartz veins in Banxi antimony deposit and their prospecting significance. Earth Science, http://kns.cnki.net/kcms/detail/42.1874.P.20190827.1036.008.html (in Chinese with English abstract).

18. Yu, Q.*, Li, S., Li, H., Chai, X., Bi, X., Liu, J., Ohnuki, T., 2019. Synthesis and characterization of Mn-slag based geopolymer for immobilization of Co. Journal of Cleaner Production 23, 97–104 (SCI).

19. Maulana, A.*, Leeuwen, T.V., Takahashi, R., Chun, S.L., Sanematsu, K., Li, H., RiaIrfan, U., 2019. Geochemistry and Geochronology of VHMS mineralization in the Sangkaropi district, central-West Sulawesi, Indonesia: Constraints on its tectono-magmatic setting. Ore Geology Reviews, https://doi.org/10.1016/j.oregeorev.2019.103134 (SCI).

20. Wang, T., Huang, C., Du, G.*, Liu, Y., Xie, J., Li, H., 2019. Geochronology, geochemistry and zircon Hf-isotopes of the early Mesoproterozoic Yaopengzi dolerite in SW Yangtze block (Sichuan, SW China): implications for the Columbia supercontinent breakup. Geosciences Journal, DOI: 10.1007/s12303-018-0082-4 (SCI).

21. Huang, C., Du, G.*, Jiang, H., Xie, J., Zha, D., Li, H., Lai, C.K., 2019. Ore-Forming Fluids Characteristics and Metallogenesis of the Anjing Hitam Pb-Zn Deposit in Northern Sumatra, Indonesia. Journal of Earth Science 30(1), 131–141 (SCI).

22. Liu, Q.Q., Shao, Y.J., Chen, M., Algeo, T.J., Li, H., Dick, J.M., Wang, C., Wang, W.S., Li, Z.Q., Liu, Z.F.*, 2019. Insights into the genesis of orogenic gold deposits from the Zhengchong gold field, northeastern Hunan Province, China. Ore Geology Reviews 105, 337–355 (SCI).

23. Li, H., Sun, H.S*., Algeo, T.J., Wu, J.H., Cao, J.Y., Wu, Q.H., 2018f. Mesozoic multi-stage W–Sn polymetallic mineralization in the Nanling Range, South China: An example from the Dengfuxian–Xitian ore field. Geological Journal, https://doi.org/10.1002/gj.3369 (SCI).

24. Li, H*., Li, J.W., Algeo, T.J., Wu, J.H., Cisse, M., 2018e. Zircon indicators of fluid sources and ore genesis in a multi-stage hydrothermal system: The Dongping Au deposit in North China. Lithos,314–315, 463–478 (SCI).

25. Li, H*., Wu, J.H., Evans, N.J., Jiang, W.C., Zhou, Z.K., 2018d. Zircon geochronology and geochemistry of the Xianghualing A-type granitic rocks: Insights into multi-stage Sn-polymetallic mineralization in South China. Lithos 312–313, 1–20 (SCI).

26. Li, H*., Myint, A.Z*., Yonezu, K., Watanabe, K., Algeo, T.J., Wu, J.H., 2018c. Geochemistry and U–Pb geochronology of the Wagone and Hermyingyi A-type granites, southern Myanmar: Implications for tectonic setting, magma evolution and Sn–W mineralization. Ore Geology Reviews 95, 575–592 (SCI).

27. Li, H., Wu, Q.H*., Evans, N.J., Zhou, Z.K., Kong, H., Xi, X.S., Lin, Z.W., 2018b. Geochemistry and geochronology of the Banxi Sb deposit: Implications for fluid origin and the evolution of Sb mineralization in central-western Hunan, South China. Gondwana Research 55, 112–134 (SCI).


28. Li, H*., Palinkas, L.A., Watanabe, K., Xi, X.S., 2018a. Petrogenesis of Jurassic A-type granites associated with Cu–Mo and W–Sn deposits in the central Nanling region, South China: Relation to mantle upwelling and intra-continental extension. Ore Geology Reviews 92, 449–462 (SCI).

29. Wu, J.H., Li, H.*, Algeo, T.J. Jiang, W.C., Zhou, Z.K., 2018. Genesis of the Xianghualing Sn–Pb–Zn deposit, South China: A multi-method zircon study. Ore Geology Reviews 102, 220–239 (SCI).

30. Kong, H., Li, H.*, Wu, Q.H., Xi, X.S., Dick, J.M., Gabo-Ratio, J.A.S., 2018. Co-development of Jurassic I-type and A-type granites in southern Hunan, South China: Dual control by plate subduction and intraplate mantle upwelling. Chemie der Erde - Geochemistry 78, 500–520 (SCI)

31. Sun, H.S., Li, H*., Algeo, T.J., Gabo-Ratio, J.A.S., Yang, H., Wu., J.H., Wu, P., 2018. Geochronology and geochemistry of volcanic rocks from the Tanjianshan Group, NW China: Implications for the early Palaeozoic tectonic evolution of the North Qaidam Orogen. Geological Journal, https://doi.org/10.1002/gj.3268 (SCI).

32. Jiang, W., Li, H*., Evans, N.J., Wu, J., Cao, J., 2018b. Metal Sources of World-Class Polymetallic W–Sn Skarns in the Nanling Range, South China: Granites versus Sedimentary Rocks? Minerals, https://doi.org/10.3390/min8070265 (SCI).

33. Jiang, W.C., Li, H*., Wu, J.H., Zhou, Z.K., Kong, H., Cao, J.Y., 2018a. A newly found biotite syenogranite in the Huangshaping polymetallic deposit, South China: Insights into Cu mineralization. Journal of Earth Science 29(3), 537–555 (SCI).

34. Cao, J., Yang, X*., Du, J., Wu, Q., Kong, H., Li, H., Wan, Q., Xi, X., Gong, Y., Zhao, H., 2018b. Formation and geodynamic implication of the Early Yanshanian granites associated with W–Sn mineralization in the Nanling range, South China: an overview, International Geology Review 60, 1744–1771 (SCI).

35. Cao, J., Wu, Q*., Yang, X., Kong, H., Li, H., X., Xi, Huang, Q., Liu, B., 2018a. Geochronology and genesis of the Xitian W-Sn polymetallic deposit in eastern Hunan Province, South China: Evidence from zircon U-Pb and muscovite Ar-Ar dating, petrochemistry, and wolframite Sr-Nd-Pb Isotopes. Minerals, https://doi.org/10.3390/min8030111 (SCI).

36. Wu, J.H., Li, H*., Xi, X.S., Kong, H., Wu, Q.H., Peng, N.L., Wu, X.M., Cao, J.Y., Gabo-Ratio, J.A.S., 2017. Geochemistry and geochronology of the mafic dikes in the Taipusi area, northern margin of North China Craton: Implications for Silurian tectonic evolution of the Central Asian Orogen. Journal of Earth System Science 126:64, https://doi.org/10.1007/s12040-017-0841-z (SCI).

37. Sun, H.S., Li, H*., Evans, N.J., Yang, H., Wu, P., 2017c. Volcanism, mineralization and metamorphism at the Xitieshan Pb–Zn deposit, NW China: Insights from zircon geochronology and geochemistry. Ore Geology Reviews 88, 289–303 (SCI).

38. Li, H*., Yonezu, K., Watanabe, K., Tindell, T., 2017b. Fluid origin and migration of the Huangshaping W–Mo polymetallic deposit, South China: Geochemistry and 40Ar/39Ar geochronology of hydrothermal K-feldspars. Ore Geology Reviews 86, 117–129 (SCI).

39. Li, H., Sun, H.S*., Wu, J.H., Evans, N.J., Xi, X.S., Peng, N.L., Cao, J.Y., Gabo-Ratio, J.A.S., 2017a. Re–Os and U–Pb geochronology of the Shazigou Mo polymetallic ore field, Inner Mongolia: Implications for Permian–Triassic mineralization at the northern margin of the North China Craton, Ore Geology Reviews 83, 287–299. (SCI)

40. Sun, H.S., Li, H*., Dani?ík, M., Xia, Q.L., Jiang, C.L., Wu, P., Yang, H., Fan, Q.R., Zhu, D.S., 2017b. U–Pb and Re–Os geochronology and geochemistry of the Donggebi Mo deposit, Eastern Tianshan, NW China: Insights into mineralization and tectonic setting. Ore Geology Reviews 86, 584–599. (SCI)

41. Sun, H.S., Li, H*., Liu, L., Chen, Q.M., Yang, H., Wu, P., 2017a. Exhumation history of the Jiaodong and its adjacent areas since the Late Cretaceous: Constraints from low temperature thermochronology. SCIENCE CHINA Earth Sciences 60, 531–545. (SCI)

42. Cisse, M., Lu, X*., Algeo, T.J., Cao, X., Li, H., Wei, M., Yuan, Q., Chen, M., 2017. Geochronology and geochemical characteristics of the Dongping ore-bearing granite, North China: Sources and implications for its tectonic setting. Ore Geology Reviews 89, 1091–1106. (SCI)

43. Cao, J.Y., Wu, Q.H*., Li, H., Ouyang, C.X., Kong, H., Xi, X.S., 2017. Metallogenic mechanism of Pingguo bauxite deposit, Western Guangxi, China: Constraints from REE geochemistry and multi-fractal characteristics of major elements in bauxite ore. Journal of Central South University 24, 1627?1636. (SCI)

44. Li, H., Xi, X.S., Sun, H.S*., Kong, H., Wu, Q.H., Wu, C.M., Gabo-Ratio, J.A.S., 2016. Geochemistry of the Batang Group in the Zhaokalong area, Yushu, Qinghai: Implications for the Late Triassic tectonism in the northern Sanjiang region, China. Acta Geologica Sinica (English Edition) 90, 704–721. (SCI)

45. Wu, Q., Cao, J*., Kong, H., Shao, Y., Li, H., Xi, X., Deng, X., 2016. Petrogenesis and tectonic setting of the early Mesozoic Xitian granitic pluton in the middle Qin-Hang Belt, South China: Constraints from zircon U–Pb ages and bulk-rock trace element and Sr–Nd–Pb isotopic compositions. Journal of Asian Earth Sciences 128, 130–148. (SCI)

46. Li, H*., Xi, X.S., 2015. Sedimentary fans: A new genetic model for sedimentary exhalative ore deposits. Ore Geology Reviews 65, 375-389. (SCI)

47. Li, H*., Watanabe, K., Yonezu. K., 2014b. Geochemistry of A–type granites in the Huangshaping polymetallic deposit (South Hunan, China): Implications for granite evolution and associated mineralization. Journal of Asian Earth Sciences 88, 149–167. (SCI)

48. Li, H*., Watanabe, K., Yonezu, K., 2014a. Zircon morphology, geochronology and trace element geochemistry of the granites from the Huangshaping polymetallic deposit, South China: Implications for the magmatic evolution and mineralization processes. Ore Geology Reviews 60, 14–35. (SCI)

49. Li, H*., Watanabe, K., Xi, X.S., Yonezu, K., 2013b. Geochemistry of volcanic rocks at Zhaokalong iron-copper-polymetallic ore deposit, Qinghai Province, China: Implications for the tectonic background. Procedia Earth and Planetary Science 6, 58–63. (SCI)

50. Li, H*., Xi, X.S., Wu, C.M., Watanabe, K., 2013a. Genesis of the Zhaokalong Fe–Cu polymetallic deposit at Yushu, China: Evidence from ore geochemistry and fluid inclusions. Acta Geologica Sinica (English Edition) 87, 486–500. (SCI)

51. Li, H*., Xi, X.S., 2012. Geochemistry and sedimentary exhalative mineralization in Hutouya–Kendekeke field, Qinghai Province, China. The Chinese Journal of Nonferrous Metals 22, 772–783 (in Chinese with English abstract). (EI)

52. Li, H*., Xi, X.S., Wu, C.M., Zhang, D.B., 2012. Geochemistry and genesis of andesite from Zhaokalong Fe–Cu polymetallic deposit, Yushu, Qinghai. Journal of Central South University (Science and Technology) 43, 3524–3534 (in Chinese with English abstract). (EI)

53. Quan, T.J., Kong, H*., Fei, L.D., Wang, G., Li, H., Wu, C.M., 2012. Petrogenesis of granodiorite porphyry in Baoshan deposit: Constraints from geochemistry, zircon U–Pb chronology and Hf isotopes. The Chinese Journal of Nonferrous Metals 22, 611–621 (in Chinese with English abstract). (EI)


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