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中国科学院地质与地球物理研究所导师教师师资介绍简介-李扬

本站小编 Free考研考试/2020-05-30

姓名: 李扬 性别:

职称: 特聘副研究员 学历: 博士

电话: +86 (10) 8299 8695 传真:

Email: geoliy[at]outlook.com 邮编: 100029

地址: 北京朝阳区北土城西路19号,中科院地质与地球物理研究所


更多信息:
【English】 【ResearchGate】 【Google Scholar】
【岩石圈演化国家重点实验室 化学地球动力学学科组】

简历:
  李扬,2011年6月本科毕业于中国地质大学(武汉)资源勘查工程(基地班),随后保送为中国地质大学(武汉)直博生,2017年1月获得英国杜伦大学地质学博士学位,之后在美国耶鲁大学从事博士后研究,2018年8月入职中国科学院地质与地球物理研究所,在岩石圈演化国家重点实验室工作。
  李扬博士主要从事同位素年代学和矿床地球化学等领域的研究,重视面向研究需求的分析技术优化与升级,在高精度定年、原位分析和精细成矿过程研究等领域取得系统性创新成果。主要学术贡献包括: 1) 将辉钼矿Re-Os定年的分析精度提高到~0.1 %,并合作研发了磷灰石O-Cl同位素标样(Qinghu-AP和Eppawala-AP)及相应的高精度测量技术,为成矿作用研究提供了高时间分辨率的测年技术和地质流体“特异性”示踪指标;2) 厘定了斑岩成矿作用的“瞬时性”和含矿流体“脉冲式多次出溶”等特征;3) 阐明了长江中下游层状硫化物矿床成矿流体的岩浆亲缘性与成矿物质的多来源性。受邀为EarthTime(国际地时计划)核心成员,应邀在美国地质学会年会(GSA 2019, Phoenix, Arizona)成矿作用的节律专题(A Metal Rhythm)做主题报告。


研究方向:
岩浆热液成矿作用的定年与示踪

重大生命-环境事件精确定年

高精度Re-Os同位素年代学

原位微区O-Cl同位素地球化学



学科类别:
同位素年代学,地球化学,矿床学

职务:


社会任职:


获奖及荣誉:


承担科研项目情况:
岩石圈演化国家重点实验室开放基金,深部岩浆房去气过程与浅部成矿效应,2018-2020;主持;
中国科学院项目,2019-2022;主持;
国家重点研发计划重点专项项目,面向矿床学研究的变革性原位分析新技术,2019-2024;项目骨干。


代表论著:
Li, Y.*, Li, Q.-L., Tang, G.-Q., Gargano, A., Sharp, Z., Pitawala, A., Zhao, L., Zhai, M.-G., and Li, X.-H., 2020, Eppawala-AP, Sri Lanka, an Apatite Reference Material for High Precision Chlorine Isotope Analysis: Atomic Spectroscopy, v. 41, no. 2, p. 51-56.
He, Z., Zhang, X.-C., Deng, X.-D., Hu, H., Li, Y., Yu, H.-M., Archer, C., Li, J.-W., and Huang, F., 2020, The behavior of Fe and S isotopes in porphyry copper systems: Constraints from the Tongshankou Cu-Mo deposit, Eastern China: Geochimica et Cosmochimica Acta, v. 270, p. 61-83.
Li, Y.*, Zhang, S., Hobbs, R., Caiado, C., Sproson, A. D., Selby, D., and Rooney, A. D., 2019, Monte Carlo sampling for error propagation in linear regression and applications in isochron geochronology: Science Bulletin, v. 64, no. 3, p. 189-197.
Li, Y.*, McCoy-West, A. J., Zhang, S., Selby, D., Burton, K. W., and Horan, K., 2019, Controlling Mechanisms for Molybdenum Isotope Fractionation in Porphyry Deposits: The Qulong Example: Economic Geology, v. 114, no. 5, p. 981-992.
Li, Y.*, Li, Q.-L., and Yang, J.-H., 2019, Tracing water-rock interaction in carbonate replacement deposits: a SIMS pyrite S-Pb isotope perspective from the Chinese Xinqiao system: Ore Geology Reviews, v. 107, p. 248-257.
Cao, K., Yang, Z.-M., Mavrogenes, J., White, N. C., Xu, J-F., Li, Y., and Li, W.-K., 2019, Geology and Genesis of the Giant Pulang Porphyry Cu-Au District, Yunnan, Southwest China: Economic Geology, v. 114, no. 2, p. 275-301.
van der Ploeg, R., Selby, D., Cramwinckel, M. J., Li, Y., Bohaty, S. M., Middelburg, J. J., and Sluijs, A., 2018, Middle Eocene greenhouse warming facilitated by diminished weathering feedback: Nature Communications, v. 9, no. 1, p. 2877.
Rooney, A. D., Austermann, J., Smith, E. F., Li, Y., Selby, D., Dehler, C. M., Schmitz, M. D., Karlstrom, K. E., and Macdonald, F. A., 2018, Coupled Re-Os and U-Pb geochronology of the Tonian Chuar Group, Grand Canyon: GSA Bulletin, v. 130, no. 7-8, p. 1085-1098.
Li, Y.*, Selby, D., Li, X.-H., and Ottley, C. J., 2018, Multisourced metals enriched by magmatic-hydrothermal fluids in stratabound deposits of the Middle-Lower Yangtze River metallogenic belt, China: Geology, v. 46, no. 5, p. 391-394.
Li, Y.*, Li, X.-H., Selby, D., and Li, J.-W., 2018, Pulsed magmatic fluid release for the formation of porphyry deposits: Tracing fluid evolution in absolute time from the Tibetan Qulong Cu-Mo deposit: Geology, v. 46, no. 1, p. 7-10.
Li, Y.*, Selby, D., Feely, M., Costanzo, A., and Li, X.-H., 2017, Fluid inclusion characteristics and molybdenite Re-Os geochronology of the Qulong porphyry copper-molybdenum deposit, Tibet: Mineralium Deposita, v. 52, no. 2, p. 137-158.
Li, Y.*, Selby, D., Condon, D., and Tapster, S., 2017, Cyclic Magmatic-Hydrothermal Evolution in Porphyry Systems: High-Precision U-Pb and Re-Os Geochronology Constraints on the Tibetan Qulong Porphyry Cu-Mo Deposit: Economic Geology, v. 112, no. 6, p. 1419-1440.
Li, Y.*, Li, J.-W., Li, X.-H., Selby, D., Huang, G.-H., Chen, L.-J., and Zheng, K., 2017, An Early Cretaceous carbonate replacement origin for the Xinqiao stratabound massive sulfide deposit, Middle-Lower Yangtze Metallogenic Belt, China: Ore Geology Reviews, v. 80, p. 985-1003.


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