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姓名 贾丽辉 性别:
职称 高级工程师 学历 博士
电话 010-82998483 传真: 010-62010846
Email: jialihui[a]mail.iggcas.ac.cn 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电子探针与扫描电镜实验室

 
简历:

贾丽辉,高级工程师。1990年出生于河南漯河。长期从事电子探针新技术方法研发及其应用研究。主要研究成果:(1)研发了7件尖晶石、1件钛铁矿和1件斜方辉石标准物质;(2)建立了电子探针同时测定尖晶石主、微量元素和Fe3+/ΣFe比值的技术方法,并应用在岩浆铜镍硫化物矿床的氧逸度研究;(3)优化了电子探针高精度测试钛铁矿微量元素技术方法。目前以第一作者发表SCI论文10篇,授权中国发明专利2项。

教育及工作经历

  • 2008/09-2012/07,青海大学,资源勘查工程,获学士学位
  • 2012/09-2015/07,中国地质大学(北京),矿产普查与勘探,获硕士学位
  • 2015/09-2018/07,中国地质大学(北京),矿物学、岩石学、矿床学,获博士学位
  • 2018/07-2022/12,中国科学院地质与地球物理研究所,工程师
  • 2022/12-至今,中国科学院地质与地球物理研究所,高级工程师
 
研究方向:
  1. 电子探针新技术方法研发及应用;
  2. 元素微区分析标准物质研发;
  3. 岩浆铜镍硫化物矿床岩浆演化-成矿过程
 
学科类别:
地质学
 
职务:
 
社会任职:
 
获奖及荣誉:
 
承担科研项目情况:
  1. 所内实验技术创新基金,“电子探针精确测定尖晶石Fe3+/∑Fe的方法研究”, 2018.12-2020.12,主持,结题;
  2. 国家自然科学基金青年项目,“东昆仑铜镍矿岩浆氧逸度演化和成矿过程:铬尖晶石视角”,2021.12-2023.12,主持,在研;
  3. 国家自然科学基金专项项目,“电子探针高精度测定陨硫铁微量元素的技术方法研究”,2023.01-2023.12,主持,在研。
 
代表论著:

第一作者论文:

  1. Lihui Jia, Yi Chen, Bin Su, Qian Mao, Di, Zhang. 2022. Oxygen-fugacity evolution of magmatic Ni-Cu sulfide deposits in East Kunlun: insights from Cr-spinel composition. American Mineralogist, 107, 1958-1981.
  2. Lihui Jia, Qian Mao, Hengci Tian, Lixing Li, Liang Qi, Shitou Wu, Jiangyan Yuan, Liangliang Huang, Yi Chen. 2022. High-precision EPMA measurement of trace elements in ilmenite and reference material development. Journal of Analytical Atomic Spectrometry, 37, 2351-2361.
  3. Lihui Jia, Yi Chen, Qian Mao, Di Zhang, Jiangyan Yuan, Xiaoguang Li, Shitou Wu, Danping Zhang. 2022. Simultaneous in-situ determination of major, trace elements and Fe3+/∑Fe in spinel using EPMA. Atomic Spectroscopy, 43(1), 42-52.
  4. Lihui Jia, Qian Mao, Bin Su, et al. 2021. MK-1 Orthopyroxene-A new potential reference material for in-situ microanalysis. Minerals, 11, 1321.
  5. Lihui Jia, Jingwen Mao, Baolong Li, et al. 2021. Geochronology and petrogenesis of the Late Silurian Shitoukengde mafic–ultramafic intrusion, NW China: Implications for the tectonic setting and magmatic Ni-Cu mineralization in the East Kunlun Orogenic Belt. International Geology Review, 63, 549-570.
  6. Lihui Jia, Jingwen Mao, Peng Liu, et al. 2020. Crust–mantle interaction during subduction zone processes: Insight from late Mesozoic I-type granites in eastern Guangdong, SE China. Journal of Asian Earth Sciences, 192, 104284.
  7. Lihui Jia, Jingwen Mao, Wei, Zheng. 2020. Geochronology, geochemistry, and Sr-Nd-Hf-O isotopes of the Zhongqiuyang rhyolitic tuff in eastern Guangdong, SE China: Constraints on petrogenesis and tectonic setting. Geological Journal, 55, 5082-5100.
  8. Lihui Jia, Fancong Meng, Huibin Feng. 2018. The Wenquan ultramafic rocks in the Central East Kunlun Fault zone, Qinghai-Tibet Plateau—crustal relics of the Paleo-Tethys ocean. Mineralogy and Petrology, 112, 317-339.
  9. Lihui Jia, Jingwen Mao, Peng Liu, Yang Li. 2018. Petrogenesis of Early Cretaceous granodiorite–quartz diorite from eastern Guangdong, SE China: Implications for magma sources and geodynamic evolution. Lithos, 304-307, 388-411.
  10. 贾丽辉, 孟繁聪, 冯惠彬. 2014. 榴辉岩相峰期流体活动:来自东昆仑榴辉岩石英脉的证据. 岩石学报, 030(8), 2339-2350.

发明专利:

  1. 贾丽辉,陈意,毛骞等. 一种电子探针二次标样校正法测定尖晶石Fe3+/∑Fe的方法 (ZL 2021 1 0095636.9.). 中国发明专利. 2021年10月29日
  2. 贾丽辉,陈意,毛骞. 一种斜长石标样的确认方法 (ZL 2022 1 1314370.3). 中国发明专利. 2023年01月24日

代表性合作论文:

  1. Wang, H., Wilson, A., Yang, J.H., Li, Q.L., Tang, G.Q., Feng, L.J., Jia, L.H. 2023. No 18O-depleted mantle source for Archean komatiite. Science Bulletin, 68, 53-55.
  2. Tang, L., Santosh, M., Palin, R.M., Jia, L.H., Cao, H.W., Sheng, Y.M. 2022. Long-lived (> 100 m.y.) postcollisional exhumation and cooling in the Paleoproterozoic Tarans-North China orogeny: Evidence from phase equilibria modeling and monazite petrochronology of granulite-facies metapelites in the Fuping Complex. Geological Society of America Bulletin, https://doi.org/10.1130/B36623.1
  3. Tian, H.C., Yang, W., Zhang, D., Zhang, H.J., Jia, L.H., Wu, S.T., Lin, Y.T., Li, X.H., Wu, F.Y. 2022. Petrogenesis of Chang’E-5 mare basalts: Clues from the trace elements in plagioclase. American Mineralogist, in press. DOI:10.2138/am-2022-8570.
  4. Liu, J.J., Liu, B., Ren, X., Li, C.L., Shu, R., Guo, L., Yu, S.Z., Zhou, Q., Liu, D., Zeng, X.G., Gao, X.Y., Zhang, G.L., Yan, W., Zhang, H.B., Jia, L.H., Jin, S.F., Xu, C.H., Deng, X.J., Xie, J.F., Yang, J.F., Huang, C.N., Zuo, W., Su, Y., Wen, W.B., Ouyang, Z.Y. 2022. Evidence of water on the lunar surface from Chang’E-5 in-situ spectra and returned samples. Nature Communications, 13, 3119.
  5. Ji, J.L., He, H.C., Hu, S., Lin, Y.T., Hui, H.J., Hao, J.L., Li, R.Y., Yang, W., Yan, Y.H., Tian, H.C., Zhang, C., Anand, M., Tartese, R., Gu, L.X., Li, J.H., Zhang, D., Mao, Q., Jia, L.H., Chen, Y., Wu, S.T., Wang, H., He, H.Y., Li, X.H., Wu, F.Y. 2022. Magmatic chlorine isotope fractionation recorded in apatite from Chang’e-5 basalts. Earth and Planetary Science Letters, 591, 117636.
  6. Tian, H.C.(#), Wang, H. (#), Chen, Y. (#), Yang, W. (*), Zhou, Q., Zhang, C., Lin, H.L., Huang, C., Wu, S.T., Jia, L.H., Xu, L., Zhang, D., Li, X.G., Chang, R., Yang, Y.H., Xie, L.W., Zhang, D.P., Zhang, G.L., Yang, S.H., Wu, F.Y. 2021. Non-KREEP origin for Chang’E-5 basalts in the Procellarum KREEP Terrane. Nature, 600, 59-63.
  7. Tang, L., Wagner, T., Fusswinkel, T., Zhang, S.T., Xu, B., Jia, L.H., Hu, X.K. 2021. Magmatic-hydrothermal evolution of an unusual Mo-rich carbonatite: a case study using LA-ICP-MS fluid inclusion microanalysis and He-Ar isotopes from the Huangshui’an deposit, Qinling, China. Mineralium Deposita, 56, 1133-1150.
  8. Su, B., Chen, Y., Mao, Q., Zhang, D., Jia, L.H., Guo, S. 2019. Minor elements in olivine inspect the petrogenesis. Lithos, 344-345, 207-216.
  9. 陈意,胡兆初,贾丽辉,李金华,李秋立,李晓光,李展平,龙涛,唐旭,王建,夏小平,杨蔚,原江燕,张迪,李献华.2021. 微束分析测试技术十年(2011~2020)进展与展望.矿物岩石地球化学通报, 40(1), 1-35.
  10. 张迪, 陈意, 毛骞, 苏斌, 贾丽辉, 郭顺. 2019. 电子探针分析技术进展及面临的挑战. 035(01), 0261-0274.
  11. 孟繁聪, 贾丽辉, 任玉峰, 刘强, 段雪鹏. 2017. 东昆仑东段温泉地区片麻岩记录的岩浆和变质事件:锆石U-Pb年代学证据. 岩石学报, 033(12), 3691-3709.

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