李王晔
电子邮箱:05c8b0d1092d4226a7af2d9be6fd9061f67212fc6bd06af5f17566571875d1471a64de9a909815894286268bb714cd2ba53ca004f49c5f500973685e4aa5aebad0e9f68587ec332cc543c48e4004abd5756570b8c4f13ee01410c2a224c837e9f801c5c1aceb65f167b32db518e33a55c8cf1d6bad2520281cd6e6f0d265d1ab
联系方式:13514962296
学位:博士
地球化学专业副教授;
办公室:理化大楼12-014。
邮箱:wyli@ustc.edu.cn
[1] 1998/09 - 2002/06,中国科学技术大学,地球化学,学士
[2] 2002/09 - 2008/03,中国科学技术大学,地球化学,博士
[1] 2008/03 - 2011/06,中国科学技术大学,地球和空间科学学院,博士后
[2] 2011/07 - 至今,中国科学技术大学,地球和空间科学学院,副教授
[1] 金属稳定同位素地球化学
[1] Li W.-Y., Teng F.-Z., Xiao Y. 2018. Magnesium isotope record of fluid metasomatism along the slab-mantle interface in subduction zones. Geochimica et Cosmochimica Acta, 237: 312-319..
[2] Li W.-Y., Teng F.-Z., Halama R., et al. 2016. Magnesium isotope fractionation during carbonatite magmatism at Oldoinyo Lengai, Tanzania. Earth and Planetary Science Letters, 444: 26-33..
[3] Li W.-Y., Teng F.-Z., Xiao Y., et al. 2016. Empirical calibration of the clinopyroxene-garnet magnesium isotope geothermometer and implications. Contributions to Mineralogy and Petrology, 171: 61..
[4] Li W.-Y., Teng F.-Z., Wing B. A., et al. 2014. Limited magnesium isotope fractionation during metamorphic dehydration in metapelites from the Onawa contact aureole, Maine. Geochemistry, Geophysics, Geosystems, 15: 408-415..
[5] Li W.-Y., Teng F.-Z., Xiao Y., et al. 2011. High-temperature inter-mineral magnesium isotope fractionation in eclogite from the Dabie orogen, China. Earth and Planetary Science Letters, 304: 224-230..
[6] Li W.-Y., Teng F.-Z., Ke S., et al. 2010. Heterogeneous magnesium isotopic composition of the upper continental crust. Geochimica et Cosmochimica Acta, 74: 6867-6884..
[7] Liu H.Y., Sun H., Xiao Y.L., Wang Y.Y., Zeng L.S., Li W.-Y., et al. 2019. Lithium isotope systematics of the Sumdo Ecologite, Tibet: Tracing fluid/rock interaction of subducted low-T altered oceanic crust. Geochimica et Cosmochimica Acta, 246: 385-405..
[8] Nan X.-Y., Yu H.-M., Rudnick R.L., Gaschnig R.M., Xu J., Li W.-Y., et al. 2018. Barium isotopic composition of the upper continental crust. Geochimica et Cosmochimica Acta, 233: 33-49..
[9] Li D.-Y., Xiao Y.L., Li W.-Y., et al. 2016. Iron isotopic systematics of UHP eclogites respond to oxidizing fluid during exhumation. Journal of Metamorphic Geology, 34: 987-997..
[10] Yang W., Teng F.-Z., Li W.-Y., et al. 2016. Magnesium isotopic composition of the deep continental crust. American Mineralogists, 101: 243-252..
[1] 热液流体与硅酸盐熔体之间钡同位素平衡分馏系数的实验研究及其地质意义,进行,
[2] 俯冲带变质岩的钡同位素组成,进行,
[3] 碳酸岩浆作用过程中镁同位素的分馏行为,进行,
[4] 实验标定绿辉石-石榴石镁同位素地质温度计,完成,
[5] 板块俯冲过程中元素-同位素分异、岩浆作用与铜金成矿-3,完成,
[6] 大别造山带榴辉岩矿物间Mg同位素分馏机制及其地球化学意义研究,完成,
[7] 大别山高压变质脉体的钙同位素研究,进行,
[8] 北大别饶拔寨超基性岩及榴辉岩中流体-熔体包裹体研究,进行,
[1] 地球化学,
[2] 岩矿成分分析,