个人资料
个人简介朱传威,男,1987年,湖北武汉人,长安大学地球科学与资源学院教授,硕士生、博士生导师 社会职务研究领域铅锌矿床;稀散金属;同位素地球化学 开授课程科研项目主持国家自然科学基金青年基金一项和面上项目三项,青年科学家项目一项,贵州省基础基金一项, 重点基金一项;参与省人才团队2项,参与中科院先导项目等 论文[1] Chuanwei Zhu, Lisheng Gao, Xinran Yan, Hui Yin#, Haifeng Fan, Yuxu Zhang, Guangshu Yang, Lei Zhang, Hanjie Wen#. 2025. Mechanisms of cadmium isotopic fractionation during the substitution of cadmium for zinc in sphalerite (ZnS). Geochimica et Cosmochimica Acta. https://doi.org/10.1016/j.gca.2025.08.042 [2] Yan, X., Zhu, C#., Song, W., Wu, Y., Gao, L., Wang, W., ... & Wen, H. (2026). Hematite records palaeo-seawater Zn isotopic compositions: Evidence from Zn isotopic fractionation during adsorption onto and incorporation into Fe (hydr) oxides. Geochimica et Cosmochimica Acta. https://doi.org/10.1016/j.gca.2026.03.030(通讯) [4] Wenrui Song, Chuanwei Zhu#, Hanjie Wen, Yuxu Zhang, Zerui Liu, and Meifu Zhou. 2024. High-precision Sn isotopic analysis of geological materials by double-spike MC–ICP–MS. Geostandards and Geoanalytical Research. DOI:10.1111/ggr.12590(通讯) [5] Zhu, C.,Yang, G., Wen, H., Zhang, Y., Zhou, Z., Li, Z., ... & Luais, B. (2024). Cadmium isotope fractionation in a S-type granite related large magmatic–hydrothermal system. Gondwana Research.https://doi.org/10.1016/j.gr.2024.04.007 [6] Zhu, C., Wu, Y., Liu, Z., Zhou, M., Yang, G., Zhang, Y., & Wen, H. (2024). Determination of indium isotopic ratios of geostandards with different matrices by multi-collector inductively coupled plasma mass spectrometry (MC-ICP-MS). Journal of Analytical Atomic Spectrometry.39, 1867-1873 [7] Yin, H., Yan, X., Zhu, C#., Kwon, K. D., Gu, X., Zhao, W., ... & Liu, F. (2024). Cadmium Isotope Fractionation during Adsorption onto Edge Sites and Vacancies in Phyllomanganate. Environmental Science & Technology, 58(30), 13498-13508.(通讯) [8] Song, W., Zhu, C#., Wen, H., Huang, Z., Wei, C., Zhang, Y., Zhou, Z., Yang, Z., Chen, X., Luais, B., Cloquet, C. (2024). Sphalerite records Cd isotopic signatures of the parent rocks in hydrothermal systems: A case study from the Nayongzhi Zn-Pb deposit, southwest China. Geochemistry, Geophysics, Geosystems. DOI: 10.1029/2023GC011429(通讯) [9] Wu, Y., Yang, Z., Zhou, C., Gao, L., Song, W., Li, Q., ... & Zhu, C#. (2023). LA–ICP–MS analysis of sulfides from the Jianzhupo deposit, Guangxi Province, China: Insights into element incorporation mechanisms and ore genesis. Ore Geology Reviews, 105628. (通讯) [10] Zhu, C., Wu, Y., Wen, H., Wu, G., Song, W., Zhang, Y., & Zhao, B. (2023). High-precision double-spike Cd isotopic measurements of seawater by MC-ICP-MS and its application to seawater affected by hydrothermal vent fluids. Acta Geochimica, 42(5), 934-942. [11] Song, W., Gao, L., Wei, C., Wu, Y., Wen, H., Huang, Z., ... & Zhu, C#. (2023). Cd isotope constraints on metal sources of the Zhugongtang Zn–Pb deposit, NW Guizhou, China. Ore Geology Reviews, 105426. (通讯) [12] Yang, Z., Zhu, C#., Wen, H., Zhang, Y., Fan, H., Song, W., ... & Luais, B. (2023). Cd isotopic constraints on the sources of Zn-Sb deposits: A case study of the Jianzhupo Zn-Sb deposit, Guangxi Province, China. Geological Society of America Bulletin. https://doi.org/10.1130/B36855.1(通讯) [13] Yang, Z., Song, W., Wen, H., Zhang, Y., Fan, H., Wang, F., ... & Zhu, C#. (2022). Zinc, cadmium and sulphur isotopic compositions reveal biological activity during formation of a volcanic-hosted massive sulphide deposit. Gondwana Research, 101, 103-113. (通讯) [14] Zhu, C., Wen, H., Zhang, Y., Huang, Z., Cloquet, C., Luais, B., & Yang, T. (2021). Cadmium isotopic constraints on metal sources in the Huize Zn–Pb deposit, SW China. Geoscience Frontiers, 12(6), 101241. [15] Yan, X., Zhu, M., Li, W., Peacock, C. L., Ma, J., Wen, H., ... Zhu C#& Yin, H. (2021). Cadmium isotope fractionation during adsorption and substitution with iron (oxyhydr) oxides. Environmental science & technology, 55(17), 11601-11611. (通讯) [16] Zhu, C., Tao, C., Yin, R., Liao, S., Yang, W., Liu, J., & Barriga, F. J. (2020). Seawater versus mantle sources of mercury in sulfide-rich seafloor hydrothermal systems, Southwest Indian Ridge. Geochimica et Cosmochimica Acta, 281: 91-101. [17] Zhu, C.,Wang, J., Zhang, J., Chen, X., Fan, H., Zhang, Y., ... & Wen, H. (2020). Isotope geochemistry of Zn, Pb and S in the Ediacaran strata hosted Zn-Pb deposits in Southwest China. Ore Geology Reviews, 117, 103274. [18] Liu, T.,Zhu, C#., Yang, G., Zhang, G., Fan, H., Zhang, Y., & Wen, H. (2020). Primary study of germanium isotope composition in sphalerite from the Fule Pb–Zn deposit, Yunnan Province. Ore Geology Reviews, 103466. (通讯) [19] Yin, X., Wei, R., Chen, H., Zhu, C#., Liu, Y., Wen, H., Guo, Q., Ma, J., (2021). Cadmium isotope constraints on 1 heavy metal sources in a riverine system impacted by multiple anthropogenic activities. Science of the Total Environment, 750, 141233.(通讯) [20] Zhu, C., Liao, S., Wang, W., Zhang, Y., Yang, T., Fan, H., & Wen, H. (2018). Variations in Zn and S isotope chemistry of sedimentary sphalerite, Wusihe Zn-Pb deposit, Sichuan Province, China. Ore Geology Reviews, 95, 639-648. [21] Zhu, C., Wen, H., Zhang, Y., Yin, R., & Cloquet, C. (2018). Cd isotope fractionation during sulfide mineral weathering in the Fule Zn-Pb-Cd deposit, Yunnan Province, Southwest China. Science of the Total Environment, 616, 64-72. [22] Zhu, C., Wen, H., Zhang, Y., Fu, S., Fan, H., & Cloquet, C. (2017). Cadmium isotope fractionation in the Fule Mississippi Valley-type deposit, Southwest China. Mineralium Deposita, 52, 675-686. [23] Zhu, C., Wen, H., Zhang, Y., & Fan, H. (2016). Cadmium and sulfur isotopic compositions of the Tianbaoshan Zn–Pb–Cd deposit, Sichuan Province, China. Ore Geology Reviews, 76, 152-162. [24] Zhu Chuanwei, Wen Hanjie, Zhang Yuxu, Liu Yizhang, & Wei Rongfei. 2015. Isotopic Geochemistry of Cadmium: A Review. Acta Geologica Sinica (English Edition), 89(6), 2048-2057. [25] Zhu, C., Wen, H., Zhang, Y., Fan, H., Fu, S., Xu, J., & Qin, T. (2013). Characteristics of Cd isotopic compositions and their genetic significance in the lead-zinc deposits of SW China. Science China Earth Sciences, 56, 2056-2065. [26] 朱传威,温汉捷,张羽旭,等.Cd稳定同位素测试技术进展及其应用[J].地学前缘,2015,22(05):115-123.DOI:10.13745/j.esf.2015.05.009. [27] 朱传威,温汉捷,樊海峰,等.非传统稳定同位素锗的测试进展及其地质应用[J].岩石矿物学杂志,2014,33(05):965-970. [28] 朱传威,温汉捷,樊海峰,等.铅锌矿床地质样品的Ge同位素预处理方法研究[J].岩矿测试,2014,33(03):305-311.DOI:10.15898/j.cnki.11-2131/td.2014.03.003. [29] 朱传威,温汉捷,张羽旭,等.铅锌矿床中的Cd同位素组成特征及其成因意义[J].中国科学:地球科学,2013,43(11):1847-1856. [30] 宋文睿,朱传威,杨振,等.贵州纳雍枝铅锌矿床成因研究:来自镉同位素和微量元素的约束[J].矿物岩石地球化学通报,2023,42(01):206-214.DOI:10.19658/j.issn.1007-2802.2022.41.072. (通讯) [31] 高立生,朱传威,宋文睿,等.低镉火成岩地质样品镉含量的准确测定及其意义[J].矿物学报,2022,42(04):435-439.DOI:10.16461/j.cnki.1000-4734.2022.42.044. (通讯) [32] 刘涛涛,朱传威,王大鹏,等.广西五圩矿田箭猪坡Pb-Zn-Sb多金属矿床成因研究:来自硫同位素和闪锌矿微量元素的制约[J].矿物岩石地球化学通报,2020,39(03):646-662.DOI:10.19658/j.issn.1007-2802.2020.39.041. (通讯)
科技成果荣誉奖励工作经历2024.03—今, 长安大学, 地球科学与资源学院, 教授 2019.05—2024.02, 中国科学院地球化学研究所, 矿床地球化学国家重点实验室, 副研究员 2014.07—2019.05, 中国科学院地球化学研究所, 矿床地球化学国家重点实验室, 助理研究员 |
