[1] 2016.8 to 2021.8
美国北卡罗莱纳大学教堂山分校 | 地球化学 | Doctoral Degree in Education
[2] 2011.9 to 2015.5
中国石油大学(华东) | 资源勘查工程 | University graduated
李文帅
1993年生
教授,博导
“地大学者”骨干人才A类
国家级青年人才计划入选者
中国矿物岩石地球化学学会委员
研究方向
沉积地球化学(沉积学+地球化学)
个人简介
本科毕业于中国石油大学(华东)资源勘查工程专业,2016-2021年在美国北卡罗莱纳大学教堂山分校(师从Xiao-Ming Liu 教授)地球科学学院攻读博士学位,2021-2022年在北卡罗莱纳大学教堂山分校进行博士后研究工作,2022-2024年在东京大学(合作导师高桥嘉夫, 日本地球化学学会主席)进行博士后研究工作,并担任客座教授。 主要从事非传统同位素地球化学和表生地球化学研究,在大陆风化和海洋反风化、海-陆稀土元素(REE)循环研究和铁锰结壳/结核中稀土同位素的古环境记录、黏土矿物形成/转化及伴随的金属营养元素循环 等方面取得了一系列成果。 近五年,融合同位素地球化学与同步辐射物质科学,开创了“偶联同位素与原子尺度微观地质信息”的特色研究方向。在Earth and Planetary Science Letters、Geochimica et Cosmochimica Acta等国际一流SCI期刊上,发表文章30余篇,以第一/通讯作者发表文章共26篇, 其中自然指数Nature-Index期刊15篇。 研究成果多次在戈尔德施密特国际地球化学年会和美国地球物理协会秋季会议上展示,担任Nature Communications, Earth and Planetary Science Letters,Geology, Geochimica et Cosmochimica Acta, Geophysical Reseearch Letters, Earth-Science Reviews, Global and Planetary Change, Chemcial Geology, American Journal of Science等重要地学刊物的审稿人,担任日本、加拿大多个同步辐射光源申请组评阅人。
Google Scholar: https://scholar.google.com/citations?user=GGtV_dsAAAAJ&hl=zh-CN Wenshuai Li - Google 学术搜索
近期研究重点及招生方向
1. 水岩相互作用中稀土元素的迁移与富集成矿,及其稳定同位素分馏的机制,以室内实验研究为主;
2. 深海沉积物中的稀土元素及其稳定同位素记录对重建古海洋锰循环的意义,以野外样品研究为主;
3. 俯冲带变质脱水过程中的稀土同位素地球化学行为及俯冲带壳幔物质循环,以野外样品研究为主。
经费支持
国家自然科学基金指南引导类原创探索计划项目:地球早期海洋酸碱度(pH)和盐度(S)定量研究新方法 (主持,2026-2029)
国家自然科学基金面上项目:利用铈稳定同位素探究西北太平洋水成型铁锰结壳的形成机制 (主持,2026-2029)
国家自然科学基金海外高层次人才专项资金(主持,2025-2029)
中央高校基本科研业务费专项资金(主持)
We are always looking for motivated students to join us!
加入我们 欢迎有志于地球化学、地质学及相关领域研究的优秀青年学子(高年级本科生、硕士生、博士生及博士后)加入课题组!
通过邮箱联系:wenshuai0615@gmail.com
我将致力于打造一个团结平等、互帮互助、协同创新的课题组,为你提供:每周一次、每次一小时的一对一交流;科研论文写作的精细指导;大力支持参加国际会议、交流访学、联合培养等机会;
良好的科研环境与资源,助力你成长为逻辑缜密、专业深入、科研能力完备的硕博士毕业生期待与有志于探索地球科学奥秘的你同行!欢迎通过邮箱联系:wenshuai0615@gmail.com
组内学生
肖逸雄(硕士研究生一年级)
闫荣豪(硕士研究生一年级)
李月如(本科生)
方奕添(本科生)
王秋香(本科生)
黄天宇(本科生)
所在单位
中国地质大学(武汉)地球科学学院 (主)、地质过程与成矿预测全国重点实验室(兼)、流域关键带演化湖北省重点实验室(兼)
所在团队
壳幔交换动力学科研团队(团队负责人:刘勇胜教授,重点研发计划首席科学家、国家杰出青年)依托地质过程与矿产资源国家重点实验室和地球科学学院教学科研平台,旨在开发岩石学、矿物学以及地球化学的先进手段,并利用其来剖析壳幔在古老和现今俯冲带的物质和能量交换过程与机制,
为壳幔形成和演化、气候变化、 成矿作用等重大科学问题提供强有力制约。 目前团队的科研平台现有仪器包括:多接收器电感耦合等离子体质谱仪(MC-ICP-MS) 、电感耦合等离子体质谱仪(ICP-MS)、热电离同位素质谱仪(TIMS)、纳米离子探针(SIMS)
等大型仪器设备,满足各种实验需求。
第一/通讯(*)作者论文,下划线为学生或博后
27.Li, W., Nakada, R., Obata, H., Kanna, N., Kim, I., Kashiwabara, T., Higashi, K., Kawamura, N., Asahara, Y., Tazoe, H., Tanaka, M., Usui, A., and Takahashi, Y. (2026) Cerium isotopes unveil hydrogenetic Fe–Mn encrustation occurring from the oxygen minimum zone to the deep Pacific. Science Advances (accepted).
26.Li, W., Nakada, R., McManus, J., Haley, B., Shakouri, M., Li, F.*, Takahashi, Y.* (2025) Decoupling cerium isotope fractionation from cerium anomalies in marine sediments. Earth and Planetary Science Letters (In press).
25.Li, W.*, Liu, X. M., Wang, K., Shakouri, M, Chauvel, C. (2025) Potassium isotope composition in global loess: Origins and implications. Geochimica et Cosmochimica Acta(In press).
24.Wang, Y., Li, W.*, Nakada, R., Nagasawa, M, Zhu, J., He, H, Takahashi, Y.* (2025). Abnormally heavy cerium stable isotope composition in regolith: Implications for redox tracing. Geochimica et Cosmochimica Acta, 394, 357-367.
23.Li, W.*, Coogan, L. A., Wang, K., Takahashi, Y., Shakouri, M., Hu, Y., & Liu, X. M. (2024). Hydrothermal origin of heavy potassium isotope compositions in altered oceanic crust: Implications for tracing the elemental cycle. Earth and Planetary Science Letters, 625, 118448.
22.Li, W.*, Nakada, R., Takahashi, Y., Gaschnig, R. M., Hu, Y. F., Shakouri, M., Rudnick, R. L., Liu, X. M. (2023). Cerium geochemical composition in the upper continental crust through time: Implications for tracing past redox environment. Geochimica et Cosmochimica Acta, 359, 20-29.
21.Li, W.*, Liu, X. M.*, Hu, Y., Suzuki, A., Yoshimura, T. (2023). Factors controlling coral P/Ca nutrient proxy: Insights from Porites culture experiments and synchrotron‐based X-ray spectroscopy. Palaeogeography, Palaeoclimatology, Palaeoecology, 615, 111449.
20.Li, W., Liu, X. M.*, Nakada, R., Takahashi, Y., Hu, Y., Shakouri, M., Zhang, Z., Okumura, T., Yamada, S. (2023). The cerium isotope fingerprints of redox fluctuation in bauxites. Earth and Planetary Science Letters, 602, 117962.
19.Li, W., Liu, X. M.*, Wang, K., MacManus, J., Haley, B., Takahashi, Y., Shakouri, M., Hu, Y. F. (2022). Potassium isotope signatures in modern marine sediments: Insights into early diagenesis. Earth and Planetary Science Letter, 599, 117849.
18.Li, W., Liu, X. M.*, Wang, K., Hu, Y. F., Suzuki, A., Yoshimura, T (2022). Potassium incorporation and isotope fractionation in cultured scleractinian corals. Earth and Planetary Science Letter, 581, 117393.
17.Li, W., Liu, X. M.*, Wang, K., Takahashi, Y., Hu, Y. F., Chadwick, O. A. (2022). Soil potassium isotope composition during four million years of ecosystem development in Hawai‘i. Geochimica et Cosmochimica Acta, 332, 57-77.
16.Li, W., Liu, X. M.*, Hu, Y., Teng, F. Z., Hu, Y. F., Chadwick, O. A. (2022). Potassium isotopic fractionation during chemical weathering in humid and arid Hawaiian regoliths. Geochimica et Cosmochimica Acta, 333, 39-55.
15.Li, W.*, Yamada, S., Hashimoto, T., Okumura, T., Hayakawa, R., Nitta, K., Sekizawa, O., Suga, H., Uruga, T., Ichinohe, Y., Sato, T., Tayama, Y., Nada, H., Isobe, T., Takatori, S., Hiraki, T., Tatsuno, H., Kaninato, N., Ita, M., Sakai, Y., Omamiuda, H., Yamaguchi, A., Yomogida, T., Miura, H.,
Nagasawa, M., Takahashi, Y.* (2022). High-sensitive XANES analysis at Ce L2-edge for Ce in bauxites using transition-edge sensors: Implications for Ti-rich geological samples. Analytica Chimica Acta, 340755.
14.Li, W., Liu, X. M.* (2022) Mineralogy and fluid chemistry controls lithium isotope fractionation during clay adsorption. Science of the Total Environment, 851, 158138.
13.Li, W., Liu, X. M.*, Hu, Y., Teng, F. Z., Hu, Y. F. (2021). Potassium isotope fractionation during clay adsorption. Geochimica et Cosmochimica Acta, 304, 160-177.
12.Li, W., Liu, X. M.*, Wang, K., Fodrie, F. J., Yoshimura, T., Hu, Y. F. (2021). Potassium phases and isotopic composition in modern marine biogenic carbonates. Geochimica et Cosmochimica Acta, 304, 364-380.
11.Li, W., Liu, X. M.*, Hu, Y. F, Teng, F. Z., Chadwick, O. A. (2021). Potassium isotope fractionation in humid and arid soil-plant systems in Hawaii. Geoderma, 400, 115219.
10.Li, W.*, Liu, X. M.*, Wang, K., Koefoed, P. (2021). Lithium and potassium isotope fractionation during silicate rock dissolution: an experimental approach. Chemical Geology, 568, 120142.
9.Li, W.*, Liu, X. M.*, Chadwick, O. A. (2020). Lithium isotope behavior in Hawaiian regoliths: Soil-atmosphere-biosphere exchanges. Geochimica et Cosmochimica Acta, 285, 175-192.
8.Li, W., Liu, X. M.* (2020). Experimental determination of lithium isotopic fractionation during kaolinite adsorption: Implications for chemical weathering. Geochimica et Cosmochimica Acta 284, 156-172.
7.Li, W.*, Liu, X. M.* (2020). Systematic investigations on iron cycling in phosphorus/siderophore systems: synergism or antagonism?. Applied Geochemistry, 124, 104796.
6.Li, W.*, Liu, X. M.* (2020). Mobilization and partitioning of rare earth elements in the presence of humic acids and siderophores. Chemosphere, 126801.
5.Li, W.*, Liu, X. M.*, Hu, Y. F. (2020). K and Ca K-edge XANES in chemical compounds and minerals: implications for geological phase identification. Geostandards and Geoanalytical Research 44, 805-819.
4.Li, F.*, Diao, H. Li, W.* (2020). Mineral trapping of CO2: hydrothermal experimental system and thermodynamic simulation on interaction between CO2-H2O-dawsonite bearing sandstone with the pH of 4 ~ 9, temperature of 80 ~ 140 °C,
and increasing pCO2. Marine and Petroleum Geology, 111, 588-602.
3.Li, W.*, Liu, X. M.*, Godfrey, L. V. (2019). Optimization of lithium chromatography for isotopic analysis in geological reference materials by MC‐ICP‐MS. Geostandards and Geoanalytical Research, 43, 261-276.
2.Liu, X. M.*, Li, W.* (2019). Lithium isotopic analysis by quadrupole-ICP-MS: Optimization for geological samples. Journal of Analytical Atomic Spectrometry, 34, 1708-1717.
1.Li, F.*, Li, W.* (2018). Shengli Oilfield, China as a natural analogue of CO2 storage: Diagenetic fluid evolution mode and potentials for carbon sequestration. Geological Journal, 53, 1921-1937.
[1] 2016.8 to 2021.8
美国北卡罗莱纳大学教堂山分校 | 地球化学 | Doctoral Degree in Education
[2] 2011.9 to 2015.5
中国石油大学(华东) | 资源勘查工程 | University graduated
[1] 2022.3 to 2024.10
 日本东京大学 
[2] 2021.8 to 2022.3
 美国北卡罗莱纳大学教堂山分校 
No content
No content