
潘澤真
副教授
研究方向:環(huán)境地球化學
Email:zezhenpan@fudan.edu.cn
潘澤真,于北京師范大學獲學士學位,在圣路易斯華盛頓大學和洛桑聯(lián)邦理工完成博士、博士后研究工作,2021年入職復旦大學。主要從事土壤礦物界面元素遷移轉化機制及環(huán)境效應研究。入選國家自然科學基金優(yōu)秀青年科學基金項目(海外)、上海市領軍人才項目(海外),主持國家自然科學基金青年項目、面上項目和上海市“青年科技啟明星”等科研項目。
教育簡歷
2013.08-2017.08 圣路易斯華盛頓大學,博士
2009.09-2013.07 北京師范大學,本科
工作簡歷
2024.01-至今 復旦大學,副教授
2021.03-2023.12 復旦大學,青年副研究員
2017.09-2021.01 瑞士洛桑聯(lián)邦理工學院,博士后
2019.03-2019.06 日本首都大學東京(現(xiàn)東京都立大學),訪問學者
博士生導師/方向
碩士生導師/方向
學術兼職
中國土壤學會土壤環(huán)境專委會青年委員
中國礦物巖石地球化學學會青年工作委員會委員
Applied Geochemistry》助理編輯
榮譽與獎勵
國家青年人才計劃(海外)(2022)
上海市領軍人才(青年)項目入選人(2021)
上海市“浦江學者”入選人(2021)
日本學術振興會“日本-瑞士青年學者訪問交流項目”戰(zhàn)略項目獎學金(2018)
本科生課程:土壤環(huán)境化學(全英文)
研究生課程:高級土壤環(huán)境化學(全英文)
主持和參與的主要項目:
主持國家自然科學基金青年項目、面上項目、上海市浦江學者人才計劃項目;參與國家重點研發(fā)計劃青年科學家項目2項(子任務)以及重點基金項目1項。
代表性專著:
代表性論文:
1.Liu, Q., Shu, Z., Lu, X., Liu, E., Yan, S., Zhu, X., Wang, X., Pan, Z.*, Wang, Z.* Copper-enhanced ferrihydrite Fenton generates dual oxidants for pollutant degradation via surface affinity differentiated pathways. Water Research 2026. 124720
2.Xia, Q., Joshi, P., Pan, Z.*, Lazarov, M., Bartova, B., Xu, X., Prüssmann, T., Kappler, A., Dong, H.*, Weyer, S., Bernier-Latmani, R*. Mineral dynamics revealed by Fe2+-catalyzed recrystallization of U-incorporated goethite. Environmental Science & Technology 2025, 59(48), pp.25900.
3.He, H., Liu, J., Shu, Z., Chen, Y., Pan, Z.*, Peng, C., Wang, X., Zhou, F., Zhou, M., Du, Z., Sun, K., Xing, B., Wang, Z.* Microbially driven iron cycling facilitates organic carbon accrual in decadal biochar-amended soil. Environmental Science & Technology 2024, 58(28), pp.12430.
4.Yang, F., Liu, J., Guo, Q., Zhang, T., Pan, Z.*, and Zhu, X.* Nonextractable residues, an analytical iceberg, contribute significantly to the pool of halogenated organic chemicals in soils across various regions. Environmental Science & Technology Letters, 2024, 11(4), pp.342-349.
5.Pan, Z., Loreggian, L., Roebbert, Y., Bartova, B., Hunault, M.O., Weyer, S. and Bernier-Latmani, R., 2024. Pentavalent U reactivity impacts U isotopic fractionation during reduction by magnetite. Environmental Science & Technology, 2024, 58(15), pp.6595-6604.
6.Shu, Z., Liu, Q., Liu, E., Pan, Z.*, Yan, S., Zhang, L., Song, W. and Wang, Z.* Overlooked role of aqueous chromate (VI) as a photosensitizer in enhancing the photochemical reactivity of ferrihydrite and production of hydroxyl radical. Journal of Hazardous Materials, 2024, 466, p.133557.
7.Xi, G., Gao, X., Zhou, M., Zhai, X., Chen, M., Wang, X., Yang, X., Pan, Z.* and Wang, Z. Migration of ammonium nitrogen in ion-absorbed rare earth soils during and post in situ mining: a column study and numerical simulation analysis. Frontiers of Environmental Science & Engineering, 2023, 17(8), p.102.
8.Wang, X., Shu, Z., He, H., Zhou, M., Lu, X., Wang, J., Zhang, L., Pan, Z.* and Wang, Z. Arsenopyrite dissolution in circumneutral oxic environments: the effect of pyrophosphate and dissolved Mn (III). Water Research, 2023, 119595.
9.Wen, H., Pan, Z.*, Wang, X., Li, K., Wang, Q., Luo, J., Fu, H., Zhang, L. and Wang, Z.* Dissolution behaviors of a visible-light-responsive photocatalyst BiVO4: Measurements and chemical equilibrium modeling. Journal of Hazardous Materials, 2023, 443, p.130187.
10.Shu, Z.#, Pan, Z. #, Wang, X., He, H., Yan, S., Zhu, X., Song, W. and Wang, Z*. Sunlight-induced Interfacial Electron Transfer of Ferrihydrite under Oxic Conditions: Mineral Transformation and Redox Active Species Production, Environmental Science & Technology., 2022, 56(19), pp 14188-14197.
11.Pan, Z., Roebbert, Y., Beck, A., Bartova, B., Vitova, T., Weyer, S. and Bernier-Latmani, R*. Persistence of the Isotopic Signature of Pentavalent Uranium in Magnetite, Environmental Science & Technology, 2022, 56(3): 1753-1762
12.Pan, Z., Bártová, B., LaGrange, T., Butorin, S.M., Hyatt, N.C., Stennett, M.C., Kvashnina, K.O., Bernier-Latmani, R*. Nanoscale mechanism of UO2 formation through uranium reduction by magnetite. Nature Communications, 2020, 11 (1), pp 1-12.
13.Pan, Z., Zhu, X., Satpathy, A., Li, W., Fortner, J., Giammar, D.E*. Cr(VI) Adsorption on Engineered Iron Oxide Nanoparticles: Exploring Complexation Processes and Water Chemistry. Environmental Science & Technology, 2019, 53 (20), pp 11913-11921.
14.Pan, Z., Li, W., Fortner, J.D., Giammar, D.E*. Measurement and Surface Complexation Modeling of U(VI) Adsorption to Engineered Iron Oxide Nanoparticles. Environmental Science & Technology, 2017, 51 (16), pp 9219-9226.
15.Pan, Z., Giammar, D.E. *, Metha, V., Troyer, L.D., Catalano, J.G., Wang, Z. Phosphate-Induced Immobilization of Uranium in Hanford Sediments. Environmental Science & Technology, 2016, 50 (24), pp 13486–13494.