
Tao WANG
Associate Research Fellow
Environmental Science
Emai: wangtao_fd@fudan.edu.cn
Address: Room 4028
Phone: +86 13262680589
ENVIRONMENTAL INTERFACIAL CHEMISTRY, including
1)Heterogeneous formation of secondary aerosols driven by airborne dust chemistry
2)Photoinduced evolution of permafrost-derived carbons in thermokarst pond waters
09/2016 – 06/2021, PhD, Department of Environmental Science and Engineering, Fudan University, China
10/2019 – 05/2020, Jointly supervised doctoral student (Funded by China Scholarship Council), CNRS-IRCELYON, France.
09/2012 – 06/2016,BA, School of Environment, Nanjing Normal University, China
02/2025 to date, Associate Research Fellow, Fudan University
06/2021 – 01/2025, Postdoc Associate, Fudan University
National Natural Science Foundation of China (22576036, 42205099)
National Natural Science Foundation of Shanghai (25ZR1402025)
China Postdoctoral Science Foundation (2023T160111, 2021M700792)
1) Wang T., Kalalian C., Wang X., Li D., Perrier S., Chen J., Domine F.*, Zhang L.*, George C.* Photoinduced Evolutions of Permafrost-Derived Carbon in Subarctic Thermokarst Pond Surface Waters. Environmental Science & Technology, 2024, 58(39), 17429–17440.
2) Wang T., Kalalian C., Fillon D., Perrier S., Chen J., Domine F.*, Zhang L.*, George C.* Sunlight Induces the Production of Atmospheric Volatile Organic Compounds (VOCs) from Thermokarst Ponds. Environmental Science & Technology, 2023, 57(45), 17363–17373.
3) Wang T., Liu Y., Deng Y., Cheng H., Yang Y., Feng Y., Zhang L.*, Fu H., Chen J. Photochemical Oxidation of Water-Soluble Organic Carbon (WSOC) on Mineral Dust and Enhanced Organic Ammonium Formation. Environmental Science & Technology, 2020, 54(24), 15631–15642.
4) Wang T., Liu Y., Zhou S., Wang G., Liu X., Wang L., Fu H., Chen J., Zhang L.* Key Factors Determining the Formation of Sulfate Aerosols Through Multiphase Chemistry—A Kinetic Modeling Study Based on Beijing Conditions. Journal of Geophysical Research: Atmospheres, 2023, 128(20), e2022JD038382.
5) Wang T., Liu Y., Cheng H., Wang Z., Fu H., Chen J., Zhang, L.* Significant formation of sulfate aerosols contributed by the heterogeneous drivers of dust surface. Atmospheric Chemistry and Physics, 2022, 22(20), 13467–13493.
6) Wang T., Liu Y., Deng Y., Fu H., Zhang L.*, Chen J. Emerging investigator series: heterogeneous reactions of sulfur dioxide on mineral dust nanoparticles: from single component to mixed components. Environmental Science: Nano, 2018, 5, 1821–1833.
Emerging Investigators Series, Front Cover, Best Papers 2018
7) Liu X.*, Lara R., Dufresne M., Wu L., Zhang X.*, Wang T.*, Monge M., Reche C., Di Leo A., Lanzani G., Colombi C., Font A., Sheehan A., Green D. C., Makkonen U., Sauvage S., Salameh T., Petit J., Chatain M., Coe H., Hou S., Harrison R., Hopke P. K., Petäjä T., Alastuey A., Querol X. Variability of ambient air ammonia in urban Europe (Finland, France, Italy, Spain, and the UK). Environment International. 2024, 185, 108519.
8) Liu X., Zhang X.*, Jin B., Wang T.*, Qian S., Zou J., Dinh V. N. T., Jaffrezo J., Uzu G., Dominutti P., Darfeuil S., Favez O., Conil S., Marchand N., Castillo S., de la Rosa J. D., Grange S., Hueglin C., Eleftheriadis K., Diapouli E., Manousakas M., Gini M., Nava S., Calzolai G., Alves C., Monge M., Reche C., Harrison R. M., Hopke P. K., Alastuey A., Querol X. Source apportionment of PM10 based on offline chemical speciation data at 24 European sites. npj Climate and Atmospheric Science, 2025, 8(1): 255.
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More publication records are available @
https://scholar.google.com/citations?user=XYtEfYwAAAAJ&hl=zh-CN
https://scholar.google.ch/citations?user=XYtEfYwAAAAJ&hl=fr&oi=ao