王笑非
青年研究員🙇🏼♂️、博士生導師
Tel📂:021-31242526
Email🕸:xiaofeiwang@fudan.edu.cn
研究方向🙇🏼♀️:氣溶膠物理化學🫙、氣溶膠技術開發
課題組主頁🛹:http://www.sdal.ac.cn
教育簡歷
2014年5月 聖路易斯華盛頓大學能源環境化學工程專業 獲博士學位 (導師🏇🏿:Pratim Biswas院士)
2009年7月 沐鸣2平台環境科學專業 獲碩士學位 (導師:楊新教授)
2007年7月 沐鸣2平台環境科學專業 獲學士學位
工作簡歷
2018年9月 -至今 沐鸣2开户 青年研究員
2014年6月-2018年8月 加州大學聖地亞哥分校 博士後/助理項目研究科學家 (合作導師🕚:Kimberly Prather院士)
博士生導師/方向
大氣環境中的氣溶膠對全球氣候以及人體健康有著極其重要的影響👩🏽🔧,而工業中的氣溶膠技術有著廣泛的應用🎣。本課題組主要利用實驗室模擬方法,對飛沫氣溶膠🧔🏽♂️🫔,沙塵氣溶膠以及其它類型氣溶膠的形成機理進行了深入研究👨🏫👍🏿,並且開發相關的氣溶膠技術📥。已經取得的主要創新成果有:(一)揭示海洋飛沫、人體飛沫和沙塵氣溶膠的形成機理和其對環境的影響👆🏿;(二)利用氣溶膠的天然帶電性,開發氣溶膠去除的新方法;(三)利用氣泡和飛沫氣溶膠的富集特性🤳,開發針對環境樣品的在線富集前處理裝置;(四)開發氣溶膠測量儀器,包括研製新型全自動氣溶膠/VOCs有機組分分析儀,以及生物氣溶膠采樣器等。本人已經在本領域的主流雜誌發表第一、通訊作者文章30余篇,其中包括了發表於美國科學院院刊(PNAS)🐔👐、ACS Cent. Sci.、Proc. Comb. Inst.🎵、Energy & Fuels🍖、Fuel⚛️、Environ. Sci. Technol.和Atmos. Chem. Phys.等國際期刊的多篇文章🏷。
學術兼職
擔任了Nature Communications,Environmental Science & Technology, Geophysical Research Letters, Atmospheric Environment,Journal of Cleaner Production😢🧑🏽⚖️,Journal of Aerosol Science, Aerosol Science & Technology等環境、地學以及氣溶膠科學期刊的審稿人
榮譽與獎勵
國家引進人才青年計劃
Dave Benferado Scholarship for Air Pollution Control and Waste Minimization Research, the Air & Waste Management Association (AWMA), Awarded at the AWMA Annual Conference, San Antonio, Texas
上海市研究生優秀畢業論文, 上海市教委
McDonnell Scholar, Washington University in St. Louis
Peabody Energy Corporate Fellow, Washington University in St. Louis
本科生課程:大氣化學
研究生課程👰🏽♂️:MATLAB在環境模擬中的應用
主持項目:
2019-2022🍄🟫:沐鸣2平台引進人才項目
2019-2022:上海市面上項目-有機汙染物在海鹽氣溶膠中的富集及在水-氣界面的傳輸
2020-2023:國家自然基金委青年基金-單顆粒氣溶膠真實密度和形狀系數的在線檢測
2021-2022:上海市公衛體系建設三年行動計劃子課題
2021-2024:國家自然基金委面上基金-海鹽氣溶膠對海水中有機汙染物的富集和傳輸
2021-2023:國家引進人才青年計劃項目
2023-2026:上海市自然基金原創項目
2024-2027:國家自然基金委面上基金
代表性論文:
全部論文:https://scholar.google.com/citations?hl=en&user=3cSOZwwAAAAJ
近三年第一、通訊作者論文:
1. Yang, S.; Lu, X.; Peng, Y.; Wang, Z.; Yang, X.; Wang, X.*, Microplastic Emission from Soil-Air Interface. Environment Science & Technology Letters 2024 In press.
2. Qi, X.; Zhu, X.; Gao, Q.; Wang, Q.; Pan, Z.; Wang, Z.*; Wang, X.*, A Lab Simulation Study on the Impact of Oil Spills on the Distribution of Heavy Metals and PAHs in Sea Spray Aerosols. Journal of Fudan University (Natural Science) 2023 DOI: 10.15943/j.cnki.fdxb-jns.20230519.001 (In Chinese)
3. Shi, Y.; Zhang, R.; Zhang, T.; He, F.; Zheng, Y.; Yang, J.; Wu, C.*; Wang, X.*, Simulation of COVID-19 Spread and Infection Probability through Aerosol Transmission: A Case Study of Subway Cars. Journal of Environmental & Occupational Medicine 2023 In press (In Chinese).
4. Gan, Y.; Lu, X.*; Chen, S.; Jiang, X.; Yang, S.; Ma, X.; Li, M.; Yang, F.; Shi, Y.; Wang, X.*, Aqueous-phase formation of N-containing secondary organic compounds affected by the ionic strength. Journal of Environmental Sciences 2024 138 88-101.
5. Zhang, R.; Lu, X.; Wang, L.; Chen, J.; Chen, D. R.; Wang, X.*, Extremely Inexpensive and Simple Method to Remove Indoor Respiratory Aerosols. Environment Science & Technology Letters, 2023 10 (9) , 786-791.
6. Zhang, T.; Lu, X.; Zhang, R.; Jiang, X.; Yang, S.; Ma, X.; Gao, Q.; Wang, X.* Ultrasonic Humidifier Aerosols: Observed High Heavy Metal Enrichment and a New Emission Control Method. Journal of Environmental Sciences, In press.
7. Yang, S.; Zhang, T.; Gan, Y.; Lu, X.; Chen, H.; Chen, J.; Yang, X.; Wang, X.*, Constraining Microplastic Particle Emission Flux from the Ocean. Environment Science & Technology Letters 2022 9 (6) 513-519.
8. Jiang, X.; Rotily, L.; Villermaux, E.; Wang, X.* Reply to Gañán-Calvo: Aerosol production from the bursting of submillimeter bubbles. Proceedings of the National Academy of Sciences of the United States of America 2022 119(34): e2209370119.
9. Jiang, X.; Rotily, L.; Villermaux, E.; Wang, X.*, Submicron Drops from Flapping Bursting Bubbles. Proceedings of the National Academy of Sciences of the United States of America 2022 119 (1) e2112924119.
10. Mayer K. J.#; Wang, X. #; Santander, M. V.; Mitts B. A.; Sauer J.S.; Sultana, C. M.; Cappa, C. D.; Prather, K. A., Secondary Marine Aerosol Plays a Dominant Role over Primary Sea Spray Aerosol in Cloud Formation. ACS Central Science 2020 6, 2259–2266.
11.Zhou, K.; Wang, S.; Lu, X.; Chen, H.; Chen, J.; Wang, L.; Yang, X.*; Wang, X.*, Production flux and chemical characteristics of spray aerosol generated from raindrop impact on seawater and soil. Journal of Geophysical Research: Atmospheres 2020 125, e2019JD032052.
12. Gao, Q.; Zhu, S.; Zhou, K.; Zhai, J.; Chen, S.; Wang, Q.; Wang, S.; Han, J.; Lu, X.; Chen, H.; Zhang, L.; Wang, L.; Wang, Z.; Yang, X.; Ying, Q.; Zhang, H.*; Chen, J.*; Wang, X.*, High Enrichment of Heavy Metals in Fine Particulate Matter through Dust Aerosol Generation. Atmospheric Chemistry & Physics, In press.
13. Chen, S.; Lu, X.*; Ma, X.; Zhu, X.; Gao, Q.; Jiang, X.; Yang, S.; Gan, Y.; Wang, X.* Aerosol emission from soil during field burning. Atmospheric Environment 2023, 119924.
14. Ma, X.; Gao, Q.; Jiang, X.; Chen, S.; Gan, Y.; Zhang, T.; Lu, X.; Wang, X.* Direct effects of air humidity on dust aerosol production: Evidences for the surprising role of electrostatic forces. Geophysical Research Letters 2023 50 (13), e2023GL103639.
15. Gao, Q.; Zhu, X.; Wang, Q.; Zhou, K.; Lu, X.; Wang, Z.*; Wang, X.* Enrichment and transfer of polycyclic aromatic hydrocarbons (PAHs) through dust aerosol generation from soil to the air. Frontiers of Environmental Science & Engineering 2023 17(1): 10.
16. Wang, X.*; Zhang, Y.; Yang, X. Investigating aerosol chemistry using Real-Time Single Particle Mass Spectrometry: A viewpoint on its recent development. Applied Geochemistry 2023 149: 105554.
17. Wang, S.; Zhou, K.; Lu, X.; Chen, H.; Yang, F.; Li, Q.; Chen, J.; Prather, K. A.; Yang, X.*; Wang, X.*, Online shape and density measurement of single aerosol particles. Journal of Aerosol Science 2022 159 105880.
18.Wang, X.*; Wang, L.; Chen, J. Recent Progress in the Development of New Observation Techniques for Complex Air Pollution. Science and Technology Review 2022, 40(15) (In Chinese)
19. Wang, S.; Zhou, K.; Lu, X.; Chen, H.; Yang, F.; Li, Q.; Yang, X.*; Wang, X.*, Measurement of Density and Shape for Single Black Carbon Aerosols in a Heavily Polluted Urban Area. Aerosol and Air Quality Research 2021 21(12) 210162.
20. Zhu, S.; Li, L.; Wang, S.; Li, M.; Liu, Y.; Chen, H.; Wang, L.; Chen, J.; Zhou, Z.; Yang, X.*; Wang, X.*, Development of an Automatic Linear Calibration Method for High Resolution Single Particle Mass Spectrometry: Improved Chemical Species Identification for Atmospheric Aerosols. Atmospheric Measurement Techniques 2020 13, 4111–4121.
21.Wang, X.; Ye, X.; Chen, J.; Wang, X.*; Yang, X.*; Fu, T.-M.; Zhu, L.; Liu, C, Direct links between hygroscopicity and mixing state of ambient aerosols: Estimating particle hygroscopicity from their single particle mass spectra. Atmospheric Chemistry & Physics 2020 20, 6273–6290.