叶灿(环境工程系)

发布者:程一鸣发布时间:2024-03-27浏览次数:1158

 

姓名

叶灿

技术职务

讲师

专业学历

理学博士

研究领域

大气环境化学

邮箱

canye@tiangong.edu.cn

电话

022-83955883

教育背景

2014.9-2020.6,中国科学院生态环境研究中心,环境科学,博士研究生

科研教学经历

2020.11-2023.4 北京大学,环境科学与工程学院,博士后

2023.5-至今 天津工业大学,环境科学与工程学院,讲师

主要从事大气污染成因研究,重点关注大气中痕量活性气体(NOxSO2O3HONOH2O2等)的来源、去除以及环境效应。

学术成果

Ø  承担课题情况:主持国家自然科学基金1项以及中国博士后科学基金2项:

1.      国家自然科学青年基金:2024.1-2026.124230509930万元,在研,主持

2.      博士后特别资助基金:2022.8-2023.82022T15001118万元,结题,主持

3.      博士后面上基金:2021.8-2022.82021M7002148万元,结题,主持

Ø    发表文章:

[1]. Ye, C.;   Wang, H.; Li, X.; Lu, K.; Zhang, Y., Atmospheric reactive nitrogen species   weaken the air quality response to emission reductions in China. Environmental   Science  Technology 2024, 58, 14, 6066-6070.

[2]. Li, X.; Ye, C*.;   Lu, K*.; Xue, C.; Li, X.; Zhang, Y., Accurately Predicting Spatiotemporal   Variations of Near-Surface Nitrous Acid HONO Based on a Deep Learning   Approach., Environmental Science    Technology 2024, 58, 29, 13035-13046.

[3]. Xue, C.; Ye, C(共一).; Lu, K.; Liu, P.; Zhang, C.;   Su, H.; Bao, F.; Cheng, Y.; Wang, W.; Liu, Y.; Catoire, V.; Ma, Z.; Zhao, X.;   Song, Y.; Ma, X.; McGillen, M. R.; Mellouki, A.; Mu, Y.; Zhang, Y., Reducing   Soil-Emitted Nitrous Acid as a Feasible Strategy for Tackling Ozone   Pollution. Environmental Science    Technology 2024, 58, 21, 9227-9235.

[4]. Li, Y.; Ye, C*.;   Ma, X.; Tan, Z.; Yang, X.; Zhai, T.; Liu, Y.; Lu, K*.; Zhang, Y*., Radical   chemistry and VOCs-NOx-O3-nitrate sensitivity in the polluted atmosphere of a   suburban site in the North China Plain. Science of the Total Environment   2024, 947, 174405.

[5]. Ye, C.; Lu,   K*.; Ma, X.; Qiu, W.; Li, S.; Yang, X.; Xue, C.; Zhai, T.; Liu, Y.; Li, X.;   Li, Y.; Wang, H.; Tan, Z.; Chen, X.; Dong, H.; Zeng, L.; Hu, M.; Zhang, Y*.,   HONO chemistry at a suburban site during the EXPLORE-YRD campaign in 2018:   formation mechanisms and impacts on O3 production. Atmos. Chem. Phys.   2023, 23, (24), 15455-15472.

[6]. Ye, C.; Lu,   K*.; Song, H; Mu, Y.; Chen, J.; Zhang, Y*., A critical review of sulfate   aerosol formation during winter polluted episodes. Journal of   Environmental Sciences 2023, 123, 387-399.

[7]. Ye, C.; Xue,   C*.; Ma, Z.; Zhang, C.; Liu, P.; Zhao, X.; Liu, J.; Lu, K.; Mu, Y*., Strong   impacts of biomass burning, nitrogen fertilization, and fine particles on   gas-phase hydrogen peroxide. Science of the Total Environment 2022.   843, 156997.

[8]. Ye, C.; Xue,   C.; Zhang, C.; Ma, Z.; Liu, P.; Zhang, Y.; Liu, C.; Zhao, X.; Zhang, W.; He,   X.; Song, Y.; Liu, J.; Wang, W.; Sui, B.; Cui, R.; Yang, X.; Mei, R.; Chen,   J.; Mu, Y*., Atmospheric Hydrogen Peroxide (H2O2) at the Foot and Summit of   Mt. Tai: Variations, Sources and Sinks, and Implications for Ozone Formation   Chemistry. Journal of Geophysical Research: Atmospheres 2021, 126,   (15), e2020JD033975.

[9]. Ye, C(共一).; Chen, H.; Hoffmann, E. H.;   Mettke, P.; Tilgner, A.; He, L.; Mutzel, A.; Bruggemann, M.; Poulain, L.;   Schaefer, T., Particle-Phase Photoreactions of HULIS and TMIs Establish a   Strong Source of H2O2 and Particulate Sulfate in the Winter North China Plain.   Environmental Science & Technology 2021. 55, 7818-7830.

[10]. Liu, P.; Ye, C(共一).; Zhang, C.; He, G.; Xue, C.;   Liu, J.; Liu, C.; Zhang, Y.; Song, Y.; Li, X.; Wang, X.; Chen, J.; He, H.;   Herrmann, H.; Mu, Y*., Photochemical Aging of Atmospheric Fine Particles as a   Potential Source for Gas-Phase Hydrogen Peroxide. Environmental Science   & Technology 2021. 55, 15063-15071.

[11]. Xue, C.; Ye, C(共一).; Zhang, C.; Catoire, V.; Liu,   P.; Gu, R.; Zhang, J.; Ma, Z.; Zhao, X.; Zhang, W.; Ren, Y.; Krysztofiak, G.;   Tong, S.; Xue, L.; An, J.; Ge, M.; Mellouki, A.; Mu, Y*., Evidence for Strong   HONO Emission from Fertilized Agricultural Fields and its Remarkable Impact   on Regional O3 Pollution in the Summer North China Plain. ACS Earth and   Space Chemistry 2021. 5, 340-347.

[12]. Ye, C.; Liu, P*.; Ma, Z.;   Xue, C.; Zhang, C.; Zhang, Y.; Liu, J.; Liu, C.; Sun, X.; Mu, Y*., High H2O2   Concentrations Observed during Haze Periods during the Winter in Beijing:   Importance of H2O2 Oxidation in Sulfate Formation. Environmental Science   & Technology Letters 2018. 5, 757-763

奖励与荣誉

本领域主流期刊审稿人,包括Environmental Science & Technology, Atmospheric Environment, Environmental Pollution, Journal of Hazardous Materials, Science of the Total Environment, Environmental Research, Journal of Environmental Science, Agricultural and Forest Meteorology