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Variations of chloride depletion and its impacts on ozone formation: Case study of a coastal area in Shanghai  ( EI收录)  

文献类型:期刊文献

英文题名:Variations of chloride depletion and its impacts on ozone formation: Case study of a coastal area in Shanghai

作者:Duan, Yusen[1,3]; Liu, Yan[2]; Zhang, Kun[4]; Li, Li[4]; Huo, Juntao[5]; Chen, Jia[5]; Fu, Qingyan[6]; Gao, Zongjiang[7]; Xiu, Guangli[1]; Hu, Tingting[2]

机构:[1] School of Resource and Environmental Engineering, East China University of Science and Technology, Shanghai, 200237, China; [2] College of Chemistry and Chemical Engineering, Shanghai University of Engineering Science, Shanghai, 201620, China; [3] Shanghai Technology Center for Reduction of Pollution and Carbon Emissions, Shanghai, 200235, China; [4] School of Environmental and Chemical Engineering, Shanghai University, Shanghai, 200444, China; [5] Shanghai Environmental Monitoring Center, Shanghai, 200235, China; [6] Shanghai Academy of Environmental Sciences, Shanghai, 200233, China; [7] Nanjing Intelligent Environmental Science and Technology Co., Ltd., 210000, China

年份:2024

卷号:957

外文期刊名:Science of the Total Environment

收录:EI(收录号:20244717398468)

语种:英文

外文关键词:Atmospheric aerosols - Bioremediation - Chlorination - Marine pollution - Nitric oxide - Ozone layer - Photodissociation - Photoionization

摘要:Chlorine plays a critical role in atmospheric chemistry. Marine chloride depletion, as a significant source of atmospheric chlorine, impacts coastal acid deposition, atmospheric oxidizing capacity, and global climate. Based on continuous monitoring data of PM2.5 water soluble ions, criteria pollutants, and meteorological data at Chongming Dongtan supersite from 2019 to 2022, variations in chloride depletion and related impact factors were analyzed. Using trajectory analysis via Concentration Weighted Trajectory (CWT) method, the main source regions contributing to chloride depletion were identified. The influence of meteorological conditions on chloride depletion was examined, and the contribution of typical chloride depletion processes to ozone was analyzed using the community atmospheric chemistry box model Chemistry As A Box model Application/Module Efficiently Calculating the Chemistry of the Atmosphere (CAABA/MECCA). Results show that chloride depletion increases in summer and decreases in winter. Chloride depletion reaches to peak around noon and gradually decreases after 6 p.m. CWT analysis reveals that airflows predominantly originate from ocean during periods of chloride depletion. As a large coastal port, shipping NOx emissions produce abundant N2O5 through oxidation processes. The liquid-phase reactions of N2O5 with sea-salt aerosol via liquid-phase reactions result in chloride depletion. Chlorine depletion follows the same trend as O3 and temperature, while showing an inverse trend with NO2, N2O5, NO3[rad], and pH. Modelling results indicate that oceanic chlorine depletion contributes approximately 8 ppb, 0.1 ppt, and 18 ppt to the enhancement of O3, OH[rad], and HO2[rad] concentrations. Therefore, attention should be paid to the contribution of ship emissions through chloride depletion mechanisms to O3 pollution in coastal port cities. Chloride depletion serves as a typical indicator of the impact of chloride circulation on coastal ozone. ? 2024

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