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DOI10.5194/acp-19-9037-2019
Evaluation of the effect of regional joint-control measures on changing photochemical transformation: A comprehensive study of the optimization scenario analysis
Li L.; Zhu S.; An J.; Zhou M.; Wang H.; Yan R.; Qiao L.; Tian X.; Shen L.; Huang L.; Wang Y.; Huang C.; Avise J.; Fu J.
发表日期2019
ISSN16807316
起始页码9037
结束页码9060
卷号19期号:14
英文摘要

Heavy haze usually occurs in winter in eastern China. To control the severe air pollution during the season, comprehensive regional joint-control strategies were implemented throughout a campaign. To evaluate the effectiveness of these strategies and to provide some insights into strengthening the regional joint-control mechanism, the influence of control measures on levels of air pollution was estimated with an integrated measurement-emission-modeling method. To determine the influence of meteorological conditions, and the control measures on the air quality, in a comprehensive study, the 2nd World Internet Conference was held during 16-18 December 2015 in Jiaxing City, Zhejiang province, in the Yangtze River Delta (YRD) region. We first analyzed the air quality changes during four meteorological regimes and then compared the air pollutant concentrations before, during, and after the regulation under static meteorological conditions. Next, we conducted modeling scenarios to quantify the effects caused due to the air pollution control measures. We found that total emissions of SO2, NOx, PM2.5, and volatile organic compounds (VOCs) in Jiaxing were reduced by 56 %, 58 %, 64 %, and 80 %, respectively, while total emission reductions of SO2, NOx, PM2.5, and VOCs over the YRD region are estimated to be 10 %, 9 %, 10 %, and 11 %, respectively. Modeling results suggest that during the campaign from 8 to 18 December, PM2.5 daily average concentrations decreased by 10 μg m-3 with an average decrease of 14.6 %. Our implemented optimization analysis compared with previous studies also reveals that local emission reductions play a key role in air quality improvement, although it shall be supplemented by regional linkage. In terms of regional joint control, implementing pollution channel control 48 h before the event is of most benefit in getting similar results. Therefore, it is recommended that a synergistic emission reduction plan between adjacent areas with local pollution emission reductions as the core part should be established and strengthened, and emission reduction plans for different types of pollution through a stronger regional linkage should be reserved.

. © 2019 E-flow Copernicus GmbH. All rights reserved.
语种英语
scopus关键词air quality; atmospheric pollution; carbon emission; optimization; photochemistry; pollution control; strategic approach; winter; China; Jiaxing; Yangtze Delta; Zhejiang
来源期刊Atmospheric Chemistry and Physics
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/144273
作者单位School of Environmental and Chemical Engineering, Shanghai University, Shanghai, 200444, China; State Environ. Protection Key Laboratory of the Cause and Prevention of Urban Air Pollution Complex, Shanghai Academy of Environmental Sciences, Shanghai, 200233, China; Zhejiang Environmental Monitoring Center, Hangzhou, 310014, China; Jiaxing Environmental Monitoring Station, Jiaxing, 314000, China; Department of Civil and Environmental Engineering, Washington State University, Pullman, WA 99164, United States; California Air Resources Board, Sacramento, CA 95814, United States; Department of Civil and Environmental Engineering, University of Tennessee, Knoxville, TN 37996, United States
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GB/T 7714
Li L.,Zhu S.,An J.,et al. Evaluation of the effect of regional joint-control measures on changing photochemical transformation: A comprehensive study of the optimization scenario analysis[J],2019,19(14).
APA Li L..,Zhu S..,An J..,Zhou M..,Wang H..,...&Fu J..(2019).Evaluation of the effect of regional joint-control measures on changing photochemical transformation: A comprehensive study of the optimization scenario analysis.Atmospheric Chemistry and Physics,19(14).
MLA Li L.,et al."Evaluation of the effect of regional joint-control measures on changing photochemical transformation: A comprehensive study of the optimization scenario analysis".Atmospheric Chemistry and Physics 19.14(2019).
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