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- W2904139739 abstract "This study explored effective methods to control NO2 and O3 concentrations in a manufacturing city, Foshan, in the Pearl River Delta (PRD) region. A “double high” pollution episode (i.e., both NO2 and O3 concentrations exceeding the ambient air quality standards of China) was selected as a typical case to identify a collaborative control method for NO2 and O3 by using the Weather Research and Forecasting model coupled with Chemistry (WRF-Chem) and the Empirical Kinetic Modeling Approach (EKMA). Considering the nonlinear relationship between O3 and its precursors; we scaled down the volatile organic carbons (VOC) and NOx emission inventories to investigate O3 responses. The results showed that Foshan is VOC-sensitive and that the VOC-NOx reduction ratio more than 1:1 not only helped to steadily reduce O3 concentrations but also to avoid an increase in NO2 concentrations. On-road and Non-road mobile sources and ports were found to be the dominant sources of NO2, while O3 was mostly affected by organic solvents in Foshan. Controls on ports and the organic solvents are key to achieving a synergetic control of NO2 and O3 pollution in Foshan. About 2.5% and 2.0% reduction in NO2 and O3 concentrations, respectively, were found to require only a 3.6% reduction in NOx emissions from ports and a 10.6% reduction in VOC emission from organic solvents. In addition to the “double high” episode, this control scheme has been extended to verify the effects of NO2 and O3 pollution controls under various synoptic weather conditions." @default.
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- W2904139739 date "2019-03-01" @default.
- W2904139739 modified "2023-10-18" @default.
- W2904139739 title "The synergetic control of NO2 and O3 concentrations in a manufacturing city of southern China" @default.
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- W2904139739 doi "https://doi.org/10.1016/j.atmosenv.2018.12.021" @default.
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