Long-range transport influence on key chemical components of PM2.5 in the seoul metropolitan area, south korea, during the years 2012-2016

被引:0
|
作者
Bae C. [1 ]
Kim B.-U. [2 ]
Kim H.C. [3 ,4 ]
Yoo C. [5 ]
Kim S. [1 ]
机构
[1] Department of Environmental and Safety Engineering, Ajou University, Suwon
[2] Georgia Environmental Protection Division, Atlanta, 30354, GA
[3] Air Resources Laboratory, National Oceanic and Atmospheric Administration, College Park, 20740, MD
[4] Cooperative Institute for Satellite Earth System Studies, University of Maryland, College Park, 20740, MD
[5] Air Quality Improvement Bureau, National Council on Climate and Air Quality, Jongro
来源
Kim, Soontae (soontaekim@ajou.ac.kr) | 1600年 / MDPI AG卷 / 11期
基金
新加坡国家研究基金会;
关键词
Chemical composition; Long-range transport; Nitrate; PM[!sub]2.5[!/sub; SMA; Sulfate;
D O I
10.3390/ATMOS11010048
中图分类号
学科分类号
摘要
This study identified the key chemical components based on an analysis of the seasonal variations of ground level PM2.5 concentrations and its major chemical constituents (sulfate, nitrate, ammonium, organic carbon, and elemental carbon) in the Seoul Metropolitan Area (SMA), over a period of five years, ranging from 2012 to 2016. It was found that the mean PM2.5 concentration in the SMA was 33.7 μg/m3, while inorganic ions accounted for 53% of the total mass concentration. The component ratio of inorganic ions increased by up to 61%-63% as the daily mean PM2.5 concentration increased. In spring, nitrate was the dominant component of PM2.5, accounting for 17%-32% of the monthly mean PM2.5 concentrations. In order to quantify the impact of long-range transport on the SMA PM2.5, a set of sensitivity simulations with the community multiscale air-quality model was performed. Results show that the annual averaged impact of Chinese emissions on SMA PM2.5 concentrations ranged from 41% to 44% during the five years. Chinese emissions' impact on SMA nitrate ranged from 50% (winter) to 67% (spring). This result exhibits that reductions in SO2 and NOX emissions are crucial to alleviate the PM2.5 concentration. It is expected that NOX emission reduction efforts in China will help decrease PM2.5 concentrations in the SMA. © 2020 by the authors.
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