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Understanding the physicochemical characteristics of PM2.5 under meteorological influence: A study in South Chungcheong Province, South Korea (2021–2022)
  • Hwang, Kyucheol ;
  • Park, Sechan ;
  • Kim, Jeongho ;
  • Lee, Jae Young ;
  • Park, Jong Sung ;
  • Lee, Kwangyul ;
  • Park, Jungmin ;
  • Kim, Jong Bum
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Publication Year
2025-06-01
Journal
Atmospheric Pollution Research
Publisher
Elsevier B.V.
Citation
Atmospheric Pollution Research, Vol.16 No.6
Keyword
Chemical compositionMeteorological conditionsPM2.5Seasonal PM managementSouth Korea
All Science Classification Codes (ASJC)
Waste Management and DisposalPollutionAtmospheric Science
Abstract
Despite the implementation of various policies worldwide to reduce PM2.5 concentrations, they have remained sufficiently high and cause serious environmental and health problems. Most studies and policies regarding PM2.5 in South Korea have primarily focused on the Seoul Metropolitan Area, including Seoul, and there is a lack of research data necessary for implementing PM2.5 management policies in South Chungcheong Province (SCP). In this study, we used data from the Air Quality Research Center in Seosan, SCP, to conduct a detailed analysis of PM2.5, focusing on its chemical and physical properties as well as the influence of meteorological factors on PM2.5 characteristics. The mean PM2.5 concentrations were 16.7 ± 12.5 μg/m3 in the warm season and 31.1 ± 18.7 μg/m3 in the cold season, showing a twofold increase in the cold season. The ratio of NO3− in the chemical composition of PM2.5 was higher in the cold season (19%) compared to the warm season (15%), while SO42− was 1.75 times higher in the warm season. Using the atmospheric oxidant (Ox) and analyzing PM2.5 concentrations under different photochemical conditions, we found that small particles dominated in the warm season, shifting towards smaller particle sizes in the size distribution with higher temperatures due to secondary particle production. In contrast, higher concentrations of PM2.5 during the cold season were attributed to direct emissions and external influx. Our findings highlight the importance of managing small particles in summer and provide valuable data for South Chungcheong Province, aiding future policy development to reduce PM2.5 levels.
Language
eng
URI
https://aurora.ajou.ac.kr/handle/2018.oak/38165
https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=105000039434&origin=inward
DOI
https://doi.org/10.1016/j.apr.2025.102497
Journal URL
https://www.sciencedirect.com/science/journal/13091042
Type
Article
Funding
This study was conducted as part of a project titled \u201CThe Study of source and evolution characteristics of submicron aerosols based on PM1.0 and PM2.5 analysis by NIER atmospheric research center (Grant number NIER-2023-04-02-056)\u201D and funded by the Ministry of Environment (MOE) of the Republic of Korea. We would like to thank Editage (www.editage.co.kr) for English language editing.
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Lee, Jae Young 이재영
Department of Environmental and Safety Engineering
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