Seasonal characteristics of submicron aerosols in the coastal atmosphere of southeastern Korea: Influence of urban-port outflow

The impacts of emissions from major urban-port complexes on the coastal marine atmosphere remain insufficiently constrained. Seasonal measurements of submicron aerosol mass concentrations, chemical composition, and particle size distributions were conducted at Geoje Island, a coastal receptor site southwest of Busan, South Korea, from winter 2021 to fall 2022 using a high-resolution time-of-flight aerosol mass spectrometer. PM 1 concentrations varied from 4.23 to 10.0 μg·m −3 , reflecting seasonal transport patterns. Positive matrix factorization resolved five organic aerosol sources, including hydrocarbon-like, oxidized primary organic aerosol (OPOA), two oxygenated, and biomass-burning factors. Frequent ultrafine particle growth events occurred, particularly in fall, when OPOA contributed up to 36%, coinciding with elevated black carbon and northeasterly transport from the Busan Port region. These results indicate that port-influenced air masses were associated with changes in aerosol compositions and enhanced ultrafine particle occurrence and growth at downwind coastal receptor sites.

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Publication Details

Journal
Marine Pollution Bulletin
Published
2026-10-06
DOI
https://doi.org/10.1016/j.marpolbul.2026.120437
Primary Topic
Atmospheric chemistry and aerosols
Type
article
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article

Seasonal characteristics of submicron aerosols in the coastal atmosphere of southeastern Korea: Influence of urban-port outflow

Andrew Loh, Un Hyuk Yim, Joon Geon An, J. Won et al.
Marine Pollution Bulletin
Atmospheric chemistry and aerosols
article

Seasonal characteristics of submicron aerosols in the coastal atmosphere of southeastern Korea: Influence of urban-port outflow

Andrew Loh, Un Hyuk Yim, Joon Geon An, J. Won, Donghwi Kim
article en

Abstract

The impacts of emissions from major urban-port complexes on the coastal marine atmosphere remain insufficiently constrained. Seasonal measurements of submicron aerosol mass concentrations, chemical composition, and particle size distributions were conducted at Geoje Island, a coastal receptor site southwest of Busan, South Korea, from winter 2021 to fall 2022 using a high-resolution time-of-flight aerosol mass spectrometer. PM 1 concentrations varied from 4.23 to 10.0 μg·m −3 , reflecting seasonal transport patterns. Positive matrix factorization resolved five organic aerosol sources, including hydrocarbon-like, oxidized primary organic aerosol (OPOA), two oxygenated, and biomass-burning factors. Frequent ultrafine particle growth events occurred, particularly in fall, when OPOA contributed up to 36%, coinciding with elevated black carbon and northeasterly transport from the Busan Port region. These results indicate that port-influenced air masses were associated with changes in aerosol compositions and enhanced ultrafine particle occurrence and growth at downwind coastal receptor sites.

Marine Pollution BulletinVol. 233
Korea Institute of Ocean Science and Technology (KR), Seoul National University (KR), Korea University of Science and Technology (KR)
Openalex Percentile: Top 18%
Atmospheric chemistry and aerosols
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