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Influence of oceanic emission and gas transfer velocity on atmospheric dimethyl sulfide distribution over the Southern Ocean

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Title
Influence of oceanic emission and gas transfer velocity on atmospheric dimethyl sulfide distribution over the Southern Ocean
Other Titles
남극해 대기 중 디메틸설파이드 분포에 대한 해양 배출 및 기체 교환 속도의 영향
Authors
Ju, Jaemin
Mo, Ahra
Park, Keyhong
Zhang, Miming
Yan, Jinpei
Jung, Jinyoung
Emmons, Louisa
Kim, Joo-Hong
Park, Taewook
Park, Jisoo
Keywords
Dimethyl sulfate (DMS)Air-sea DMS exchangeCommunity Earth System Model (CESM)Emission inventoryGas transfer velocityAntarctica
Issue Date
2025
Citation
Ju, Jaemin, et al. 2025. "Influence of oceanic emission and gas transfer velocity on atmospheric dimethyl sulfide distribution over the Southern Ocean". Marine Pollution Bulletin, 216(0): 0-0.
Abstract
Oceanic dimethyl sulfide (DMS) is a major source of atmospheric sulfur, particularly significant in the Antarctic region. This study conducted nine sensitivity simulations using the Community Earth System Model version 2, combining three seawater DMS climatological inventories and three gas transfer velocities. The most sensitive changes in atmospheric DMS were simulated over the subpolar region according to the DMS inventories and gas transfer velocities. Seasonal variations in atmospheric DMS peaked during the austral summer, except for the continental region, where the peaks occurred in the austral winter. These simulation results were also compared with ship-borne measurements obtained in March 2018, and generally showed significant consistency under specific temporal and regional conditions. The model indicated that DMS concentrations are strongly influenced by the seawater DMS inventory and gas transfer velocity, with this sensitivity varying considerably across different regions and periods, particularly under intense wind conditions.
URI
https://repository.kopri.re.kr/handle/201206/16016
DOI
http://dx.doi.org/10.1016/j.marpolbul.2025.118033
Type
Article
Station
해당사항없음
Indexed
SCIE
Appears in Collections  
2025-2025, 지구시스템모델 기반 북극-한반도 통합 재해기상 예측 시스템(KPOPS-Earth)의 개발 및 활용 (25-25) / 김주홍 (PE25010)
2025-2025, 서남극해 온난화에 따른 탄소흡수력 변동 및 생태계 반응 연구 (25-25) / 박지수 (PE25110)
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