Biotic and abiotic factors controlling isoprene, DMS, and oxygenated volatile organic compounds (VOCs) at the Southern Ocean in the Austral fall
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Title
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Biotic and abiotic factors controlling isoprene, DMS, and oxygenated volatile organic compounds (VOCs) at the Southern Ocean in the Austral fall
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Other Titles
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남대양의 남반구 가을철에 있어 Isoprene, DMS 및 OVOCs의 분포를 조절하는 생물학적 및 비생물학적 요인
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Authors
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Kim, Saewung
Seco, Roger
Jeong, Daun
Guenther, Alex
Kim, Kitae
Mo, Ahra
Choi, Jung-Ok
Park, Jisoo
Park, Keyhong
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Issue Date
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2025
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Citation
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Kim, Saewung, et al. 2025. "Biotic and abiotic factors controlling isoprene, DMS, and oxygenated volatile organic compounds (VOCs) at the Southern Ocean in the Austral fall". FARADAY DISCUSSIONS, 258(0): 40-59.
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Abstract
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We present shipborne observations of volatile organic compounds such as dimethylsulfide (DMS), isoprene, acetaldehyde, acetone, and methanol over the Southern Ocean in April and May 2018. During the cruise, we encountered air masses influenced by the open ocean, coastal Antarctica, and sea ice. No direct correlation between oceanographic parameters and ambient distributions of VOCs is found. Nonetheless, the previously reported correlations among the observed VOCs are found in our observed dataset. The statistically meaningful (R2 > 0.2) anti-correlation of DMS with acetone and methanol is consistent with the previous report about biological activities associated with DMS emission and uptake of methanol and acetone. A positive correlation for isoprene and acetaldehyde, notably in the air masses originating from coastal Antarctica, indicates that photolysis of dissolved organic matter (DOM) was the likely source for the compounds when we conducted the observations. In addition, the observed VOCs were often enhanced over the sea ice observations. This can be accounted for by the ventilation processes of the dissolved VOCs under the ice.
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URI
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https://repository.kopri.re.kr/handle/201206/16015
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DOI
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http://dx.doi.org/10.1039/d4fd00168k
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Type
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Article
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Station
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Araon
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Indexed
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SCIE
- Appears in Collections
- 2025-2025, 얼음의 미세구조 특성연구를 통한 저온 정화기술 및 환경/에너지 신소재 개발 (25-25) / 김기태 (PE25120)
2025-2025, 서남극해 온난화에 따른 탄소흡수력 변동 및 생태계 반응 연구 (25-25) / 박지수 (PE25110)
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