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Seasonal Flux of Ice-Related Organic Matter During Under-Ice Blooms in the Western Arctic Ocean Revealed by Algal Lipid Biomarkers

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Title
Seasonal Flux of Ice-Related Organic Matter During Under-Ice Blooms in the Western Arctic Ocean Revealed by Algal Lipid Biomarkers
Other Titles
조류 지질생체지표를 통한 서북극해 under ice bloom 기간의 해빙관련 유기물의 시계열 플럭스 연구
Authors
Gal, Jong-Ku
Ha, Sun-Yong
Park, Jisoo
신경훈
김동선
김난영
Kang, Sung-Ho
Yang, Eun Jin
Keywords
Chukchi SeaEast Siberian SeaHighly branched isoprenoidsIP25sediment trapunder-ice bloom
Issue Date
2022
Citation
Gal, Jong-Ku, et al. 2022. "Seasonal Flux of Ice-Related Organic Matter During Under-Ice Blooms in the Western Arctic Ocean Revealed by Algal Lipid Biomarkers". JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 127(2): 1-15.
Abstract
Satellite observations and modeling data have suggested a significant increase in net primary production in the Arctic Ocean over the last decade due to retreating sea ice and the development of light availability caused by Arctic warming. Subsequently, under-ice blooms (UIBs) are being recognized as an important phenomenon from the traditional perspective. However, the role of sea-ice algae in UIBs is still unknown due to the limited availability of continuous observations. We analyzed data on primary producer- derived lipid biomarkers from sinking particles collected over 1 year using time-series sediment traps on the East Siberian Sea and Chukchi Sea slopes. Based on the seasonal changes in sympagic organic carbon derived from the data of the ice proxy (IP25) flux and pelagic biomarkers, such as highly branched isoprenoid trienes, epi-brassicasterol and dinosterol, a UIB was identified in summer 2018 on the East Siberian Sea slope. Compared to the nutrient distribution on the Chukchi Sea slope, the UIB on the East Siberian Sea slope might have been triggered by the nutrient supply. The estimated flux-weighted mean sympagic organic carbon value measured during the UIB period (May?August) was 1.04 mg m?2 d?1 on the East Siberian Sea slope, approximately five times greater than recorded that on the Chukchi Sea slope (0.23 mg m?2 d?1) during the same period. Our findings suggest that the importance of sea-ice algae as primary producers has increased as the UIB phenomenon has become more important in the Arctic Ocean and that sea-ice environments face changes due to Arctic warming.
URI
https://repository.kopri.re.kr/handle/201206/13437
DOI
http://dx.doi.org/10.1029/2021JC017914
Type
Article
Station
Araon
Indexed
SCIE
Appears in Collections  
2022-2022, Korea-Arctic Ocean Warming and Response of Ecosystem (22-22) / Yang, Eun Jin (PM22040)
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