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Millennial-scale oscillations and an environmental regime shift around the Middle to Late Holocene transition in the North Atlantic region based on a multiproxy record from Isfjorden, West Spitsbergen

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Title
Millennial-scale oscillations and an environmental regime shift around the Middle to Late Holocene transition in the North Atlantic region based on a multiproxy record from Isfjorden, West Spitsbergen
Other Titles
서 스피츠베르겐 이스피오로드로부 다중 프록시 기반 북대서양 지역에서 중기-후기 홀로세 전이 기간 동안 천년주기 변동 및 환경영역 이동
Authors
CAMILLE BRICE
de Vernal A.
Francus P.
Forwick M.
Nam, Seung-il
Keywords
DinocystsFjordHoloceneNorth Atlantic DriftSea-ice cover
Issue Date
2023
Citation
CAMILLE BRICE, et al. 2023. "Millennial-scale oscillations and an environmental regime shift around the Middle to Late Holocene transition in the North Atlantic region based on a multiproxy record from Isfjorden, West Spitsbergen". BOREAS, 52(1): 42-59.
Abstract
Palynological and sedimentological analyses were performed in the sediment core HH16-1205-GC retrieved from the central Isfjorden, West Spitsbergen. The sequence, that spans the last 7000 years, revealed an overall cooling trend with an important climate shift between 4.4 and 3.8 cal. ka BP, in addition to millennial-scale oscillations. Sea-surface reconstruction from dinocyst assemblages indicates a decrease in summer sea-surface temperature, from 2.5 to 1.5 °C, and primary productivity, from 750 to 650 gC m-² a-1 over the last 7000 years. From around 6.8 to 5.8 cal. ka BP, the sedimentological and palynological data suggest predominant sediment supply from the inner part of the fjord, ice rafting, dense sea-ice cover, strongly stratified water masses, and high primary productivity. The interval from 4.4 to 3.8 cal. ka BP is marked by a layer of coarser material and a significant decrease in the grain size mode. Our geochemical data show large-amplitude fluctuations after 2.0 cal. ka BP, while an increase of the dinocysts Impagidinium pallidum and Spiniferites elongatus from 2.0 to 1.2 cal. ka BP suggests enhanced Atlantic Water inflow. The dinocyst-based reconstructions also reveal large-amplitude millennial fluctuations in sea-ice cover, summer sea-surface temperature, and salinity. Wavelet analysis and cross-wavelet analysis on K/Ti ratio coupled with sea-ice estimates confirm a strong signal with a periodicity of 1200 to 1500 years.
URI
https://repository.kopri.re.kr/handle/201206/14282
DOI
http://dx.doi.org/10.1111/bor.12602
Type
Article
Station
기타(RV Helmer Hassen)
Indexed
SCIE
Appears in Collections  
2022-2022, Vulnerability and resilience of the Arctic Svalbard to climate variability (22-22) / Nam, Seung-il (PN22013)
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