Missiaen, L.; Waelbroeck, C.; Pichat, S.; Jaccard, Samuel; Eynaud, Frederique; Greenop, Rossana; Burke, Andrea (2019). Improving North Atlantic Marine Core Chronologies Using 230Th Normalization. Paleoceanography and paleoclimatology, 34(7), pp. 1057-1073. American Geophysical Union 10.1029/2018PA003444
|
Text
Missiaen et al., 19.pdf - Published Version Available under License Creative Commons: Attribution-Noncommercial-No Derivative Works (CC-BY-NC-ND). Download (1MB) | Preview |
Producing independent and accurate chronologies for marine sediments is a prerequisite to understand the sequence of millennial‐scale events and reveal potential temporal offsets between marine and continental records, or between different marine records, possibly from different regions. The last 40 ky is a generally well‐constrained period since radiocarbon (14C) can be used as an absolute dating tool. However, in the northern North Atlantic, calendar ages cannot be directly derived from 14C ages, due to temporal and spatial variations of surface reservoir ages. Alternatively, chronologies can be derived by aligning Greenland ice‐core time series with marine surface records. Yet this approach suffers from the lack of clearly defined climatic events between 14.7 and 23.3 cal ky BP (hereafter ka), a crucial period encompassing Heinrich Stadial 1 and the onset of the last deglaciation. In this study, (i) we assess the benefits of 230Th normalization to refine the sedimentation history between surface temperature alignment tie points and (ii) revisit the chronologies of three North Atlantic marine records. Our study supports the contention that the marked increase in the Greenland Ca2+ record at 17.48 ka ± 0.21 ky (1σ) occurred within dating uncertainty of sea surface temperature cooling in the North Atlantic at the onset of Heinrich Stadial 1. This sharp feature might be useful for future chronostratigraphic alignments to remedy the lack of chronological constraint between 14.7 and 23.3 ka for North Atlantic marine records that are subject to large changes in 14C surface reservoir age.
Item Type: |
Journal Article (Original Article) |
---|---|
Division/Institute: |
08 Faculty of Science > Institute of Geological Sciences 10 Strategic Research Centers > Oeschger Centre for Climate Change Research (OCCR) |
UniBE Contributor: |
Jaccard, Samuel |
Subjects: |
500 Science > 550 Earth sciences & geology |
ISSN: |
0883-8305 |
Publisher: |
American Geophysical Union |
Language: |
English |
Submitter: |
Samuel Jaccard |
Date Deposited: |
31 Jul 2019 10:35 |
Last Modified: |
05 Dec 2022 15:29 |
Publisher DOI: |
10.1029/2018PA003444 |
BORIS DOI: |
10.7892/boris.131982 |
URI: |
https://boris.unibe.ch/id/eprint/131982 |