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  3. Expansion of Antarctic Bottom Water driven by Antarctic warming in the last deglaciation

Expansion of Antarctic Bottom Water driven by Antarctic warming in the last deglaciation

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DOI
10.48620/93574
Publisher DOI
10.1038/s41561-025-01853-7
Abstract
Past atmospheric CO2 fluctuations are thought to be intricately tied to ocean circulation changes involving Southern Ocean and North Atlantic dynamics. The ocean’s capability to store carbon has been linked to the expansion and contraction of southern-sourced waters, but their provenance and structure remain poorly characterized in the past. Here we present neodymium isotope data from the Weddell–Enderby Basin, placing constraints on the spatiotemporal distribution of Antarctic Bottom Water in the Atlantic and Indian sectors of the Southern Ocean over the past 32,000 years. Our data reveal that glacial Antarctic Bottom Water was substantially contracted, with large volumes of the deep Southern Ocean occupied by carbon-rich Circumpolar Deep Waters sourced from the Pacific Ocean, conducive for lowering atmospheric CO2. During the last deglaciation, Antarctic Bottom Water expanded in two steps coinciding with Antarctic warming. This expansion drove Southern Ocean destratification, which possibly contributed to contemporaneous atmospheric CO2 rises. Different from the view that the North Atlantic processes dominated deglacial deep South Atlantic water-mass changes, our results indicate only limited influence from northern-sourced waters. Instead, Antarctic Bottom Water dynamics played a critical role in regulating deep ocean circulation and thereby carbon exchange between the deep Southern Ocean and the atmosphere.
Date Issued
2025-12-01
Publication Type
Article
Subject(s)
500 Science > 550 Earth sciences & geology
500 Science > 530 Physics
Language(s)
en
Author(s)
Huang, Huang
Gutjahr, Marcus
Hu, Yuanyang
Pöppelmeier, Frerk  
Klima- und Umweltphysik (KUP) - Global Biogeochemical Modelling  
Klima- und Umweltphysik (KUP) - Earth System Modelling: Climate Dynamics  
Physics Institute, Climate and Environmental Physics  
Kuhn, Gerhard
Lippold, Jörg
Ronge, Thomas A.
Wu, Shuzhuang
Blaser, Patrick
Lembke-Jene, Lester
Jaccard, Samuel L.
Luo, Yimin
Yu, Jimin
Additional Credits
Physics Institute, Climate and Environmental Physics  
Klima- und Umweltphysik (KUP) - Earth System Modelling: Climate Dynamics  
Klima- und Umweltphysik (KUP) - Global Biogeochemical Modelling  
Journal
Nature Geoscience
Publisher
Nature Research
ISSN
1752-0894
1752-0908
Access(Rights)
restricted
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