Southern Ocean CO2 outgassing and nutrient load reduced by a well-ventilated glacial North Pacific

M Madison G. Shankle G Graeme A. MacGilchrist W William R. Gray C Casimir de Lavergne L Laurie C. Menviel A Andrea Burke (School of Earth and Environmental Sciences, University of St Andrews) J James W. B. Rae

Abstract

Abstract Southern Ocean biogeochemistry impacts global nutrient distributions, carbon cycling, and climate, motivating study of its underlying controls across different climate states. Today, poorly-ventilated North Pacific waters supply the majority of carbon and nutrients upwelling in the Southern Ocean, outpacing biological carbon uptake and fueling CO 2 outgassing. Reducing this supply is both central to glacial CO 2 theories involving reduced outgassing and well-supported by paleo-proxy reconstructions. While past studies emphasize physical processes (reduced upwelling, enhanced stratification), we propose a complementary mechanism where the carbon/nutrient load of waters feeding the Southern Ocean surface is reduced remotely, prior to being upwelled. Comparing glacial North Pacific and Southern Ocean proxy records, alongside Earth System Model simulations, we show that ventilating the glacial North Pacific reduces the carbon/nutrient content of waters supplying the Southern Ocean surface and Subantarctic CO 2 outgassing. This highlights an interhemispheric influence on Southern Ocean biogeochemical conditions that could modulate glacial-interglacial CO 2 variability.

Article Details

Volume / Issue Vol. 16, Issue 1
Published September 17, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (7)

M

Madison G. Shankle

G

Graeme A. MacGilchrist

W

William R. Gray

C

Casimir de Lavergne

L

Laurie C. Menviel

A

Andrea Burke

School of Earth and Environmental Sciences, University of St Andrews

J

James W. B. Rae