4.8 Article

Glacial heterogeneity in Southern Ocean carbon storage abated by fast South Indian deglacial carbon release

Journal

NATURE COMMUNICATIONS
Volume 11, Issue 1, Pages -

Publisher

NATURE RESEARCH
DOI: 10.1038/s41467-020-20034-1

Keywords

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Funding

  1. Swiss National Science Foundation [PP00P2_144811, 200021_163003, PBEZP2_145695, PZ00P2_142424]
  2. Global Research Fellowship from the German Research Foundation (DFG) [GO 2294/2-1]
  3. Intermediate Staff Association of the University of Bern
  4. French Ministry of Research and Higher Education
  5. Swedish Research Council [VR-349-2012-6278]
  6. French National Institute of Sciences of the Universe at the French National Centre for Scientific Research
  7. Max Planck Society
  8. German Federal Ministry of Education and Research (BMBF), a Research for Sustainability initiative (FONA) through the PalMod project [01LP1919A]
  9. Swiss National Science Foundation (SNF) [PBEZP2_145695, 200021_163003, PZ00P2_142424] Funding Source: Swiss National Science Foundation (SNF)

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Past changes in ocean C-14 disequilibria have been suggested to reflect the Southern Ocean control on global exogenic carbon cycling. Yet, the volumetric extent of the glacial carbon pool and the deglacial mechanisms contributing to release remineralized carbon, particularly from regions with enhanced mixing today, remain insufficiently constrained. Here, we reconstruct the deglacial ventilation history of the South Indian upwelling hotspot near Kerguelen Island, using high-resolution C-14-dating of smaller-than-conventional foraminiferal samples and multi-proxy deep-ocean oxygen estimates. We find marked regional differences in Southern Ocean overturning with distinct South Indian fingerprints on (early de-)glacial atmospheric CO2 change. The dissipation of this heterogeneity commenced 14.6 kyr ago, signaling the onset of modern-like, strong South Indian Ocean upwelling, likely promoted by rejuvenated Atlantic overturning. Our findings highlight the South Indian Ocean's capacity to influence atmospheric CO2 levels and amplify the impacts of inter-hemispheric climate variability on global carbon cycling within centuries and millennia.

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