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New insights into the dynamics of the Atlantic Circulation

08.19.26 | MARUM - Center for Marine Environmental Sciences, University of Bremen
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The Atlantic Meridional Overturning Circulation (AMOC) distributes heat across the Atlantic – particularly in the Northern Hemisphere – like a conveyor belt, thereby influencing precipitation, sea ice, ecosystems, and the global carbon cycle. Researchers continue to debate the potential consequences of an abrupt weakening of the AMOC and whether such a weakening could be irreversible over the long term. “Until now, we have assumed that the AMOC was significantly weaker during the Heinrich Event and did not recover even over several thousand years. However, our data show that the overturning circulation was much more dynamic,” explains Dr. Stefan Mulitza of MARUM – Center for Marine Environmental Sciences at the University of Bremen, who led the study together with his Brazilian colleagues Dr. Partha Sarathi Jena and Dr. Cristiano Mazur Chiessi from the University of São Paulo. The study has now been published in Nature Communications .

Key insights came from sediment samples collected during an expedition off the coast of Brazil. Due to the exceptionally high local sedimentation rates – many particles settle on the ocean floor in a relatively short time – the team was able to recover about three meters of material deposited exclusively during the Heinrich Event. The Heinrich Event lasted about 2,000 to 3,000 years, “but until now we couldn’t say with certainty how stable the AMOC was during that period,” explains Chiessi. Radiocarbon dating of benthic foraminifera plays a key role here; these organisms serve as a particularly sensitive indicator of the residence time of bottom water masses and can thus be used to reconstruct the intensity of the Atlantic Meridional Overturning Circulation.

The analyses show that the Atlantic Meridional Overturning Circulation was by no means always in a weakened state during the Heinrich Event. In fact, the researchers were able to identify two periods during which the AMOC was significantly strengthened for several centuries. These periods had an impact on, among other things, tropical precipitation patterns and carbon storage in the ocean. “The exceptionally high temporal resolution of our data now makes it possible, for the first time, to identify the variability of the AMOC and its consequences on timescales of a few centuries,” says Mulitza.

The study provides important insights for better understanding the role of the AMOC in climate change throughout Earth’s recent history. A future weakening of the AMOC currently appears very likely. However, it is still unclear whether this weakening has already begun and whether it will occur abruptly.

Participating institutions:

MARUM produces fundamental scientific knowledge about the role of the ocean and the seafloor in the total Earth system. The dynamics of the oceans and the seabed significantly impact the entire Earth system through the interaction of geological, physical, biological and chemical processes. These influence both the climate and the global carbon cycle, resulting in the creation of unique biological systems. MARUM is committed to fundamental and unbiased research in the interests of society, the marine environment, and in accordance with the sustainability goals of the United Nations. It publishes its quality-assured scientific data to make it publicly available. MARUM informs the public about new discoveries in the marine environment and provides practical knowledge through its dialogue with society. MARUM cooperation with companies and industrial partners is carried out in accordance with its goal of protecting the marine environment.

Nature Communications

10.1038/s41467-026-73364-x

Centennial-scale intensifications of the Atlantic Meridional Overturning Circulation 1 during Heinrich Stadial 1.

19-May-2026

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Article Information

Contact Information

Ulrike Prange
MARUM - Center for Marine Environmental Sciences, University of Bremen
uprange@marum.de

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This article is based on a news release from MARUM - Center for Marine Environmental Sciences, University of Bremen. BrightSurf curates and republishes science news from research institutions worldwide; the original release is linked below.

How to Cite This Article

APA:
MARUM - Center for Marine Environmental Sciences, University of Bremen. (2026, August 19). New insights into the dynamics of the Atlantic Circulation. Brightsurf News. https://www.brightsurf.com/news/86Z0WN98/new-insights-into-the-dynamics-of-the-atlantic-circulation.html
MLA:
"New insights into the dynamics of the Atlantic Circulation." Brightsurf News, Aug. 19 2026, https://www.brightsurf.com/news/86Z0WN98/new-insights-into-the-dynamics-of-the-atlantic-circulation.html.