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The North Atlantic Subpolar Gyre and Phytoplankton Bloom Under Potential Future Climate Scenarios

Oliver, Sophy ORCID: https://orcid.org/0000-0001-7217-1755; Yool, Andrew ORCID: https://orcid.org/0000-0002-9879-2776; de Mora, Lee ORCID: https://orcid.org/0000-0002-5080-3149; Kelly, Stephen ORCID: https://orcid.org/0000-0002-8966-5986; Liddicoat, Spencer K.; Loveridge, Alexandra; Smith, Robin S.; Popova, Ekaterina ORCID: https://orcid.org/0000-0002-2012-708X. 2026 The North Atlantic Subpolar Gyre and Phytoplankton Bloom Under Potential Future Climate Scenarios. Journal of Geophysical Research: Oceans, 131 (7). 10.1029/2025JC023561

Abstract

The North Atlantic phytoplankton bloom (NAB) forms the base of the food web upon which marine ecosystem services throughout the northern North Atlantic rely. The NAB's nutrient supply is predominantly driven by deep winter mixing, which is most pronounced in the subpolar gyre where it has been projected to abruptly decline within the next few decades. Here we use idealized experiments with an Earth system model to investigate how mixed layer depth, surface nutrients and chlorophyll concentrations over the gyre may respond to positive carbon emissions followed by both zero and negative emissions mitigation efforts initiated at various Global Warming Levels (GWLs). Results show a decline in all three variables during positive emissions, with the warmer the GWL the less likely the prospect of recovery back to pre-industrial conditions. In the scenario where carbon emissions are held at zero once reaching a GWL of 1.5°C, the NAB started to recover toward preindustrial conditions. However, zero emissions after 2.5°C and warmer showed a continued decline in the NAB. These results suggest a tipping threshold may lie between 1.5 and 2.5°C GWL, beyond which only negative emissions can achieve recovery of the NAB. Even in the lowest warming scenario examined, 1.5°C, recovery of the NAB did not occur within 5 centuries under zero emissions, nor did it occur within one century under negative emissions.

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Programmes:
Research Groups > Global Climate
NOC Research Groups 2025 > Global Climate
NOC Mission Networks > Biodiversity
NOC Mission Networks > Climate
Research Groups > Ocean Modelling
NOC Research Groups 2025 > Ocean Modelling
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