Enhanced carbon loss in the Southern Ocean under mitigation scenarios
- Huiji Lee
- Jong-Seong Kug
- Yechul Shin
- Dong-Geon Lee
- Nadine Goris
- Friederike Fröb
- Jerry F. Tjiputra
- Timothée Bourgeois
- Jörg Schwinger
2026-09-02
The Southern Ocean (SO) plays a pivotal role in the global carbon cycle by absorbing anthropogenic carbon dioxide (CO 2 ). Yet, it remains uncertain whether this role will persist under future mitigation efforts. Using idealized emission-driven simulations with the Community Earth System Model version 2 (CESM2), we find that the SO transitions from net CO 2 sink to a substantial source during zero- and negative-emission phases. This outgassing stems from a persistent regional increase in sea surface temperature and a globally uniform decline in surface alkalinity. Together, these changes maintain elevated oceanic partial pressure of CO 2 ( P co 2 ) despite decreasing atmospheric CO 2 , reversing the air-sea P co 2 gradient ( d P co 2 ). Moreover, the SO exhibits a high climatological gas-transfer coefficient, primarily driven by the region’s strong wind speeds and high CO 2 solubility, which amplifies the d P co 2 -driven flux and enhances CO 2 outgassing. These results indicate that the present-day SO CO 2 sink may lose its effectiveness during climate mitigation, emphasizing the need to consider regional feedbacks for long-term climate policy effectiveness.