Deglacial Subantarctic CO<sub>2</sub> outgassing driven by a weakened solubility pump.

Dai, Yuhao; Yu, Jimin; Ren, Haojia; Ji, Xuan · Nat Commun · 2022

basic_science · Level V

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Abstract

The Subantarctic Southern Ocean has long been thought to be an important contributor to increases in atmospheric carbon dioxide partial pressure (pCO<sub>2</sub>) during glacial-interglacial transitions. Extensive studies suggest that a weakened biological pump, a process associated with nutrient utilization efficiency, drove up surface-water pCO<sub>2</sub> in this region during deglaciations. By contrast, regional influences of the solubility pump, a process mainly linked to temperature variations, have been largely overlooked. Here, we evaluate relative roles of the biological and solubility pumps in determining surface-water pCO<sub>2</sub> variabilities in the Subantarctic Southern Ocean during the last deglaciation, based on paired reconstructions of surface-water pCO<sub>2</sub>, temperature, and nutrient utilization efficiency. We show that compared to the biological pump, the solubility pump imposed a strong impact on deglacial Subantarctic surface-water pCO<sub>2</sub> variabilities. Our findings therefore reveal a previously underappreciated role of the solubility pump in modulating deglacial Subantarctic CO<sub>2</sub> release and possibly past atmospheric pCO<sub>2</sub> fluctuations.

Medical subject headings