Past terrestrial hydroclimate sensitivity controlled by Earth system feedbacks.

Feng, Ran; Bhattacharya, Tripti; Otto-Bliesner, Bette L; Brady, Esther C; Haywood, Alan M; Tindall, Julia C; Hunter, Stephen J; Abe-Ouchi, Ayako et al. · Nat Commun · 2022

basic_science · Level V

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Abstract

Despite tectonic conditions and atmospheric CO<sub>2</sub> levels (pCO<sub>2</sub>) similar to those of present-day, geological reconstructions from the mid-Pliocene (3.3-3.0 Ma) document high lake levels in the Sahel and mesic conditions in subtropical Eurasia, suggesting drastic reorganizations of subtropical terrestrial hydroclimate during this interval. Here, using a compilation of proxy data and multi-model paleoclimate simulations, we show that the mid-Pliocene hydroclimate state is not driven by direct CO<sub>2</sub> radiative forcing but by a loss of northern high-latitude ice sheets and continental greening. These ice sheet and vegetation changes are long-term Earth system feedbacks to elevated pCO<sub>2</sub>. Further, the moist conditions in the Sahel and subtropical Eurasia during the mid-Pliocene are a product of enhanced tropospheric humidity and a stationary wave response to the surface warming pattern, which varies strongly with land cover changes. These findings highlight the potential for amplified terrestrial hydroclimate responses over long timescales to a sustained CO<sub>2</sub> forcing.

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