Long‐Term Slowdown of Ocean Carbon Uptake by Alkalinity Dynamics

Author:

Chikamoto Megumi O.12ORCID,DiNezio Pedro3,Lovenduski Nicole34ORCID

Affiliation:

1. Institute for Geophysics University of Texas Austin TX USA

2. Department of Plants, Soils, and Climate Utah State University Logan UT USA

3. Department of Atmospheric and Oceanic Sciences University of Colorado Boulder CO USA

4. Institute of Arctic and Alpine Research University of Colorado Boulder CO USA

Abstract

AbstractOceanic absorption of atmospheric carbon dioxide (CO2) is expected to slow down under increasing anthropogenic emissions; however, the driving mechanisms and rates of change remain uncertain, limiting our ability to project long‐term changes in climate. Using an Earth system simulation, we show that the uptake of anthropogenic carbon will slow in the next three centuries via reductions in surface alkalinity. Warming and associated changes in precipitation and evaporation intensify density stratification of the upper ocean, inhibiting the transport of alkaline water from the deep. The effect of these changes is amplified threefold by reduced carbonate buffering, making alkalinity a dominant control on CO2 uptake on multi‐century timescales. Our simulation reveals a previously unknown alkalinity‐climate feedback loop, amplifying multi‐century warming under high emission trajectories.

Funder

Center for Hierarchical Manufacturing, National Science Foundation

National Science Foundation

Publisher

American Geophysical Union (AGU)

Subject

General Earth and Planetary Sciences,Geophysics

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