EGU21-8960, updated on 04 Mar 2021
https://doi.org/10.5194/egusphere-egu21-8960
EGU General Assembly 2021
© Author(s) 2021. This work is distributed under
the Creative Commons Attribution 4.0 License.

Effect of the Atlantic Meridional Overturning Circulation on atmospheric pCO2

Daan Boot1 and Henk Dijkstra1,2
Daan Boot and Henk Dijkstra
  • 1Utrecht University, IMAU, Physics, Netherlands (d.boot@uu.nl)
  • 2Center for Complex Systems Studies, Utrecht University, Utrecht, the Netherlands

The Atlantic Meridional Overturning Circulation (AMOC) plays an important role in regulating the climate of the Northern Hemisphere. Several studies have shown that the AMOC can be in two stable states under equal forcing. This bistability, and associated tipping behavior, has been suggested as a mechanism for climate transitions in the past such as the Dansgaard-Oescher events. The relationship between AMOC variability and that in atmospheric pCO2 concentration is still unclear since different studies provide  contradictory results. Here, we investigate this  relationship using the Simple Carbon Project Model v1.0 (SCP-M), which we extended to represent a suite of nonlinear  carbon cycle feedbacks. By implementing SCP-M in the continuation and bifurcation software AUTO-07p, we can efficiently explore the multi-dimensional parameter space to address the AMOC - pCO2 relationship while varying the strengths of the carbon cycle feedbacks. We do not find multiple equilibria in the carbon-cycle dynamics, with fixed AMOC, but there are  intrinsic oscillations due to Hopf bifurcations with multi-millennial periods. The mechanisms of  this variability,  related to biological production and to calcium carbonate compensation, will be presented and their relevance  is addressed. 

How to cite: Boot, D. and Dijkstra, H.: Effect of the Atlantic Meridional Overturning Circulation on atmospheric pCO2, EGU General Assembly 2021, online, 19–30 Apr 2021, EGU21-8960, https://doi.org/10.5194/egusphere-egu21-8960, 2021.

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