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Water mass analysis of effect of climate change on air-sea CO 2 fluxes: The Southern Ocean

  • Roland Séférian
  • , Daniele Iudicone
  • , Laurent Bopp
  • , Tilla Roy
  • , Gurvan Madec
  • UVSQ
  • Météo-France/CNRS
  • Stazione Zoologica “Anton Dohrn”
  • UPMC
  • NOC

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

Impacts of climate change on air-sea CO 2 exchange are strongly region dependent, particularly in the Southern Ocean. Yet, in the Southern Ocean the role of water masses in the uptake of anthropogenic carbon is still debated. Here, a methodology is applied that tracks the carbon flux of each Southern Ocean water mass in response to climate change. A global marine biogeochemical model was coupled to a climate model, making 140-yr Coupled Model Intercomparison Project phase 5 (CMIP5)-type simulations, where atmospheric CO 2 increased by 1% yr -1 to 4 times the preindustrial concentration (4 × CO 2). Impacts of atmospheric CO 2 (carbon-induced sensitivity) and climate change (climate-induced sensitivity) on the water mass carbon fluxes have been isolated performing two sensitivity simulations. In the first simulation, the atmospheric CO 2 influences solely the marine carbon cycle, while in the second simulation, it influences both the marine carbon cycle and earth's climate. At 4 × CO 2, the cumulative carbon uptake by the Southern Ocean reaches 278 PgC, 53% of which is taken up by modal and intermediate water masses. The carbon-induced and climate-induced sensitivities vary significantly between the water masses. The carbon-induced sensitivities enhance the carbon uptake of the water masses, particularly for the denser classes. But, enhancement strongly depends on the water mass structure. The climate-induced sensitivities either strengthen or weaken the carbon uptake and are influenced by local processes through changes in CO 2 solubility and stratification, and by large-scale changes in outcrop surface (OS) areas. Changes in OS areas account for 45% of the climateinduced reduction in the Southern Ocean carbon uptake and are a key factor in understanding the future carbon uptake of the Southern Ocean.

langue originaleAnglais
Pages (de - à)3894-3908
Nombre de pages15
journalJournal of Climate
Volume25
Numéro de publication11
Les DOIs
étatPublié - 1 juin 2012
Modification externeOui

SDG des Nations Unies

Ce résultat contribue à ou aux Objectifs de développement durable suivants

  1. SDG 13 - Action climatique
    SDG 13 Action climatique
  2. SDG 14 - Vie sous l’eau
    SDG 14 Vie sous l’eau

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