Mean European Carbon Sink Over 2010-2015 Estimated by Simultaneous Assimilation of Atmospheric CO2, Soil Moisture, and Vegetation Optical Depth - INRAE - Institut national de recherche pour l’agriculture, l’alimentation et l’environnement Accéder directement au contenu
Article Dans Une Revue Geophysical Research Letters Année : 2019

Mean European Carbon Sink Over 2010-2015 Estimated by Simultaneous Assimilation of Atmospheric CO2, Soil Moisture, and Vegetation Optical Depth

M. Scholze
  • Fonction : Auteur
T. Kaminski
  • Fonction : Auteur
W. Knorr
  • Fonction : Auteur
M. Vossbeck
  • Fonction : Auteur
M. Wu
  • Fonction : Auteur
Yann H. Kerr
Arnaud Mialon

Résumé

The northern land biosphere is believed to be the main global sink of CO2, but the contribution of Europe is uncertain. While bottom-up estimates and inverse atmospheric transport studies based on atmospheric CO2 observed in situ or from space by OCO-2 point to a moderate rate of uptake, some other inversions based on remotely sensed atmospheric CO2 from GOSAT/SCIAMACHY and biomass estimates from passive microwave satellite data point to a large sink of around 1 Gt C/yr. We present results from combining both approaches in a data assimilation framework, inverting a biosphere model against in situ atmospheric CO2 and passive microwave measurements. When assimilating all observations, we estimate a European carbon sink of 0.303 +/- 0.083 Gt C/yr for 2010-2015. The result agrees with other bottom-up studies and atmospheric inversions using in situ CO2 or OCO-2 observations pointing to potential data problems when using observations from GOSAT or SCIAMACHY to estimate the European CO2 sink.
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hal-02622202 , version 1 (06-06-2024)

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M. Scholze, T. Kaminski, W. Knorr, M. Vossbeck, M. Wu, et al.. Mean European Carbon Sink Over 2010-2015 Estimated by Simultaneous Assimilation of Atmospheric CO2, Soil Moisture, and Vegetation Optical Depth. Geophysical Research Letters, 2019, 46 (13), pp.796-803. ⟨10.1029/2019GL085725⟩. ⟨hal-02622202⟩
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