The imprint of surface fluxes and transport on variations in total column carbon dioxide

New observations of the vertically integrated CO₂ mixing ratio, (CO₂), from ground-based remote sensing show that variations in (CO₂) are primarily determined by large-scale flux patterns. They therefore provide fundamentally different information than observations made within the boundary layer, which reflect the combined influence of large-scale and local fluxes. Observations of both (CO₂) and CO₂ concentrations in the free troposphere show that large-scale spatial gradients induce synoptic-scale temporal variations in (CO₂) in the Northern Hemisphere midlatitudes through horizontal advection. Rather than obscure the signature of surface fluxes on atmospheric CO₂, these synoptic-scale variations provide useful information that can be used to reveal the meridional flux distribution. We estimate the meridional gradient in (CO₂) from covariations in (CO₂) and potential temperature, θ, a dynamical tracer, on synoptic timescales to evaluate surface flux estimates commonly used in carbon cycle models. We find that simulations using Carnegie Ames Stanford Approach (CASA) biospheric fluxes underestimate both the (CO₂) seasonal cycle amplitude throughout the Northern Hemisphere midlatitudes and the meridional gradient during the growing season. Simulations using CASA net ecosystem exchange (NEE) with increased and phase-shifted boreal fluxes better fit the observations. Our simulations suggest that climatological mean CASA fluxes underestimate boreal growing season NEE (between 45-65° N) by ~40%. We describe the implications for this large seasonal exchange on inference of the net Northern Hemisphere terrestrial carbon sink.

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Copyright Author(s) 2012. This work is distributed under the Creative Commons Attribution 3.0 License.


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Author Keppel-Aleks, G.
Wennberg, P.
Washenfelder, R.
Wunch, D.
Schneider, T.
Toon, G.
Andres, R.
Blavier, J.
Connor, B.
Davis, K.
Desai, A.
Messerschmidt, J.
Notholt, J.
Roehl, C.
Sherlock, V.
Stephens, Britton
Vay, S.
Wofsy, S.
Publisher UCAR/NCAR - Library
Publication Date 2012-03-01T00:00:00
Digital Object Identifier (DOI) Not Assigned
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Resource Version N/A
Topic Category geoscientificInformation
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Metadata Date 2025-07-15T21:36:53.829794
Metadata Record Identifier edu.ucar.opensky::articles:12025
Metadata Language eng; USA
Suggested Citation Keppel-Aleks, G., Wennberg, P., Washenfelder, R., Wunch, D., Schneider, T., Toon, G., Andres, R., Blavier, J., Connor, B., Davis, K., Desai, A., Messerschmidt, J., Notholt, J., Roehl, C., Sherlock, V., Stephens, Britton, Vay, S., Wofsy, S.. (2012). The imprint of surface fluxes and transport on variations in total column carbon dioxide. UCAR/NCAR - Library. https://n2t.org/ark:/85065/d7c53mj1. Accessed 01 August 2025.

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