Estimates of European uptake of CO2 inferred from GOSAT XCO2 retrievals: sensitivity to measurement bias inside and outside Europe
Item
Title (Dublin Core)
Estimates of European uptake of CO2 inferred from GOSAT XCO2 retrievals: sensitivity to measurement bias inside and outside Europe
Description (Dublin Core)
Estimates of the natural CO<sub>2</sub> flux over Europe inferred from in situ measurements of atmospheric CO<sub>2</sub> mole fraction have been used previously to check top-down flux estimates inferred from space-borne dry-air CO<sub>2</sub> column (X<sub>CO<sub>2</sub></sub>) retrievals. Several recent studies have shown that CO<sub>2</sub> fluxes inferred from X<sub>CO<sub>2</sub></sub> data from the Japanese Greenhouse gases Observing SATellite (GOSAT) and the Scanning Imaging Absorption Spectrometer for Atmospheric CHartographY (SCIAMACHY) have larger seasonal amplitudes and a more negative annual net CO<sub>2</sub> balance than those inferred from the in situ data. The cause of this elevated European uptake of CO<sub>2</sub> is still unclear, but some recent studies have suggested that this is a genuine scientific phenomenon. Here, we put forward an alternative hypothesis and show that realistic levels of bias in GOSAT data can result in an erroneous estimate of elevated uptake over Europe. We use a global flux inversion system to examine the relationship between measurement biases and estimates of CO<sub>2</sub> uptake from Europe. We establish a reference in situ inversion that uses an Ensemble Kalman Filter (EnKF) to assimilate conventional surface mole fraction observations and X<sub>CO<sub>2</sub></sub> retrievals from the surface-based Total Carbon Column Observing Network (TCCON). We use the same EnKF system to assimilate two independent versions of GOSAT X<sub>CO<sub>2</sub></sub> data. We find that the GOSAT-inferred European terrestrial biosphere uptake peaks during the summer, similar to the reference inversion, but the net annual flux is 1.40 ± 0.19 GtC a<sup>−1</sup> compared to a value of 0.58 ± 0.14 GtC a<sup>−1</sup> for our control inversion that uses only in situ data. To reconcile these two estimates, we perform a series of numerical experiments that assimilate observations with added biases or assimilate synthetic observations for which part or all of the GOSAT X<sub>CO<sub>2</sub></sub> data are replaced with model data. We find that for our global flux inversions, a large portion (60–90 %) of the elevated European uptake inferred from GOSAT data in 2010 is due to retrievals outside the immediate European region, while the remainder can largely be explained by a sub-ppm retrieval bias over Europe. We use a data assimilation approach to estimate monthly GOSAT X<sub>CO<sub>2</sub></sub> biases from the joint assimilation of in situ observations and GOSAT X<sub>CO<sub>2</sub></sub> retrievals. The inferred biases represent an estimate of systematic differences between GOSAT X<sub>CO<sub>2</sub></sub> retrievals and the inversion system at regional or sub-regional scales. We find that a monthly varying bias of up to 0.5 ppm can explain an overestimate of the annual sink of up to 0.20 GtC a<sup>−1</sup>. Our results highlight the sensitivity of CO<sub>2</sub> flux estimates to regional observation biases, which have not been fully characterized by the current observation network. Without further dedicated measurements we cannot prove or disprove that European ecosystems are taking up a larger-than-expected amount of CO<sub>2</sub>. More robust inversion systems are also needed to infer consistent fluxes from multiple observation types.
Creator (Dublin Core)
Feng, L.
Palmer, P. I.
Parker, R. J.
Deutscher, N. M.
Feist, D. G.
Kivi, R.
Morino, I.
Sussmann, R.
Date (Dublin Core)
2018-09-10
Type (Dublin Core)
Text
Format (Dublin Core)
application/pdf
Identifier (Dublin Core)
10.5194/acp-16-1289-2016
https://acp.copernicus.org/articles/16/1289/2016/
Source (Dublin Core)
eISSN: 1680-7324
Language (Dublin Core)
eng



