Please use this identifier to cite or link to this item: http://hdl.handle.net/2381/36648
Title: An outlook on the Sub-Saharan Africa carbon balance
Authors: Bombelli, A.
Henry, M.
Castaldi, S.
Adu-Bredu, S.
Arneth, A.
de Grandcourt, A.
Grieco, E.
Kutsch, W. L.
Lehsten, V.
Rasile, A.
Reichstein, M.
Tansey, Kevin James
Weber, U.
Valentini, R.
First Published: 15-Oct-2009
Publisher: Copernicus Gesellschaft Mbh
Citation: Biogeosciences, 2009, 6 (10), pp. 2193-2205 (13)
Abstract: This study gives an outlook on the carbon balance of Sub-Saharan Africa (SSA) by presenting a summary of currently available results from the project CarboAfrica (namely net ecosystem productivity and emissions from fires, deforestation and forest degradation, by field and model estimates) supplemented by bibliographic data and compared with a new synthesis of the data from national communications to UNFCCC. According to these preliminary estimates the biogenic carbon balance of SSA varies from 0.16 Pg C y[Superscript: −1] to a much higher sink of 1.00 Pg C y[Superscript: −1] (depending on the source data). Models estimates would give an unrealistic sink of 3.23 Pg C y[Superscript: −1], confirming their current inadequacy when applied to Africa. The carbon uptake by forests and savannas (0.34 and 1.89 Pg C y[Superscript: −1], respectively,) are the main contributors to the resulting sink. Fires (0.72 Pg C y[Superscript: −1]) and deforestation (0.25 Pg C y[Superscript: −1]) are the main contributors to the SSA carbon emissions, while the agricultural sector and forest degradation contributes only with 0.12 and 0.08 Pg C y[Superscript: −1], respectively. Savannas play a major role in shaping the SSA carbon balance, due to their large extension, their fire regime, and their strong interannual NEP variability, but they are also a major uncertainty in the overall budget. Even if fossil fuel emissions from SSA are relative low, they can be crucial in defining the sign of the overall SSA carbon balance by reducing the natural sink potential, especially in the future. This paper shows that Africa plays a key role in the global carbon cycle system and probably could have a potential for carbon sequestration higher than expected, even if still highly uncertain. Further investigations are needed, particularly to better address the role of savannas and tropical forests and to improve biogeochemical models. The CarboAfrica network of carbon measurements could provide future unique data sets for better estimating the African carbon balance.
DOI Link: 10.5194/bg-6-2193-2009
ISSN: 1726-4170
eISSN: 1726-4189
Links: http://www.biogeosciences.net/6/2193/2009/
http://hdl.handle.net/2381/36648
Version: Publisher Version
Status: Peer-reviewed
Type: Journal Article
Rights: Copyright © Author(s) 2009. This work is distributed under the Creative Commons Attribution 3.0 License ( http://creativecommons.org/licenses/by/3.0/ ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
Appears in Collections:Published Articles, Dept. of Geography

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