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  Contrasting effects of CO2 fertilisation, land-use change and warming on seasonal amplitude of northern hemisphere CO2 exchange

Bastos, A., Ciais, P., Chevallier, F., Rödenbeck, C., Ballantyne, A. P., Maignan, F., et al. (2019). Contrasting effects of CO2 fertilisation, land-use change and warming on seasonal amplitude of northern hemisphere CO2 exchange. Atmospheric Chemistry and Physics, 19(19), 12361-12375. doi:10.5194/acp-19-12361-2019.

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http://dx.doi.org/10.5194/acp-19-12361-2019 (Publisher version)
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 Creators:
Bastos, Ana1, Author           
Ciais, Philippe, Author
Chevallier, Frédéric, Author
Rödenbeck, Christian2, Author           
Ballantyne, Ashley P., Author
Maignan, Fabienne, Author
Yin, Yi, Author
Fernandez-Martinez, Marcos, Author
Friedlingstein, Pierre, Author
Peñuelas, Josep, Author
Piao, Shilong L., Author
Sitch, Stephen, Author
Smith, William K., Author
Wang, Xuhui, Author
Zhu, Zaichun, Author
Haverd, Vanessa, Author
Kato, Etsushi, Author
Jain, Atul K., Author
Lienert, Sebastian, Author
Lombardozzi, Danica, Author
Nabel, Julia E. M. S.1, Author           Peylin, Philippe, AuthorPoulter, Ben, AuthorZhu, Dan, Author more..
Affiliations:
1External Organizations, ou_persistent22              
2Inverse Data-driven Estimation, Dr. C. Rödenbeck, Department Biogeochemical Systems, Prof. M. Heimann, Max Planck Institute for Biogeochemistry, Max Planck Society, ou_1497785              

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 Abstract: Continuous atmospheric CO2 monitoring data indicate an increase in seasonal-cycle amplitude (SCA) of CO2 exchange in northern high latitudes. The major drivers of enhanced SCA remain unclear and intensely debated with land-use change, CO2 fertilization and warming identified as likely contributors. We integrated CO2-flux data from two atmospheric inversions (consistent with atmospheric records) and from and 11 state-of-the-art land-surface models (LSMs) to evaluate the relative importance of individual contributors to trends and drivers of the SCA of CO2-fluxes for 1980−2015. The LSMs generally reproduce the latitudinal increase in SCA trends within the inversions range. Inversions and LSMs attribute SCA increase to boreal Asia and Europe due to enhanced vegetation productivity (in LSMs) and point to contrasting effects of CO2 fertilisation (positive) and warming (negative) on SCA. Our results do not support land-use change as a key contributor to the increase in SCA. The sensitivity of simulated microbial respiration to temperature in LSMs explained biases in SCA trends, which suggests SCA could help to constrain model turnover times.

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 Dates: 2019-09-022019-10-072019
 Publication Status: Issued
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 Identifiers: Other: BGC3043
DOI: 10.5194/acp-19-12361-2019
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Title: Atmospheric Chemistry and Physics
  Abbreviation : ACP
Source Genre: Journal
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Publ. Info: Göttingen : Copernicus Publications
Pages: - Volume / Issue: 19 (19) Sequence Number: - Start / End Page: 12361 - 12375 Identifier: ISSN: 1680-7316
CoNE: https://pure.mpg.de/cone/journals/resource/111030403014016