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Thermal optimality of net ecosystem exchange of carbon dioxide and underlying mechanisms

Submitted by on Tue, 02/09/2014 - 12:32

TitleThermal optimality of net ecosystem exchange of carbon dioxide and underlying mechanisms
Publication TypeJournal Article
Year of Publication2012
AuthorsNiu S.L, Luo Y.Q, Fei S.F, Yuan W.P, Schimel D., Law B.E, Ammann C., Arain M.A, Arneth A., Aubinet M., Barr A., Beringer J., Bernhofer C., Black T.A, Buchmann N., Cescatti A., Chen J.Q, Davis K.J, Dellwik E., Desai A.R, Etzold S., Francois L., Gianelle D., Gielen B., Goldstein A., Groenendijk M., Gu L.H, Hanan N., Helfter C., Hirano T., Hollinger D.Y, Jones M.B, Kiely G., Kolb T.E, Kutsch W.L, Lafleur P., Lawrence D.M, Li L.H, Lindroth A., Litvak M., Loustau D., Lund M., Marek M., Martin T.A, Matteucci G., Migliavacca M., Montagnani L., Moors E., Munger J.W, Noormets A., Oechel W., Olejnik J., Kyaw T.PU, Pilegaard K., Rambal S., Raschi A., Scott R.L, Seufert G., Spano D., Stoy P., Sutton M.A, Varlagin A., Vesala T., Weng E.S, Wohlfahrt G., Yang B., Zhang Z.D, Zhou X.H
JournalNew Phytologist
Volume194
Issue3
Pagination775-783
Keywordsacclimation, climate, climate change, co2 fluxes, cycle feedback, european forests, optimum temperature, photosynthesis, ponderosa pine, responses, soil respiration, temperature acclimation, temperature adaptation, temperature-dependence, thermal optimality
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