Inferring CO 2 fertilization effect based on global monitoring land-atmosphere exchange with a theoretical model

Rising atmospheric CO 2 concentration ([CO 2 ]) enhances photosynthesis and reduces transpiration at the leaf, ecosystem, and global scale via the CO 2 fertilization effect. The CO 2 fertilization effect is among the most important processes for predicting the terrestrial carbon budget and future cl...

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Veröffentlicht in:Environmental research letters 2020-08, Vol.15 (8), p.84009
Hauptverfasser: Ueyama, Masahito, Ichii, Kazuhito, Kobayashi, Hideki, Kumagai, Tomo’omi, Beringer, Jason, Merbold, Lutz, Euskirchen, Eugénie S, Hirano, Takashi, Marchesini, Luca Belelli, Baldocchi, Dennis, Saitoh, Taku M, Mizoguchi, Yasuko, Ono, Keisuke, Kim, Joon, Varlagin, Andrej, Kang, Minseok, Shimizu, Takanori, Kosugi, Yoshiko, Bret-Harte, M Syndonia, Machimura, Takashi, Matsuura, Yojiro, Ohta, Takeshi, Takagi, Kentaro, Takanashi, Satoru, Yasuda, Yukio
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Sprache:eng
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