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Upscaling Wetland Methane Emissions From the FLUXNET-CH4 Eddy Covariance Network (UpCH4 v1.0): Model Development, Network Assessment, and Budget Comparison

McNicol, G; Fluet-Chouinard, E; Ouyang, ZT; Knox, S; Zhang, Z; Aalto, T; Bansal, S; Chang, KY; Chen, M; Delwiche, K; Feron, S; Goeckede, M; Liu, JX; Malhotra, A; Melton, JR; Riley, W; Vargas, R; Yuan, KXJ; Ying, Q; Zhu, Q; Alekseychik, P; Aurela, M; Billesbach, DP; Campbell, DI; Chen, JQ; Chu, HS; Desai, AR; Euskirchen, E; Goodrich, J; Griffis, T; Helbig, M; Hirano, T; Iwata, H; Jurasinski, G; King, J; Koebsch, F; Kolka, R; Krauss, K; Lohila, A; Mammarella, I; Nilson, M; Noormets, A; Oechel, W; Peichl, M; Sachs, T; Sakabe, A; Schulze, C; Sonnentag, O; Sullivan, RC; Tuittila, ES; Ueyama, M; Vesala, T; Ward, E; Wille, C; Wong, GX; Zona, D; Windham-Myers, L; Poulter, B; Jackson, RB

McNicol, G; Fluet-Chouinard, E (通讯作者),Stanford Univ, Dept Earth Syst Sci, Stanford, CA 94305 USA.;McNicol, G (通讯作者),Univ Illinois, Chicago, IL 60607 USA.;Fluet-Chouinard, E (通讯作者),Swiss Fed Inst Technol, Inst Atmospher & Climate Sci, Dept Environm Syst Sci, Zurich, Switzerland.

AGU ADVANCES, 2023; 4 (5):

Abstract

Wetlands are responsible for 20%-31% of global methane (CH4) emissions and account for a large source of uncertainty in the global CH4 budget. Data-dr......

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