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Interannual variability of net ecosystem productivity in forests is explained by carbon flux phenology in autumn
Authors:Chaoyang Wu  Jing M Chen  T Andrew Black  David T Price  Werner A Kurz  Ankur R Desai  Alemu Gonsamo  Rachhpal S Jassal  Christopher M Gough  Gil Bohrer  Danilo Dragoni  Mathias Herbst  Bert Gielen  Frank Berninger  Timo Vesala  Ivan Mammarella  Kim Pilegaard  Peter D Blanken
Institution:1. Department of Geography and Program in Planning, University of Toronto, , Toronto, ON Canada;2. Faculty of Land and Food Systems, University of British Columbia, , Vancouver, BC, Canada;3. Natural Resources Canada, Canadian Forest Service, , Edmonton, AB, Canada;4. Natural Resources Canada, Canadian Forest Service‐Pacific Forestry Centre, , Victoria, BC, Canada;5. Department of Atmospheric and Oceanic Sciences, University of Wisconsin‐Madison, , Madison, WI, USA;6. Department of Biology, Virginia Commonwealth University, , Richmond, VA, USA;7. Department of Civil, Environmental and Geodetic Engineering, The Ohio State University, , Columbus, OH, USA;8. Department of Geography, Indiana University, , Bloomington, IN, USA;9. Department of Bioclimatology, G?ttingen University, , 37077 G?ttingen, Germany;10. University of Antwerp, Research Group Plant and Vegetation Ecology, , 2610 Wilrijk, Belgium;11. Department of Forest Sciences, University of Helsinki, , 00014 Finland;12. Department of Physics, University of Helsinki, , 00014 Helsinki, Finland;13. Department of Chemical and Biochemical Engineering, Technical University of Denmark (DTU), , 2800 Kgs. Lyngby, Denmark;14. Department of Geography, University of Colorado, , Boulder, CO, 80309‐0260 USA
Abstract:
Keywords:Carbon cycle  ecosystem respiration  forest  gross primary productivity  net carbon exchange  phenology
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