Title of article
Seasonality of ecosystem respiration and gross primary production as derived from FLUXNET measurements
Author/Authors
Eva Falge، نويسنده , , Dennis Baldocchi، نويسنده , , John Tenhunen، نويسنده , , Marc Aubinet، نويسنده , , Peter Bakwin، نويسنده , , Paul Berbigier، نويسنده , , CHRISTIAN BERNHOFER، نويسنده , , George Burba، نويسنده , , Robert Clément، نويسنده , , Kenneth J Davis، نويسنده , , Jan A Elbers، نويسنده , , Allen H Goldstein، نويسنده , , By ACHIM GRELLE، نويسنده , , André Granier، نويسنده , , J?n Gu?mundsson، نويسنده , , David Hollinger، نويسنده , , Andrew S. Kowalski، نويسنده , , Gabriel Katul، نويسنده , , BEVERLY E. LAW، نويسنده , , Yadvinder Malhi، نويسنده , , et al.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2002
Pages
22
From page
53
To page
74
Abstract
Differences in the seasonal pattern of assimilatory and respiratory processes are responsible for divergences in seasonal net carbon exchange among ecosystems. Using FLUXNET data (http://www.eosdis.ornl.gov/FLUXNET) we have analyzed seasonal patterns of gross primary productivity (FGPP), and ecosystem respiration (FRE) of boreal and temperate, deciduous and coniferous forests, Mediterranean evergreen systems, a rainforest, temperate grasslands, and C3 and C4 crops. Based on generalized seasonal patterns classifications of ecosystems into vegetation functional types can be evaluated for use in global productivity and climate change models. The results of this study contribute to our understanding of respiratory costs of assimilated carbon in various ecosystems.
Seasonal variability of FGPP and FRE of the investigated sites increased in the order View the MathML source. Together with the boreal forest sites, the managed grasslands and crops show the largest seasonal variability. In the temperate coniferous forests, seasonal patterns of FGPP and FRE are in phase, in the temperate deciduous and boreal coniferous forests FRE was delayed compared to FGPP, resulting in the greatest imbalance between respiratory and assimilatory fluxes early in the growing season.
FGPP adjusted for the length of the carbon uptake period decreased at the sampling sites across functional types in the order C4 crops, temperate and boreal deciduous forests View the MathML source conifers, C3 grassland and crops View the MathML source conifers (4.6 g C m−2 per day). Annual FGPP and net ecosystem productivity (FNEP) decreased across climate zones in the order tropical>temperate>boreal. However, the decrease in FNEP with latitude was greater than the decrease in FGPP, indicating a larger contribution of respiratory (especially heterotrophic) processes in boreal systems.
Keywords
Gross primary production , Ecosystem respiration , EUROFLUX , Eddy covariance , Season length , AmeriFlux , FLUXNET
Journal title
Agricultural and Forest Meteorology
Serial Year
2002
Journal title
Agricultural and Forest Meteorology
Record number
959215
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