International audienceThe 3-dimensional forest model MAESTRO was used to simulate daily and annual photosynthesis and transpiration fluxes of forest stands and the sensitivity of these fluxes to potential changes in atmospheric CO2 concentration ([CO2]), temperature, water stress and phenology. The effects of possible feed-backs from increased leaf area and limitations to leaf nutrition were simulated by imposing changes in leaf area and nitrogen content. Two different tree species were considered: Picea sitchensis (Bong.) Carr., a conifer with long needle longevity and large leaf area, and Betula pendula Roth., a broad-leaved deciduous species with an open canopy and small leaf area. Canopy photosynthetic production in trees was predicted ...
Increasing atmospheric CO2 concentration has led to an increment in forest biomass because of both a...
Leaf responses to elevated atmospheric CO2 concentration (Ca) are central to models of forest CO2 ex...
Leaf responses to elevated atmospheric CO2 concentration (Ca) are central to models of forest CO2 ex...
The process-based simulation model STANDFLUX describes canopy water vapor and carbon dioxide exchang...
The global climate is a complex and constantly changing system. However, during the last decades, un...
Rising levels of atmospheric CO2 have often been reported to reduce plant water use. Such behavior i...
<p>Quantifying carbon fluxes and pools of forest ecosystems is an active research area in global cli...
Differences in canopy exchange of water and carbon dioxide that occur due to changes in tree structu...
The response of forests to climate change depends in part on whether the photosynthetic benefit from...
A modelling study is performed in order to quantify the relative effect of allowing for the physiol...
Thesis (Ph.D.)--University of Washington, 2019Vegetation modifies Earth's climate by controlling the...
Key message The change in forest productivity was simulated in six stands in Wallonia (Belgium) foll...
Increasing concentrations of atmospheric carbon dioxide (CO(2)) influence climate by suppressing can...
Abstract. The rising atmospheric concentration of carbon dioxide resulting from the burning of fossi...
Terrestrial ecosystems can act both as sinks and sources in the global carbon cycle. Forests are an ...
Increasing atmospheric CO2 concentration has led to an increment in forest biomass because of both a...
Leaf responses to elevated atmospheric CO2 concentration (Ca) are central to models of forest CO2 ex...
Leaf responses to elevated atmospheric CO2 concentration (Ca) are central to models of forest CO2 ex...
The process-based simulation model STANDFLUX describes canopy water vapor and carbon dioxide exchang...
The global climate is a complex and constantly changing system. However, during the last decades, un...
Rising levels of atmospheric CO2 have often been reported to reduce plant water use. Such behavior i...
<p>Quantifying carbon fluxes and pools of forest ecosystems is an active research area in global cli...
Differences in canopy exchange of water and carbon dioxide that occur due to changes in tree structu...
The response of forests to climate change depends in part on whether the photosynthetic benefit from...
A modelling study is performed in order to quantify the relative effect of allowing for the physiol...
Thesis (Ph.D.)--University of Washington, 2019Vegetation modifies Earth's climate by controlling the...
Key message The change in forest productivity was simulated in six stands in Wallonia (Belgium) foll...
Increasing concentrations of atmospheric carbon dioxide (CO(2)) influence climate by suppressing can...
Abstract. The rising atmospheric concentration of carbon dioxide resulting from the burning of fossi...
Terrestrial ecosystems can act both as sinks and sources in the global carbon cycle. Forests are an ...
Increasing atmospheric CO2 concentration has led to an increment in forest biomass because of both a...
Leaf responses to elevated atmospheric CO2 concentration (Ca) are central to models of forest CO2 ex...
Leaf responses to elevated atmospheric CO2 concentration (Ca) are central to models of forest CO2 ex...