AbstractClimatic changes and elevated atmospheric CO2 concentrations will affect crop growth and production in the near future. Rising CO2 concentration is a novel environmental aspect that should be considered when projections for future agricultural productivity are made. In addition to a reducing effect on stomatal conductance and crop transpiration, elevated CO2 concentration can stimulate crop production. The magnitude of this stimulatory effect (‘CO2 fertilization’) is subject of discussion. In this study, different calculation procedures of the generic crop model AquaCrop based on a foregoing theoretical framework and a meta-analysis of field responses, respectively, were evaluated against experimental data of free air CO2 enrichment...
Elevated atmospheric CO2 concentrations ([CO2]) cause direct changes in crop physiological processes...
Rising atmospheric carbon dioxide concentrations are expected to enhance photosynthesis and reduce c...
Model projections suggest that although increased temperature and decreased soil moisture will act t...
Climatic changes and elevated atmospheric CO2 concentrations will affect crop growth and production ...
AbstractClimatic changes and elevated atmospheric CO2 concentrations will affect crop growth and pro...
Background - Process-based ecophysiological crop models are pivotal in assessing responses of crop p...
Climate change will affect crop growth and agricultural production worldwide. Crop production will b...
Conference: International Crop Modelling Symposium on Crop Modelling for Agriculture and Food Securi...
International audiencePlant responses to rising atmospheric carbon dioxide (CO2) concentrations, tog...
Several crop models may be used to simulate the effects of elevated CO2 on crop productivity. Yet no...
Several crop models may be used to simulate the effects of elevated CO2 on crop productivity. Yet no...
The anthropogenic increases in CO2 atmospheric concentrations are expected to lead to multiple and p...
AbstractA soil–crop–environment model was used to describe the combined effects of atmospheric carbo...
Rising atmospheric CO2 concentrations ([CO2 ]) are expected to enhance photosynthesis and reduce cro...
Elevated atmospheric CO2 concentrations ([CO2]) cause direct changes in crop physiological processes...
Rising atmospheric carbon dioxide concentrations are expected to enhance photosynthesis and reduce c...
Model projections suggest that although increased temperature and decreased soil moisture will act t...
Climatic changes and elevated atmospheric CO2 concentrations will affect crop growth and production ...
AbstractClimatic changes and elevated atmospheric CO2 concentrations will affect crop growth and pro...
Background - Process-based ecophysiological crop models are pivotal in assessing responses of crop p...
Climate change will affect crop growth and agricultural production worldwide. Crop production will b...
Conference: International Crop Modelling Symposium on Crop Modelling for Agriculture and Food Securi...
International audiencePlant responses to rising atmospheric carbon dioxide (CO2) concentrations, tog...
Several crop models may be used to simulate the effects of elevated CO2 on crop productivity. Yet no...
Several crop models may be used to simulate the effects of elevated CO2 on crop productivity. Yet no...
The anthropogenic increases in CO2 atmospheric concentrations are expected to lead to multiple and p...
AbstractA soil–crop–environment model was used to describe the combined effects of atmospheric carbo...
Rising atmospheric CO2 concentrations ([CO2 ]) are expected to enhance photosynthesis and reduce cro...
Elevated atmospheric CO2 concentrations ([CO2]) cause direct changes in crop physiological processes...
Rising atmospheric carbon dioxide concentrations are expected to enhance photosynthesis and reduce c...
Model projections suggest that although increased temperature and decreased soil moisture will act t...