Rising atmospheric CO2 concentrations ([CO2 ]) are expected to enhance photosynthesis and reduce crop water use. However, there is high uncertainty about the global implications of these effects for future crop production and agricultural water requirements under climate change. Here we combine results from networks of field experiments and global crop models to present a spatially explicit global perspective on crop water productivity (CWP, the ratio of crop yield to evapotranspiration) for wheat, maize, rice and soybean under elevated [CO2 ] and associated climate change projected for a high-end greenhouse gas emissions scenario. We find CO2 effects increase global CWP by 10[0;47]%-27[7;37]% (median[interquartile range] across the model e...
Numerous studies have addressed effects of rising atmospheric CO2 concentration on rice biomass prod...
Not AvailableA regional climate change model (PRECIS) for China, developed by the UK's Hadley Centre...
Elevated CO2 and temperature strongly affect crop production, but understanding of the crop response...
Rising atmospheric CO2 concentrations ([CO2 ]) are expected to enhance photosynthesis and reduce cro...
Rising atmospheric carbon dioxide concentrations are expected to enhance photosynthesis and reduce c...
The anthropogenic increases in CO2 atmospheric concentrations are expected to lead to multiple and p...
Climate change will affect crop growth and agricultural production worldwide. Crop production will b...
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...
An adapted Earth system model is used to investigate the limitations that future climate and water a...
Model projections suggest that although increased temperature and decreased soil moisture will act t...
Humans are increasing the amount of carbon dioxide (CO2) in the air through CO2 emissions. This is c...
International audiencePlant responses to rising atmospheric carbon dioxide (CO2) concentrations, tog...
The physiological response of vegetation to increasing atmospheric carbon dioxide concentration ([CO...
The changing patterns in day to day weather situations, rising CO2 concentrations, rising sea level,...
Numerous studies have addressed effects of rising atmospheric CO2 concentration on rice biomass prod...
Not AvailableA regional climate change model (PRECIS) for China, developed by the UK's Hadley Centre...
Elevated CO2 and temperature strongly affect crop production, but understanding of the crop response...
Rising atmospheric CO2 concentrations ([CO2 ]) are expected to enhance photosynthesis and reduce cro...
Rising atmospheric carbon dioxide concentrations are expected to enhance photosynthesis and reduce c...
The anthropogenic increases in CO2 atmospheric concentrations are expected to lead to multiple and p...
Climate change will affect crop growth and agricultural production worldwide. Crop production will b...
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...
An adapted Earth system model is used to investigate the limitations that future climate and water a...
Model projections suggest that although increased temperature and decreased soil moisture will act t...
Humans are increasing the amount of carbon dioxide (CO2) in the air through CO2 emissions. This is c...
International audiencePlant responses to rising atmospheric carbon dioxide (CO2) concentrations, tog...
The physiological response of vegetation to increasing atmospheric carbon dioxide concentration ([CO...
The changing patterns in day to day weather situations, rising CO2 concentrations, rising sea level,...
Numerous studies have addressed effects of rising atmospheric CO2 concentration on rice biomass prod...
Not AvailableA regional climate change model (PRECIS) for China, developed by the UK's Hadley Centre...
Elevated CO2 and temperature strongly affect crop production, but understanding of the crop response...