The effects of elevated CO2 on vegetation dynamics and the hydrological cycle have been widely studied at the site level. However, quantitative assessments of these effects on a regional scale remain a challenge. We conducted numerical simulations to predict the possible responses of vegetation and the hydrological cycle in the Sino-Mongolia arid and semi-arid region (SMASR) to doubled CO2 and its associated climate change using the Community Earth System Model in tandem with a dynamic global vegetation model. The results showed that the doubled CO2 had a positive effect on the leaf area index of the SMASR, but its associated climate change exerted a negative effect in most parts of the SMASR. Although climate change had a weak negative eff...
The Mongolian Plateau is dominated by grassland ecosystems. It frequently experiences drought and is...
The radiative and physiological effects of doubled atmospheric carbon dioxide (CO2) on climate are ...
Northern Mongolia currently sequesters 31 Tg C yr −1 but it may become a carbon source if respiratio...
Increases in the atmospheric CO2 concentration affect both the global climate and plant metabolism, ...
Rising atmospheric CO(2) concentration CO(2) and climate change are expected to have a major effect ...
This study uses offline simulations with a land surface model to explore how the future response of ...
International audienceOver the last century, precipitation has shown significant changes, reflecting...
Over the last century, precipitation has shown significant changes, reflecting both natural variabil...
Semi-arid ecosystems play an important role in regulating global climate with the fate of these ecos...
Although the net primary productivity (NPP) of arid/semiarid ecosystem is generally thought to be co...
Investigating the relationship between factors (climate change, atmospheric CO2 concentrations enric...
Semi-arid ecosystems play an important role in regulating global climate with the fate of these ecos...
Climate change has significantly influenced global and regional terrestrial carbon balances. After b...
As the atmospheric carbon dioxide (CO2) increases substantially, the spatial distribution of atmosph...
Significant interaction occurs between ecosystem physiological processes and climate. Studying this ...
The Mongolian Plateau is dominated by grassland ecosystems. It frequently experiences drought and is...
The radiative and physiological effects of doubled atmospheric carbon dioxide (CO2) on climate are ...
Northern Mongolia currently sequesters 31 Tg C yr −1 but it may become a carbon source if respiratio...
Increases in the atmospheric CO2 concentration affect both the global climate and plant metabolism, ...
Rising atmospheric CO(2) concentration CO(2) and climate change are expected to have a major effect ...
This study uses offline simulations with a land surface model to explore how the future response of ...
International audienceOver the last century, precipitation has shown significant changes, reflecting...
Over the last century, precipitation has shown significant changes, reflecting both natural variabil...
Semi-arid ecosystems play an important role in regulating global climate with the fate of these ecos...
Although the net primary productivity (NPP) of arid/semiarid ecosystem is generally thought to be co...
Investigating the relationship between factors (climate change, atmospheric CO2 concentrations enric...
Semi-arid ecosystems play an important role in regulating global climate with the fate of these ecos...
Climate change has significantly influenced global and regional terrestrial carbon balances. After b...
As the atmospheric carbon dioxide (CO2) increases substantially, the spatial distribution of atmosph...
Significant interaction occurs between ecosystem physiological processes and climate. Studying this ...
The Mongolian Plateau is dominated by grassland ecosystems. It frequently experiences drought and is...
The radiative and physiological effects of doubled atmospheric carbon dioxide (CO2) on climate are ...
Northern Mongolia currently sequesters 31 Tg C yr −1 but it may become a carbon source if respiratio...