Predicting how increasing atmospheric CO2 will affect the hydrologic cycle is of utmost importance for a range of applications ranging from ecological services to human life and activities. A typical perspective is that hydrologic change is driven by precipitation and radiation changes due to climate change, and that the land surface will adjust. Using Earth system models with decoupled surface (vegetation physiology) and atmospheric (radiative) CO2 responses, we here show that the CO2 physiological response has a dominant role in evapotranspiration and evaporative fraction changes and has a major effect on long-term runoff compared with radiative or precipitation changes due to increased atmospheric CO2. This major effect is true for most ...
While terrestrial precipitation is a societally highly relevant climate variable, there is little co...
An increase in atmospheric carbon dioxide (CO2) concentration influences climate both directly throu...
While terrestrial precipitation is a societally highly relevant climate variable, there is little co...
Rising atmospheric CO2 impacts on vegetation physiological processes can alter land feedbacks on pre...
Predicting how increasing atmospheric carbon dioxide concentration will affect the hydrologic cycle ...
Rising atmospheric CO2 will make Earth warmer, and many studies have inferred that this warming will...
Experiments show that elevated atmospheric CO2 (eCO2) often enhances plant photosynthesis and produc...
In addition to influencing climatic conditions directly through radiative forcing, increasing carbon...
As CO2 concentration in the atmosphere rises, there is a need for improved physical understanding of...
As CO2 concentration in the atmosphere rises, there is a need for improved physical understanding of...
As CO2 concentration in the atmosphere rises, there is a need for improved physical understanding of...
As CO2 concentration in the atmosphere rises, there is a need for improved physical understanding of...
An increase in atmospheric carbon dioxide (CO2) concentration influences climate both directly throu...
Ecosystem water-use efficiency (WUE) is an important metric linking the global land carbon and water...
Experiments show that elevated atmospheric CO2 (eCO(2)) often enhances plant photosynthesis and prod...
While terrestrial precipitation is a societally highly relevant climate variable, there is little co...
An increase in atmospheric carbon dioxide (CO2) concentration influences climate both directly throu...
While terrestrial precipitation is a societally highly relevant climate variable, there is little co...
Rising atmospheric CO2 impacts on vegetation physiological processes can alter land feedbacks on pre...
Predicting how increasing atmospheric carbon dioxide concentration will affect the hydrologic cycle ...
Rising atmospheric CO2 will make Earth warmer, and many studies have inferred that this warming will...
Experiments show that elevated atmospheric CO2 (eCO2) often enhances plant photosynthesis and produc...
In addition to influencing climatic conditions directly through radiative forcing, increasing carbon...
As CO2 concentration in the atmosphere rises, there is a need for improved physical understanding of...
As CO2 concentration in the atmosphere rises, there is a need for improved physical understanding of...
As CO2 concentration in the atmosphere rises, there is a need for improved physical understanding of...
As CO2 concentration in the atmosphere rises, there is a need for improved physical understanding of...
An increase in atmospheric carbon dioxide (CO2) concentration influences climate both directly throu...
Ecosystem water-use efficiency (WUE) is an important metric linking the global land carbon and water...
Experiments show that elevated atmospheric CO2 (eCO(2)) often enhances plant photosynthesis and prod...
While terrestrial precipitation is a societally highly relevant climate variable, there is little co...
An increase in atmospheric carbon dioxide (CO2) concentration influences climate both directly throu...
While terrestrial precipitation is a societally highly relevant climate variable, there is little co...