Future climate change and increasing atmospheric CO2 are expected to cause major changes in vegetation structure and function over large fractions of the global land surface. Seven global vegetation models are used to analyze possible responses to future climate simulated by a range of general circulation models run under all four representative concentration pathway scenarios of changing concentrations of greenhouse gases. All 110 simulations predict an increase in global vegetation carbon to 2100, but with substantial variation between vegetation models. For example, at 4 °C of global land surface warming (510-758 ppm of CO2), vegetation carbon increases by 52-477 Pg C (224 Pg C mean), mainly due to CO2 fertilization of photosynthesis. Si...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
One of the largest sources of uncertainties in modelling of the future global climate is the respons...
This study uses offline simulations with a land surface model to explore how the future response of ...
Future climate change and increasing atmospheric CO2 are expected to cause major changes in vegetati...
The possible responses of ecosystem processes to rising atmospheric CO2 concentration and climate c...
The possible responses of ecosystem processes to rising atmospheric CO2 concentration and climate ch...
The possible responses of ecosystem processes to rising atmospheric CO2 concentration and climate ch...
Background: Dynamic Global Vegetation Models (D GVMs) compute the terrestrial carbon balance as well...
This study tests the ability of five Dynamic Global Vegetation Models (DGVMs), forced with observed ...
Background: Dynamic Global Vegetation Models (DGVMs) compute the terrestrial carbon balance as well...
The equilibrium carbon storage capacity of the terrestrial biosphere has been investigated by runnin...
Plant temperature responses vary geographically, reflecting thermally contrasting habitats and long-...
The equilibrium carbon storage capacity of the terrestrial biosphere has been investigated by runnin...
International audienceThe terrestrial biosphere shows substantial inertia in its response to environ...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
One of the largest sources of uncertainties in modelling of the future global climate is the respons...
This study uses offline simulations with a land surface model to explore how the future response of ...
Future climate change and increasing atmospheric CO2 are expected to cause major changes in vegetati...
The possible responses of ecosystem processes to rising atmospheric CO2 concentration and climate c...
The possible responses of ecosystem processes to rising atmospheric CO2 concentration and climate ch...
The possible responses of ecosystem processes to rising atmospheric CO2 concentration and climate ch...
Background: Dynamic Global Vegetation Models (D GVMs) compute the terrestrial carbon balance as well...
This study tests the ability of five Dynamic Global Vegetation Models (DGVMs), forced with observed ...
Background: Dynamic Global Vegetation Models (DGVMs) compute the terrestrial carbon balance as well...
The equilibrium carbon storage capacity of the terrestrial biosphere has been investigated by runnin...
Plant temperature responses vary geographically, reflecting thermally contrasting habitats and long-...
The equilibrium carbon storage capacity of the terrestrial biosphere has been investigated by runnin...
International audienceThe terrestrial biosphere shows substantial inertia in its response to environ...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
One of the largest sources of uncertainties in modelling of the future global climate is the respons...
This study uses offline simulations with a land surface model to explore how the future response of ...