Unknowns in future global warming are usually assumed to arise from uncertainties either in the amount of anthropogenic greenhouse gas emissions or in the sensitivity of the climate to changes in greenhouse gas concentrations. Characterizing the additional uncertainty in relating CO₂ emissions to atmospheric concentrations has relied on either a small number of complex models with diversity in process representations, or simple models. To date, these models indicate that the relevant carbon cycle uncertainties are smaller than the uncertainties in physical climate feedbacks and emissions. Here, for a single emissions scenario, we use a full coupled climate–carbon cycle model and a systematic method to explore uncertainties in the land carbo...
Future climate change and increasing atmospheric CO2 are expected to cause major changes in vegetati...
The surface warming response to carbon emission is dependent on feedbacks operating in both the phys...
International audienceMost climate mitigation scenarios involve negative emissions, especially those...
Unknowns in future global warming are usually assumed to arise from uncertainties either in the amou...
Terrestrial ecosystems play a vital role in regulating the accumulation of carbon (C) in the atmosph...
A coupled physical-biogeochemical climate model that includes a dynamic global vegetation model and ...
Copyright © Cambridge University Press 2006. Published version reproduced with the permission of the...
International audiencePositive feedbacks between climate change and the carbon cycle have the potent...
Future climate change induced by atmospheric emissions of greenhouse gases is believed to have a lar...
Plant temperature responses vary geographically, reflecting thermally contrasting habitats and long-...
For the 21st century, carbon cycle models typically project an increase of terrestrial carbon with i...
For the 21st century, carbon cycle models typically project an increase of terrestrial carbon with i...
Future climate change and increasing atmospheric CO2 are expected to cause major changes in vegetati...
Future climate change and increasing atmospheric CO2 are expected to cause major changes in vegetati...
The surface warming response to carbon emission is dependent on feedbacks operating in both the phys...
International audienceMost climate mitigation scenarios involve negative emissions, especially those...
Unknowns in future global warming are usually assumed to arise from uncertainties either in the amou...
Terrestrial ecosystems play a vital role in regulating the accumulation of carbon (C) in the atmosph...
A coupled physical-biogeochemical climate model that includes a dynamic global vegetation model and ...
Copyright © Cambridge University Press 2006. Published version reproduced with the permission of the...
International audiencePositive feedbacks between climate change and the carbon cycle have the potent...
Future climate change induced by atmospheric emissions of greenhouse gases is believed to have a lar...
Plant temperature responses vary geographically, reflecting thermally contrasting habitats and long-...
For the 21st century, carbon cycle models typically project an increase of terrestrial carbon with i...
For the 21st century, carbon cycle models typically project an increase of terrestrial carbon with i...
Future climate change and increasing atmospheric CO2 are expected to cause major changes in vegetati...
Future climate change and increasing atmospheric CO2 are expected to cause major changes in vegetati...
The surface warming response to carbon emission is dependent on feedbacks operating in both the phys...
International audienceMost climate mitigation scenarios involve negative emissions, especially those...