CO2 fertilization affects plant growth, which modifies surface physical properties, altering the surface albedo, and fluxes of sensible and latent heat. We investigate how such CO2-fertilization effects on vegetation and surface properties would affect the climate system. Using a global three-dimensional climate-carbon model that simulates vegetation dynamics, we compare two multicentury simulations: a 'Control' simulation with no emissions and a 'Physiol-noGHG' simulation where physiological changes occur as a result of prescribed CO2 emissions, but where CO2-induced greenhouse warming is not included. In our simulations, CO2 fertilization produces warming; we obtain an annual- and global-mean warming of about 0.65 K (and land-only warming...
The potential for feedbacks between terrestrial vegetation, climate, and the atmospheric CO2 partial...
A complex earth system model, simulating atmosphere and ocean dynamics, marine biogeochemistry, terr...
International audienceIncreasing atmospheric CO 2 affects photosynthesis involving directly increasi...
CO2 fertilization affects plant growth, which modifies surface physical properties, altering the sur...
CO{sub 2}-fertilization affects plant growth, which modifies surface physical properties, altering t...
The potential for feedbacks between terrestrial vegetation, climate, and the atmospheric CO2 partial...
Increasing concentrations of atmospheric CO2 influence climate, terrestrial biosphere productivity a...
We qualitatively and quantitatively assessed the factors related to vegetation growth using Earth sy...
We explored the climate impacts for two land-use change scenarios, aimed at mitigating the buildup o...
We qualitatively and quantitatively assessed the factors related to vegetation growth using Earth sy...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
In this study, vegetation–climate and vegetation–carbon cycle interactions during anthropogenic clim...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
[1] Study of the effect of current climate changes on vegetation growth, and their spatial patterns ...
International audienceStudy of the effect of current climate changes on vegetation growth, and their...
The potential for feedbacks between terrestrial vegetation, climate, and the atmospheric CO2 partial...
A complex earth system model, simulating atmosphere and ocean dynamics, marine biogeochemistry, terr...
International audienceIncreasing atmospheric CO 2 affects photosynthesis involving directly increasi...
CO2 fertilization affects plant growth, which modifies surface physical properties, altering the sur...
CO{sub 2}-fertilization affects plant growth, which modifies surface physical properties, altering t...
The potential for feedbacks between terrestrial vegetation, climate, and the atmospheric CO2 partial...
Increasing concentrations of atmospheric CO2 influence climate, terrestrial biosphere productivity a...
We qualitatively and quantitatively assessed the factors related to vegetation growth using Earth sy...
We explored the climate impacts for two land-use change scenarios, aimed at mitigating the buildup o...
We qualitatively and quantitatively assessed the factors related to vegetation growth using Earth sy...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
In this study, vegetation–climate and vegetation–carbon cycle interactions during anthropogenic clim...
Understanding the transition of biosphere‐atmosphere carbon exchange between glacial and interglacia...
[1] Study of the effect of current climate changes on vegetation growth, and their spatial patterns ...
International audienceStudy of the effect of current climate changes on vegetation growth, and their...
The potential for feedbacks between terrestrial vegetation, climate, and the atmospheric CO2 partial...
A complex earth system model, simulating atmosphere and ocean dynamics, marine biogeochemistry, terr...
International audienceIncreasing atmospheric CO 2 affects photosynthesis involving directly increasi...