Atmospheric CO2 concentration has varied from minima of 170–200 ppm in glacials to maxima of 280–300 ppm in the recent interglacials. Photosynthesis by C3 plants is highly sensitive to CO2 concentration variations in this range. Physiological consequences of the CO2 changes should therefore be discernible in palaeodata. Several lines of evidence support this expectation. Reduced terrestrial carbon storage during glacials, indicated by the shift in stable isotope composition of dissolved inorganic carbon in the ocean, cannot be explained by climate or sea-level changes. It is however consistent with predictions of current process-based models that propagate known physiological CO2 effects into net primary production at the ecosystem scale. R...
The global vegetation response to climate and atmospheric CO2 changes between the last glacial maxim...
The global vegetation response to climate and atmospheric CO2 changes between the last glacial maxim...
The global vegetation response to climate and atmospheric CO2 changes between the last glacial maxim...
Abstract. Atmospheric CO2 concentration has varied from minima of 170–200 ppm in glacials to maxima ...
Atmospheric CO₂ concentration has varied from minima of 170–200 ppm in glacials to maxima of 280–300...
The 13C/12C ratio of C3 plant matter is thought to be controlled by the isotopic composition of atmo...
The 13C/12C ratio of C3 plant matter is thought to be controlled by the isotopic composition of atmo...
The 13C/12C ratio of C3 plant matter is thought to be controlled by the isotopic composition of atmo...
•In current models, the ecophysiological effects of CO2 create both woody thickening and terrestrial...
International audienceClimate and atmospheric CO2 effects on the balance between C3 and C4 plants ha...
International audienceClimate and atmospheric CO2 effects on the balance between C3 and C4 plants ha...
By the investigation of relationship between temperature and atmospheric CO₂ concentration of ancien...
International audienceClimate and atmospheric CO2 effects on the balance between C3 and C4 plants ha...
The global vegetation response to climate and atmospheric CO2 changes between the last glacial maxim...
During glacial-interglacial cycles, atmospheric CO2 concentration varied by about 100 ppmv in amplit...
The global vegetation response to climate and atmospheric CO2 changes between the last glacial maxim...
The global vegetation response to climate and atmospheric CO2 changes between the last glacial maxim...
The global vegetation response to climate and atmospheric CO2 changes between the last glacial maxim...
Abstract. Atmospheric CO2 concentration has varied from minima of 170–200 ppm in glacials to maxima ...
Atmospheric CO₂ concentration has varied from minima of 170–200 ppm in glacials to maxima of 280–300...
The 13C/12C ratio of C3 plant matter is thought to be controlled by the isotopic composition of atmo...
The 13C/12C ratio of C3 plant matter is thought to be controlled by the isotopic composition of atmo...
The 13C/12C ratio of C3 plant matter is thought to be controlled by the isotopic composition of atmo...
•In current models, the ecophysiological effects of CO2 create both woody thickening and terrestrial...
International audienceClimate and atmospheric CO2 effects on the balance between C3 and C4 plants ha...
International audienceClimate and atmospheric CO2 effects on the balance between C3 and C4 plants ha...
By the investigation of relationship between temperature and atmospheric CO₂ concentration of ancien...
International audienceClimate and atmospheric CO2 effects on the balance between C3 and C4 plants ha...
The global vegetation response to climate and atmospheric CO2 changes between the last glacial maxim...
During glacial-interglacial cycles, atmospheric CO2 concentration varied by about 100 ppmv in amplit...
The global vegetation response to climate and atmospheric CO2 changes between the last glacial maxim...
The global vegetation response to climate and atmospheric CO2 changes between the last glacial maxim...
The global vegetation response to climate and atmospheric CO2 changes between the last glacial maxim...