We present a novel method to quantify the ecophysiological effects of changes in CO2 concentration during the reconstruction of climate changes from fossil pollen assemblages. The method does not depend on any particular vegetation model. Instead, it makes use of general equations from ecophysiology and hydrology that link moisture index (MI) to transpiration and the ratio of leaf-internal to ambient CO2 (χ). Statistically reconstructed MI values are corrected post facto for effects of CO2 concentration. The correction is based on the principle that e, the rate of water loss per unit carbon gain, should be inversely related to effective moisture availability as sensed by plants. The method involves solving a non-linear equation that relates...
International audienceVegetation reconstructions from pollen data for the Last Glacial Maximum (LGM)...
We describe a new method for making palaeoclimate reconstructions. The method produces seasonal pala...
International audienceVegetation reconstructions from pollen data for the Last Glacial Maximum (LGM)...
We present a novel method to quantify the ecophysiological effects of changes in CO2 concentration d...
We present a novel method to quantify the ecophysiological effects of changes in CO₂ concentration d...
We present a novel method to quantify the ecophysiological effects of changes in CO2 concentration d...
Changes in atmospheric carbon dioxide (CO2) concentration directly influence the ratio of stomatal w...
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 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...
The global vegetation response to climate and atmospheric CO2 changes between the last glacial maxim...
International audienceVegetation reconstructions from pollen data for the Last Glacial Maximum (LGM)...
International audienceVegetation reconstructions from pollen data for the Last Glacial Maximum (LGM)...
International audienceVegetation reconstructions from pollen data for the Last Glacial Maximum (LGM)...
We describe a new method for making palaeoclimate reconstructions. The method produces seasonal pala...
International audienceVegetation reconstructions from pollen data for the Last Glacial Maximum (LGM)...
We present a novel method to quantify the ecophysiological effects of changes in CO2 concentration d...
We present a novel method to quantify the ecophysiological effects of changes in CO₂ concentration d...
We present a novel method to quantify the ecophysiological effects of changes in CO2 concentration d...
Changes in atmospheric carbon dioxide (CO2) concentration directly influence the ratio of stomatal w...
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 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...
The global vegetation response to climate and atmospheric CO2 changes between the last glacial maxim...
International audienceVegetation reconstructions from pollen data for the Last Glacial Maximum (LGM)...
International audienceVegetation reconstructions from pollen data for the Last Glacial Maximum (LGM)...
International audienceVegetation reconstructions from pollen data for the Last Glacial Maximum (LGM)...
We describe a new method for making palaeoclimate reconstructions. The method produces seasonal pala...
International audienceVegetation reconstructions from pollen data for the Last Glacial Maximum (LGM)...