Rising atmospheric CO2 concentration ([CO2]) enhances photosynthesis and reduces transpiration at the leaf, ecosystem, and global scale via the CO2 fertilization effect. The CO2 fertilization effect is among the most important processes for predicting the terrestrial carbon budget and future climate, yet it has been elusive to quantify. For evaluating the CO2 fertilization effect on land photosynthesis and transpiration, we developed a technique that isolated this effect from other confounding effects, such as changes in climate, using a noisy time series of observed land-atmosphere CO2 and water vapor exchange. Here, we evaluate the magnitude of this effect from 2000 to 2014 globally based on constraint optimization of gross primary produc...
Quantifying the responses of the coupled carbon and water cycles to current global warming and risin...
International audienceThe rising atmospheric CO2 concentration leads to a CO2 fertilization effect o...
Summary Atmospheric carbon dioxide concentration ([CO2]) is increasing, which increases leaf-scale p...
Rising atmospheric CO2 concentration ([CO2]) enhances photosynthesis and reduces transpiration at th...
Rising atmospheric CO2 concentration ([CO2]) enhances photosynthesis and reduces transpiration at th...
Theory predicts that rising CO2 increases global photosynthesis, a process known as CO2 fertilizatio...
Several lines of evidence point to an increase in the activity of the terrestrial biosphere over rec...
Global photosynthesis is increasing with elevated atmospheric CO2 concentrations, a response known a...
Uncertainties in the response of vegetation to rising atmospheric CO2 concentrations1,2 contribute t...
LetterUncertainties in the response of vegetation to rising atmospheric CO2 concentrations contribut...
Based on precise ground measurement of atmospheric CO2 concentration and satellite remote sensing, i...
Atmospheric mass balance analyses suggest that terrestrial carbon (C) storage is increasing, partial...
Clarifying how increased atmospheric CO2 concentration (eCO2) contributes to accelerated land carbon...
Based on Free Air Carbon Dioxide Enrichment (FACE) and other raised-CO2 experiments (eCO2), new hypo...
Abstract Rising atmospheric dryness [vapor pressure deficit (VPD)] can limit photosynthesis and thus...
Quantifying the responses of the coupled carbon and water cycles to current global warming and risin...
International audienceThe rising atmospheric CO2 concentration leads to a CO2 fertilization effect o...
Summary Atmospheric carbon dioxide concentration ([CO2]) is increasing, which increases leaf-scale p...
Rising atmospheric CO2 concentration ([CO2]) enhances photosynthesis and reduces transpiration at th...
Rising atmospheric CO2 concentration ([CO2]) enhances photosynthesis and reduces transpiration at th...
Theory predicts that rising CO2 increases global photosynthesis, a process known as CO2 fertilizatio...
Several lines of evidence point to an increase in the activity of the terrestrial biosphere over rec...
Global photosynthesis is increasing with elevated atmospheric CO2 concentrations, a response known a...
Uncertainties in the response of vegetation to rising atmospheric CO2 concentrations1,2 contribute t...
LetterUncertainties in the response of vegetation to rising atmospheric CO2 concentrations contribut...
Based on precise ground measurement of atmospheric CO2 concentration and satellite remote sensing, i...
Atmospheric mass balance analyses suggest that terrestrial carbon (C) storage is increasing, partial...
Clarifying how increased atmospheric CO2 concentration (eCO2) contributes to accelerated land carbon...
Based on Free Air Carbon Dioxide Enrichment (FACE) and other raised-CO2 experiments (eCO2), new hypo...
Abstract Rising atmospheric dryness [vapor pressure deficit (VPD)] can limit photosynthesis and thus...
Quantifying the responses of the coupled carbon and water cycles to current global warming and risin...
International audienceThe rising atmospheric CO2 concentration leads to a CO2 fertilization effect o...
Summary Atmospheric carbon dioxide concentration ([CO2]) is increasing, which increases leaf-scale p...