The continuing increase in atmospheric CO2 concentration caused by anthropogenic CO2 emissions significantly contributes to climate change driven by global warming. Satellite measurements of long-term CO2 data with global coverage improve our understanding of global carbon cycles. However, the sensitivity of the space-borne measurements to anthropogenic emissions on a regional scale is less explored because of data sparsity in space and time caused by impacts from geophysical factors such as aerosols and clouds. Here, we used global land mapping column averaged dry-air mole fractions of CO2 (XCO2) data (Mapping-XCO2), generated from a spatio-temporal geostatistical method using GOSAT and OCO-2 observations from April 2009 to December 2020, ...
Satellite measurements of the spatiotemporal distributions of atmospheric CO2 concentrations are a k...
International audienceColumn-averaged dry air mole fractions of carbon dioxide (XCO2) measured by th...
Satellite-based observations of atmospheric carbon dioxide (CO2) provide measurements in remote regi...
Atmospheric CO2 concentrations are sensitive to the effects of climate extremes on carbon sources an...
Spatiotemporal patterns of column-averaged dry air mole fraction of CO₂ (XCO₂) have not been well ch...
Carbon dioxide (CO2) is the most important anthropogenic greenhouse gas contributing to climate chan...
The COVID-19 pandemic resulted in reduced anthropogenic carbon dioxide (CO2) emissions during 2020 i...
Atmospheric CO_2 concentrations are sensitive to the effects of climate extremes on carbon sources a...
NASA’s carbon dioxide mission, Orbiting Carbon Observatory-2, began operating in September 2014. In ...
Satellite observations can be used to detect the changes of CO2 concentration at global and regional...
Carbon dioxide (CO_2) is the most important anthropogenic greenhouse gas and its concentration in at...
We employed an atmospheric transport model to attribute column-averaged CO2 mixing ratios (XCO2) obs...
We employed an atmospheric transport model to attribute column-averaged CO2 mixing ratios (XCO2) obs...
Satellite measurements of the spatiotemporal distributions of atmospheric CO2 concentrations are a k...
International audienceColumn-averaged dry air mole fractions of carbon dioxide (XCO2) measured by th...
Satellite-based observations of atmospheric carbon dioxide (CO2) provide measurements in remote regi...
Atmospheric CO2 concentrations are sensitive to the effects of climate extremes on carbon sources an...
Spatiotemporal patterns of column-averaged dry air mole fraction of CO₂ (XCO₂) have not been well ch...
Carbon dioxide (CO2) is the most important anthropogenic greenhouse gas contributing to climate chan...
The COVID-19 pandemic resulted in reduced anthropogenic carbon dioxide (CO2) emissions during 2020 i...
Atmospheric CO_2 concentrations are sensitive to the effects of climate extremes on carbon sources a...
NASA’s carbon dioxide mission, Orbiting Carbon Observatory-2, began operating in September 2014. In ...
Satellite observations can be used to detect the changes of CO2 concentration at global and regional...
Carbon dioxide (CO_2) is the most important anthropogenic greenhouse gas and its concentration in at...
We employed an atmospheric transport model to attribute column-averaged CO2 mixing ratios (XCO2) obs...
We employed an atmospheric transport model to attribute column-averaged CO2 mixing ratios (XCO2) obs...
Satellite measurements of the spatiotemporal distributions of atmospheric CO2 concentrations are a k...
International audienceColumn-averaged dry air mole fractions of carbon dioxide (XCO2) measured by th...
Satellite-based observations of atmospheric carbon dioxide (CO2) provide measurements in remote regi...