Atmospheric methane mole fractions have been multiplied by 2.6 since the beginning of the industrial era. This increase greatly amplified the impact of methane on global warming, ecosystems and human health. Understanding the biogeochemical cycle of methane and quantifying its sources and sinks from the global to the national scale is crucial to implement and evaluate the effectiveness of policies to mitigate methane emissions. Atmospheric inversion methods allow to estimate methane sources and sinks by combining information from observations of atmospheric methane mole fractions and a priori knowledge of its sources and sinks through chemistry-transport modeling. Furthermore, using the additional information provided by observations of met...
A better knowledge of the methane biogeochemical cycle is fundamental for a betterunderstanding of c...
We have constructed an atmospheric inversion framework based on TM5-4DVAR to jointly assimi- late m...
Atmospheric methane (CH4) concentrations have shown a puzzling resumption in growth since 2007 follo...
Atmospheric methane mole fractions have been multiplied by 2.6 since the beginning of the industrial...
Les concentrations atmosphériques de méthane ont été multipliées par 2.6 depuis le début de l'ère in...
Atmospheric mixing ratios of greenhouse gases have rapidly increased since the industrial revolution...
The increase of atmospheric methane concentrations since the beginning of the industrial era is dire...
Methane has the second largest contribution to global radiative forcing impact of anthropogenic gree...
We have constructed an atmospheric inversion framework based on TM5-4DVAR to jointly assimilate meas...
A better knowledge of the methane biogeochemical cycle is fundamental for a betterunderstanding of c...
We have constructed an atmospheric inversion framework based on TM5-4DVAR to jointly assimi- late m...
Atmospheric methane (CH4) concentrations have shown a puzzling resumption in growth since 2007 follo...
Atmospheric methane mole fractions have been multiplied by 2.6 since the beginning of the industrial...
Les concentrations atmosphériques de méthane ont été multipliées par 2.6 depuis le début de l'ère in...
Atmospheric mixing ratios of greenhouse gases have rapidly increased since the industrial revolution...
The increase of atmospheric methane concentrations since the beginning of the industrial era is dire...
Methane has the second largest contribution to global radiative forcing impact of anthropogenic gree...
We have constructed an atmospheric inversion framework based on TM5-4DVAR to jointly assimilate meas...
A better knowledge of the methane biogeochemical cycle is fundamental for a betterunderstanding of c...
We have constructed an atmospheric inversion framework based on TM5-4DVAR to jointly assimi- late m...
Atmospheric methane (CH4) concentrations have shown a puzzling resumption in growth since 2007 follo...