Global and regional methane budgets are markedly uncertain. Conventionally, estimates of methane sources are derived by bridging emissions inventories with atmospheric observations employing chemical transport models. The accuracy of this approach requires correctly simulating advection and chemical loss such that modeled methane concentrations scale with surface fluxes. When total column measurements are assimilated into this framework, modeled stratospheric methane introduces additional potential for error. To evaluate the impact of such errors, we compare Total Carbon Column Observing Network (TCCON) and GEOS-Chem total and tropospheric column-averaged dry-air mole fractions of methane. We find that the model\u27s stratospheric contribut...
The Total Carbon Column Observing Network (TCCON) is a global ground-based network of Fourier transf...
The Total Carbon Column Observing Network (TCCON) is a global ground-based network of Fourier tran...
We quantify the impact of atmospheric transport and limited marine boundary layer sampling on change...
Global and regional methane budgets are markedly uncertain. Conventionally, estimates of methane so...
Model simulations of column-averaged methane mixing ratios (XCH4) are extensively used for inverse e...
International audienceThe distribution of methane (CH 4) in the stratosphere can be a major driver o...
International audienceWith the densification of surface observing networks and the development of re...
Atmospheric concentrations of methane (CH4), the second most important anthropogenic greenhouse gas,...
The distribution of methane (CH<sub>4</sub>) in the stratosphere can be a major driver of spatial va...
Methane is the second most important anthropogenic greenhouse gas and there is renewed strong increa...
[1] The UV/Vis/near infrared spectrometer SCIAMACHY on board the European ENVISAT satellite enables ...
Methane is a major driver of atmospheric chemistry and a powerful radiative forcing agent. Thus, exp...
The Total Carbon Column Observing Network (TCCON) is a global ground-based network of Fourier transf...
The Total Carbon Column Observing Network (TCCON) is a global ground-based network of Fourier tran...
We quantify the impact of atmospheric transport and limited marine boundary layer sampling on change...
Global and regional methane budgets are markedly uncertain. Conventionally, estimates of methane so...
Model simulations of column-averaged methane mixing ratios (XCH4) are extensively used for inverse e...
International audienceThe distribution of methane (CH 4) in the stratosphere can be a major driver o...
International audienceWith the densification of surface observing networks and the development of re...
Atmospheric concentrations of methane (CH4), the second most important anthropogenic greenhouse gas,...
The distribution of methane (CH<sub>4</sub>) in the stratosphere can be a major driver of spatial va...
Methane is the second most important anthropogenic greenhouse gas and there is renewed strong increa...
[1] The UV/Vis/near infrared spectrometer SCIAMACHY on board the European ENVISAT satellite enables ...
Methane is a major driver of atmospheric chemistry and a powerful radiative forcing agent. Thus, exp...
The Total Carbon Column Observing Network (TCCON) is a global ground-based network of Fourier transf...
The Total Carbon Column Observing Network (TCCON) is a global ground-based network of Fourier tran...
We quantify the impact of atmospheric transport and limited marine boundary layer sampling on change...