We investigate the sensitivity of future spaceborne lidar measurements to changes in surface methane emissions. We use surface methane observations from nine European ground stations and a Lagrangian transport model to infer surface methane emissions for 2010. Our inversion shows the strongest emissions from the Netherlands, the coal mines in Upper Silesia, Poland, and wetlands in southern Finland. The simulated methane surface concentrations capture at least half of the daily variability in the observations, suggesting that the transport model is correctly simulating the regional transport pathways over Europe. With this tool we can test whether proposed methane lidar instruments will be sensitive to changes in surface emissions. We show t...
Future spaceborne lidar measurements of key anthropogenic greenhouse gases are expected to close cur...
The concentration of methane (CH4) with other greenhouse gases in the atmosphere lead to the raise o...
In the past two centuries, atmospheric methane has more than doubled and now constitutes 20% of the ...
We investigate the sensitivity of future spaceborne lidar measurements to changes in surface methane...
We investigate the sensitivity of future spaceborne lidar measurements to changes in surface methane...
We investigate the sensitivity of future spaceborne lidar measurements to changes in surface methane...
We investigate the sensitivity of future spaceborne lidar measurements to changes in surface methane...
We investigate the sensitivity of future spaceborne lidar measurements to changes in surface methan...
We investigate the sensitivity of future spaceborne lidar measurements to changes in surface methane...
We investigate the sensitivity of future space-borne lidar measurements to changes in surface methan...
Laser instruments designed to measure methane from air- and space-borne platforms are being develope...
Future spaceborne lidar measurements of key anthropogenic greenhouse gases are expected to close cur...
Active remote sensing techniques using lidar shows much promise to provide accurate measurements of ...
Active remote sensing techniques using lidar show much promise to provide accurate measurements of t...
Future space-based lidar measurements of anthropogenic greenhouse gases are expected to close observ...
Future spaceborne lidar measurements of key anthropogenic greenhouse gases are expected to close cur...
The concentration of methane (CH4) with other greenhouse gases in the atmosphere lead to the raise o...
In the past two centuries, atmospheric methane has more than doubled and now constitutes 20% of the ...
We investigate the sensitivity of future spaceborne lidar measurements to changes in surface methane...
We investigate the sensitivity of future spaceborne lidar measurements to changes in surface methane...
We investigate the sensitivity of future spaceborne lidar measurements to changes in surface methane...
We investigate the sensitivity of future spaceborne lidar measurements to changes in surface methane...
We investigate the sensitivity of future spaceborne lidar measurements to changes in surface methan...
We investigate the sensitivity of future spaceborne lidar measurements to changes in surface methane...
We investigate the sensitivity of future space-borne lidar measurements to changes in surface methan...
Laser instruments designed to measure methane from air- and space-borne platforms are being develope...
Future spaceborne lidar measurements of key anthropogenic greenhouse gases are expected to close cur...
Active remote sensing techniques using lidar shows much promise to provide accurate measurements of ...
Active remote sensing techniques using lidar show much promise to provide accurate measurements of t...
Future space-based lidar measurements of anthropogenic greenhouse gases are expected to close observ...
Future spaceborne lidar measurements of key anthropogenic greenhouse gases are expected to close cur...
The concentration of methane (CH4) with other greenhouse gases in the atmosphere lead to the raise o...
In the past two centuries, atmospheric methane has more than doubled and now constitutes 20% of the ...