International audienceWe have evaluated tropospheric ozone enhancement in air dominated by biomass burning emissions at high laititudes (> 50˚ N) in July 2008, using 10 global chemical transport model simulations from the POLMIP multi-model comparison exercise. In model air masses dominated by fire emissions, Δ O3/ΔCO values ranged between 0.039 and 0.196 ppbv ppbv−1 (mean: 0.113 ppbv ppbv−1) in freshly fire-influenced air, and between 0.140 and 0.261 ppbv ppbv−1 (mean: 0.193 ppbv) in more aged fire-influenced air. These values are in broad agreement with the range of observational estimates from the literature. Model ΔPAN/ΔCO enhancement ratios show distinct groupings according to the meteorological data used to drive the models. ECMWF-for...
Using observations from aircraft, surface stations and satellite, we comprehensively evaluate multi-...
Biomass burning is one of the largest sources of trace gases and aerosols to the atmosphere and has ...
A case of long-range transport of a biomass burning plume from Alaska to Europe is analyzed using a ...
International audienceWe have evaluated tropospheric ozone enhancement in air dominated by biomass b...
We have evaluated tropospheric ozone enhancement in air dominated by biomass burning emissions at hi...
Biomass burning is one of the largest sources of trace gases and aerosols to the atmosphere and has ...
Ozone pollution transported to the Arctic is a significant concern because of the rapid, enhanced wa...
Ozone pollution transported to the Arctic is a significant concern because of the rapid, enhanced wa...
We quantify the tropospheric ozone budget over remote high northern latitudes in summer using chemic...
We have analysed the sensitivity of the tropospheric ozone distribution over North America and the N...
Using observations from aircraft, surface stations and satellite, we comprehensively evaluate multi-...
Biomass burning is one of the largest sources of trace gases and aerosols to the atmosphere and has ...
A case of long-range transport of a biomass burning plume from Alaska to Europe is analyzed using a ...
International audienceWe have evaluated tropospheric ozone enhancement in air dominated by biomass b...
We have evaluated tropospheric ozone enhancement in air dominated by biomass burning emissions at hi...
Biomass burning is one of the largest sources of trace gases and aerosols to the atmosphere and has ...
Ozone pollution transported to the Arctic is a significant concern because of the rapid, enhanced wa...
Ozone pollution transported to the Arctic is a significant concern because of the rapid, enhanced wa...
We quantify the tropospheric ozone budget over remote high northern latitudes in summer using chemic...
We have analysed the sensitivity of the tropospheric ozone distribution over North America and the N...
Using observations from aircraft, surface stations and satellite, we comprehensively evaluate multi-...
Biomass burning is one of the largest sources of trace gases and aerosols to the atmosphere and has ...
A case of long-range transport of a biomass burning plume from Alaska to Europe is analyzed using a ...