We investigate the influence of African biomass burning, biogenic, lightning and anthropogenic emissions on the tropospheric ozone over Africa and globally using a coupled global chemistry climate model. Our model studies indicate that surface ozone concentration may rise by up to 50 ppbv in the burning region during the biomass burning seasons. Biogenic emissions yield between 5-30 ppbv increase in the near surface ozone concentration over tropical Africa. The impact of lightning on surface ozone is negligible, while anthropogenic emissions yield a maximum of 7 ppbv increase in the annual-mean surface ozone concentration over Nigeria, South Africa and Egypt. Our results show that biogenic emissions are the most important African emission s...
The chemical composition of the troposphere in the tropics and Southern Hemisphere (SH) is significa...
International audienceDuring the Northern hemisphere winter season, biomass burning is widespread in...
International audienceClimate change has the potential to increase surface ozone (O3) concentrations...
We investigate the influence of African biomass burning, biogenic, lightning and anthropogenic emiss...
International audienceWe investigate the influence of African biomass burning, biogenic, lightning a...
International audienceWe investigate the relative importance of African biomass burning, biogenic vo...
A global chemistry-climate model LMDz_INCA is used to investigate the contribution of African and As...
A global chemistry-climate model LMDz_INCA is used to investigate the contribution of African and As...
International audienceWe have performed simulations using a 3-D global chemistry-transport model to ...
[1] We quantify the processes controlling the tropical tropospheric ozone burden with particular att...
Pollutant plumes with enhanced concentrations of trace gases and aerosols were observed over the sou...
International audienceDuring the Northern hemisphere winter season, biomass burning is widespread in...
Important amounts of reactive gases and particles are emitted over equatorial Africa by human activi...
The chemical composition of the troposphere in the tropics and Southern Hemisphere (SH) is significa...
International audienceDuring the Northern hemisphere winter season, biomass burning is widespread in...
International audienceClimate change has the potential to increase surface ozone (O3) concentrations...
We investigate the influence of African biomass burning, biogenic, lightning and anthropogenic emiss...
International audienceWe investigate the influence of African biomass burning, biogenic, lightning a...
International audienceWe investigate the relative importance of African biomass burning, biogenic vo...
A global chemistry-climate model LMDz_INCA is used to investigate the contribution of African and As...
A global chemistry-climate model LMDz_INCA is used to investigate the contribution of African and As...
International audienceWe have performed simulations using a 3-D global chemistry-transport model to ...
[1] We quantify the processes controlling the tropical tropospheric ozone burden with particular att...
Pollutant plumes with enhanced concentrations of trace gases and aerosols were observed over the sou...
International audienceDuring the Northern hemisphere winter season, biomass burning is widespread in...
Important amounts of reactive gases and particles are emitted over equatorial Africa by human activi...
The chemical composition of the troposphere in the tropics and Southern Hemisphere (SH) is significa...
International audienceDuring the Northern hemisphere winter season, biomass burning is widespread in...
International audienceClimate change has the potential to increase surface ozone (O3) concentrations...