International audienceClimate change has the potential to increase surface ozone (O3) concentrations, known as the "ozone-climate penalty", through changes to atmospheric chemistry, transport and dry deposition. In the tropics, the response of surface O3 to changing climate is relatively understudied but has important consequences for air pollution and human and ecosystem health. In this study, we evaluate the change in surface O3 due to climate change over South America and Africa using three state-of-the-art Earth system models that follow the Shared Socioeconomic Pathway 3-7.0 emission scenario from CMIP6. In order to quantify changes due to climate change alone, we evaluate the difference between simulations including climate change and...
A global chemistry-climate model LMDz_INCA is used to investigate the contribution of African and As...
We investigate the influence of African biomass burning, biogenic, lightning and anthropogenic emiss...
Because tropospheric ozone is both a greenhouse gas and harmful air pollutant, it is important to un...
International audienceClimate change has the potential to increase surface ozone (O3) concentrations...
Climate change has the potential to increase surface ozone (O3) concentrations, known as the “ozone–...
The impact of climate change between 2000 and 2095 SRES A2 climates on surface ozone (O)3 and on O3 ...
To demonstrate potential future consequences of land cover and land use changes beyond those for phy...
The impact of climate change between 2000 and 2095 SRES A2 climates on surface ozone (O)3 and on O3 ...
Ozone (O-3) precursor emissions influence regional and global climate and air quality through change...
Gaseous precursors to ozone (O3) are emitted from biomass burning, anthropogenic, and biogenic sourc...
The impact of ground-level ozone (O<sub>3</sub>) on vegetation is largely under-investigated at the...
A global chemistry-climate model LMDz_INCA is used to investigate the contribution of African and As...
We investigate the influence of African biomass burning, biogenic, lightning and anthropogenic emiss...
Because tropospheric ozone is both a greenhouse gas and harmful air pollutant, it is important to un...
International audienceClimate change has the potential to increase surface ozone (O3) concentrations...
Climate change has the potential to increase surface ozone (O3) concentrations, known as the “ozone–...
The impact of climate change between 2000 and 2095 SRES A2 climates on surface ozone (O)3 and on O3 ...
To demonstrate potential future consequences of land cover and land use changes beyond those for phy...
The impact of climate change between 2000 and 2095 SRES A2 climates on surface ozone (O)3 and on O3 ...
Ozone (O-3) precursor emissions influence regional and global climate and air quality through change...
Gaseous precursors to ozone (O3) are emitted from biomass burning, anthropogenic, and biogenic sourc...
The impact of ground-level ozone (O<sub>3</sub>) on vegetation is largely under-investigated at the...
A global chemistry-climate model LMDz_INCA is used to investigate the contribution of African and As...
We investigate the influence of African biomass burning, biogenic, lightning and anthropogenic emiss...
Because tropospheric ozone is both a greenhouse gas and harmful air pollutant, it is important to un...