This study quantifies future changes in tropospheric ozone (O3) using a simple parameterisation of source–receptor relationships based on simulations from a range of models participating in the Task Force on Hemispheric Transport of Air Pollutants (TF-HTAP) experiments. Surface and tropospheric O3 changes are calculated globally and across 16 regions from perturbations in precursor emissions (NOx, CO, volatile organic compounds – VOCs) and methane (CH4) abundance only, neglecting any impact from climate change. A source attribution is provided for each source region along with an estimate of uncertainty based on the spread of the results from the models. Tests against model simulations using the Hadley Centre Global Environment Mo...
International audienceTo explore the relationship between tropospheric ozone and radiative forcing w...
The impact of climate change between 2000 and 2095 SRES A2 climates on surface ozone (O)3 and on O3 ...
International audienceTo explore the relationship between tropospheric ozone and radiative forcing w...
This study quantifies future changes in tropospheric ozone (O3) using a simple parameterisation of s...
This study quantifies future changes in tropo-spheric ozone (O3) using a simple parameterisation of ...
This study quantifies future changes in tropospheric ozone (O-3) using a simple parameterisation of ...
Tropospheric Ozone (O3) is both an air pollutant and a greenhouse gas. Predicting changes to O3 is t...
Tropospheric Ozone (O3) is both an air pollutant and a greenhouse gas. Predicting changes to O3 is t...
This study describes a simple parameterization to estimate regionally averaged changes in surface oz...
This study describes a simple parameterization to estimate regionally averaged changes in surface oz...
Tropospheric ozone is important to future air quality and climate. We investigate ozone changes and ...
Ozone (O3) from 17 atmospheric chemistry models taking part in the Atmospheric Chemistry and Climate...
To explore the relationship between tropospheric ozone and radiative forcing with changing emissions...
We present the chemistry-climate model UMCAM in which a relatively detailed tropospheric chemical mo...
Tropospheric ozone (O3) is an important reactive gas in the atmosphere influencing human health, eco...
International audienceTo explore the relationship between tropospheric ozone and radiative forcing w...
The impact of climate change between 2000 and 2095 SRES A2 climates on surface ozone (O)3 and on O3 ...
International audienceTo explore the relationship between tropospheric ozone and radiative forcing w...
This study quantifies future changes in tropospheric ozone (O3) using a simple parameterisation of s...
This study quantifies future changes in tropo-spheric ozone (O3) using a simple parameterisation of ...
This study quantifies future changes in tropospheric ozone (O-3) using a simple parameterisation of ...
Tropospheric Ozone (O3) is both an air pollutant and a greenhouse gas. Predicting changes to O3 is t...
Tropospheric Ozone (O3) is both an air pollutant and a greenhouse gas. Predicting changes to O3 is t...
This study describes a simple parameterization to estimate regionally averaged changes in surface oz...
This study describes a simple parameterization to estimate regionally averaged changes in surface oz...
Tropospheric ozone is important to future air quality and climate. We investigate ozone changes and ...
Ozone (O3) from 17 atmospheric chemistry models taking part in the Atmospheric Chemistry and Climate...
To explore the relationship between tropospheric ozone and radiative forcing with changing emissions...
We present the chemistry-climate model UMCAM in which a relatively detailed tropospheric chemical mo...
Tropospheric ozone (O3) is an important reactive gas in the atmosphere influencing human health, eco...
International audienceTo explore the relationship between tropospheric ozone and radiative forcing w...
The impact of climate change between 2000 and 2095 SRES A2 climates on surface ozone (O)3 and on O3 ...
International audienceTo explore the relationship between tropospheric ozone and radiative forcing w...