Coupling between the stratosphere and the troposphere allows changes in stratospheric ozone abundances to affect tropospheric chemistry. Large-scale effects from such changes on chemically produced tropospheric aerosols have not been systematically examined in past studies. We use a composition-climate model to investigate potential past and future impacts of changes in stratospheric ozone depleting substances (ODS) on tropospheric oxidants and sulfate aerosols. In most experiments, we find significant responses in tropospheric photolysis and oxidants, with small but significant effects on methane radiative forcing. The response of sulfate aerosols is sizeable when examining the effect of increasing future nitrous oxide (N2O) emissions. We ...
A state-of-the-art chemistry climate model coupled to a three-dimensional ocean model is used to pro...
Understanding historical trends of trace gas and aerosol distributions in the troposphere is essenti...
Understanding historical trends of trace gas and aerosol distributions in the troposphere is essenti...
The distributions of NOx and O-3 are analyzed during TOPSE (Tropospheric Ozone Production about the ...
The development of effective emissions control policies that are beneficial to both climate and air ...
Geoengineering with stratospheric sulfate aerosols has been proposed as a means of temporarily cooli...
A stratosphere-resolving configuration of the Met Office’s Unified Model (UM) with the United Kingdo...
SO2 and H2S are the two most important gas-phase sulfur species emitted by volcanoes, with a global ...
Recently, it was shown that of the ozone-depleting substances currently emitted, N2O emissions (the ...
The ozone radiative forcings (RFs) resulting from projected changes in climate, ozone-depleting subs...
We have investigated the impact of assumed nitrous oxide (N2O) increases on stratospheric chemistry ...
We present here a fully coupled global aerosol and chemistry model for the troposphere. The model is...
Understanding historical trends of trace gas and aerosol distributions in the troposphere is essenti...
We describe and evaluate atmospheric chemistry in the newly developed Geophysical Fluid Dynamics Lab...
Ozone (O-3) precursor emissions influence regional and global climate and air quality through change...
A state-of-the-art chemistry climate model coupled to a three-dimensional ocean model is used to pro...
Understanding historical trends of trace gas and aerosol distributions in the troposphere is essenti...
Understanding historical trends of trace gas and aerosol distributions in the troposphere is essenti...
The distributions of NOx and O-3 are analyzed during TOPSE (Tropospheric Ozone Production about the ...
The development of effective emissions control policies that are beneficial to both climate and air ...
Geoengineering with stratospheric sulfate aerosols has been proposed as a means of temporarily cooli...
A stratosphere-resolving configuration of the Met Office’s Unified Model (UM) with the United Kingdo...
SO2 and H2S are the two most important gas-phase sulfur species emitted by volcanoes, with a global ...
Recently, it was shown that of the ozone-depleting substances currently emitted, N2O emissions (the ...
The ozone radiative forcings (RFs) resulting from projected changes in climate, ozone-depleting subs...
We have investigated the impact of assumed nitrous oxide (N2O) increases on stratospheric chemistry ...
We present here a fully coupled global aerosol and chemistry model for the troposphere. The model is...
Understanding historical trends of trace gas and aerosol distributions in the troposphere is essenti...
We describe and evaluate atmospheric chemistry in the newly developed Geophysical Fluid Dynamics Lab...
Ozone (O-3) precursor emissions influence regional and global climate and air quality through change...
A state-of-the-art chemistry climate model coupled to a three-dimensional ocean model is used to pro...
Understanding historical trends of trace gas and aerosol distributions in the troposphere is essenti...
Understanding historical trends of trace gas and aerosol distributions in the troposphere is essenti...