The impact of odd chlorine (Cly) and odd nitrogen (NOy) perturbations (resulting from human activities) and of enhanced H2O-H2SO4 aerosol load (associated with volcanic activity) on stratospheric ozone (25 km altitude, midlatitudes) is assessed by using a chemical box model in which key heterogeneous reactions on the surface of sulfate aerosol particles are taken into account. The model shows that if transport is ignored, the response of the photochemical system to increased abundances of odd chlorine and odd nitrogen and to enhanced aerosol surface area density is characterized by a multiequilibrium regime. Catastrophic transitions may occur and may produce dramatic reductions in the stratospheric ozone concentration. When the dissipative ...
Catalytic cycles and other chemical pathways affecting ozone are normally estimated empirically in a...
Through the 21st century, anthropogenic emissions of the greenhouse gases N 2 O and CH 4 are project...
We demonstrate that identification of stratospheric ozone changes attributable to ozone depleting su...
The impact of odd chlorine (Cly) and odd nitrogen (NOy) perturbations (resulting from human activiti...
A mathematical analysis of the stratospheric photochemical system (gas phase reactions only) shows t...
With a reasonably complete and up-to-date photochemical model of the stratosphere, we find that the ...
In the upper stratosphere, an altitude range in which ozone should be in photochemical steady-state,...
Currently, there is a widespread search for additional heterogeneous reactions or combination of het...
Atmospheric perturbations caused by the emission of nitrogen oxides from a projected fleet of strato...
The objective of this research was to examine the effects of chemical perturbations on the stratosph...
Through the 21st century, anthropogenic emissions of the greenhouse gases N2O and CH4 are projected ...
Emissions from stratospheric aircraft that may directly or indirectly affect ozone include NO(y), H2...
The heterogeneous reaction ClOOCl + HCl → Cl2 + HOOCl was introduced into a chemical trajectory mode...
This thesis seeks to improve our understanding of the connections between and the modulations of ant...
Water vapour convectively injected into the mid-latitude lowermost stratosphere could affect stratos...
Catalytic cycles and other chemical pathways affecting ozone are normally estimated empirically in a...
Through the 21st century, anthropogenic emissions of the greenhouse gases N 2 O and CH 4 are project...
We demonstrate that identification of stratospheric ozone changes attributable to ozone depleting su...
The impact of odd chlorine (Cly) and odd nitrogen (NOy) perturbations (resulting from human activiti...
A mathematical analysis of the stratospheric photochemical system (gas phase reactions only) shows t...
With a reasonably complete and up-to-date photochemical model of the stratosphere, we find that the ...
In the upper stratosphere, an altitude range in which ozone should be in photochemical steady-state,...
Currently, there is a widespread search for additional heterogeneous reactions or combination of het...
Atmospheric perturbations caused by the emission of nitrogen oxides from a projected fleet of strato...
The objective of this research was to examine the effects of chemical perturbations on the stratosph...
Through the 21st century, anthropogenic emissions of the greenhouse gases N2O and CH4 are projected ...
Emissions from stratospheric aircraft that may directly or indirectly affect ozone include NO(y), H2...
The heterogeneous reaction ClOOCl + HCl → Cl2 + HOOCl was introduced into a chemical trajectory mode...
This thesis seeks to improve our understanding of the connections between and the modulations of ant...
Water vapour convectively injected into the mid-latitude lowermost stratosphere could affect stratos...
Catalytic cycles and other chemical pathways affecting ozone are normally estimated empirically in a...
Through the 21st century, anthropogenic emissions of the greenhouse gases N 2 O and CH 4 are project...
We demonstrate that identification of stratospheric ozone changes attributable to ozone depleting su...