Modelling studies were performed with the multiphase mechanism RACM- MIM2ext/CAPRAM 3.0i to investigate the tropospheric multiphase chemistry in deli- quesced particles and non-precipitating clouds using the SPACCIM model framework. Simulations using a non-permanent cloud scenario were carried out for two different environmental conditions focusing on the multiphase chemistry of oxidants and other linked chemical subsystems. Model results were analysed by time-resolved reaction flux analyses allowing advanced interpretations. The model shows significant effects of multiphase chemical interactions on the tropospheric budget of gas-phase oxidants and organic com- pounds. In-cloud gas-phase OH radical concentration reductions of about 90 % and...
In liquid cloud droplets, superoxide anion (O2(aq)-) is known to quickly consume ozone (O3(aq)), whi...
The gas phase oxidation of organic species is a multigenerational process involving a large number o...
An overview of the two FEBUKO aerosol–cloud interaction field experiments in the Thüringer Wald (Ger...
Modelling studies were performed with the multiphase mechanism RACM- MIM2ext/CAPRAM 3.0i to investig...
Tropospheric deliquesced particles are characterised by concentrated non-ideal solutions ("aerosol l...
A reduced version of the complex aqueous phase mechanism CAPRAM3.0i (C3.0RED) was used in the region...
AbstractA reduced version of the complex aqueous phase mechanism CAPRAM3.0i (C3.0RED) was used in th...
PolyU Library Call No.: [THS] LG51 .H577P CEE 2015 Guo153 pages :color illustrations ;30 cmHigh conc...
Large parts of the troposphere are affected by clouds, whose aqueous-phase chemistry differs signifi...
A condensed multiphase halogen and dimethyl sulfide (DMS) chemistry mechanism for application in che...
Ambient tropospheric deliquesced particles generally comprise a complex mixture of electrolytes, org...
Ambient tropospheric deliquesced particles generally comprise a complex mixture of electrolytes, org...
International audienceA multiphase box model for a remote environment of the troposphere has been de...
In-cloud aqueous-phase chemistry is known to decrease tropospheric ozone (O3) via O3+O2- with hydrop...
Interest in the potential formation of secondary organic aerosol (SOA) through reactions of organic ...
In liquid cloud droplets, superoxide anion (O2(aq)-) is known to quickly consume ozone (O3(aq)), whi...
The gas phase oxidation of organic species is a multigenerational process involving a large number o...
An overview of the two FEBUKO aerosol–cloud interaction field experiments in the Thüringer Wald (Ger...
Modelling studies were performed with the multiphase mechanism RACM- MIM2ext/CAPRAM 3.0i to investig...
Tropospheric deliquesced particles are characterised by concentrated non-ideal solutions ("aerosol l...
A reduced version of the complex aqueous phase mechanism CAPRAM3.0i (C3.0RED) was used in the region...
AbstractA reduced version of the complex aqueous phase mechanism CAPRAM3.0i (C3.0RED) was used in th...
PolyU Library Call No.: [THS] LG51 .H577P CEE 2015 Guo153 pages :color illustrations ;30 cmHigh conc...
Large parts of the troposphere are affected by clouds, whose aqueous-phase chemistry differs signifi...
A condensed multiphase halogen and dimethyl sulfide (DMS) chemistry mechanism for application in che...
Ambient tropospheric deliquesced particles generally comprise a complex mixture of electrolytes, org...
Ambient tropospheric deliquesced particles generally comprise a complex mixture of electrolytes, org...
International audienceA multiphase box model for a remote environment of the troposphere has been de...
In-cloud aqueous-phase chemistry is known to decrease tropospheric ozone (O3) via O3+O2- with hydrop...
Interest in the potential formation of secondary organic aerosol (SOA) through reactions of organic ...
In liquid cloud droplets, superoxide anion (O2(aq)-) is known to quickly consume ozone (O3(aq)), whi...
The gas phase oxidation of organic species is a multigenerational process involving a large number o...
An overview of the two FEBUKO aerosol–cloud interaction field experiments in the Thüringer Wald (Ger...