International audienceA multiphase chemistry model coupled with a quasi-spectral microphysical model has been applied to measurements from the European Cloud Ice Mountain Experiment campaign to quantify the formation of the strong acids nitrate and sulfate and to evaluate the role of microphysical processes in redistributing reactive species among the different phases (gas versus cloud and/or rain). Significant formation of nitrate and sulfate are found to be due to the reaction of pernitric acid with the sulfite ion. Moreover, pernitric acid, because of its equilibrium in the gas phase and its high solubility, is always available both in cloud water and in rainwater via mass transfer from the gas phase. The sulfite ion comes from the mass ...
A one‐dimensional photochemical model for cloud‐topped boundary layers is developed which includes d...
Clouds are reaction chambers for atmospheric trace gases and aerosols, and the associated precipitat...
A size-resolved droplet physico chemical model linked to a Lagrangian parcel framework was developed...
International audienceA multiphase chemistry model coupled with a quasi-spectral microphysical model...
International audienceThe Model of Multiphase Cloud Chemistry M2C2 has recently been extended to acc...
International audienceEvidence of the efficient removal of chemicals by ice particles has been deduc...
We estimate the effect of selected small organic species, present in aerosol particles as internal m...
International audienceIn order to study scavenging processes of chemical species in mixed phase clou...
The relevance of ion-induced nucleation of sulfuric acid and water (IINSW) in the troposphere over t...
International audienceA multiphase cloud chemistry model coupling a detailed chemical reactivity mec...
We first examine characteristics of in-cloud sulfate chemistry of a mid-latitude convective cloud us...
To evaluate the precision of a three dimensional cloud chemistry model, the ion concentrations of si...
International audienceChemical reactions of dissolved gases in the liquid phase play a key role in a...
Abstract. A model with spectral microphysics was developed to describe the scavenging of nitrate aer...
A one‐dimensional photochemical model for cloud‐topped boundary layers is developed which includes d...
Clouds are reaction chambers for atmospheric trace gases and aerosols, and the associated precipitat...
A size-resolved droplet physico chemical model linked to a Lagrangian parcel framework was developed...
International audienceA multiphase chemistry model coupled with a quasi-spectral microphysical model...
International audienceThe Model of Multiphase Cloud Chemistry M2C2 has recently been extended to acc...
International audienceEvidence of the efficient removal of chemicals by ice particles has been deduc...
We estimate the effect of selected small organic species, present in aerosol particles as internal m...
International audienceIn order to study scavenging processes of chemical species in mixed phase clou...
The relevance of ion-induced nucleation of sulfuric acid and water (IINSW) in the troposphere over t...
International audienceA multiphase cloud chemistry model coupling a detailed chemical reactivity mec...
We first examine characteristics of in-cloud sulfate chemistry of a mid-latitude convective cloud us...
To evaluate the precision of a three dimensional cloud chemistry model, the ion concentrations of si...
International audienceChemical reactions of dissolved gases in the liquid phase play a key role in a...
Abstract. A model with spectral microphysics was developed to describe the scavenging of nitrate aer...
A one‐dimensional photochemical model for cloud‐topped boundary layers is developed which includes d...
Clouds are reaction chambers for atmospheric trace gases and aerosols, and the associated precipitat...
A size-resolved droplet physico chemical model linked to a Lagrangian parcel framework was developed...