Gas and aerosol samples were taken using a wet effluent diffusion denuder/aerosol collector (WEDD/AC) coupled to ion chromatography (IC) in the city of Zurich, Switzerland from August to September 2002 and in March 2003. Major water soluble inorganic ions; nitrate, sulfate, and nitrite were analyzed online with a time resolution of two hours for the gas and aerosol phase. The fraction of water soluble inorganic anions in PM10 varied from 15% in August to about 38% in March. Seasonal and diurnal variations of nitrate in the gas and aerosol phase were observed with more than 50% of the total nitrate in the gas phase during August and more than 80% of nitrate in the aerosol phase during March exceeding the concentration of sulfate by a factor ...
In order to understand the seasonal levels, formation mechanism and atmospheric chemical behaviours ...
Secondary inorganic aerosol (SIA), i.e. particulate sulphate (S(VI)), ammonium and nitrate (N(V)) is...
International audienceSimilarities and differences in the submicron atmospheric aerosol chemical com...
Gas and aerosol samples were taken using a wet effluent diffusion denuder/aerosol collector (WEDD/AC...
[ 1] We discuss the diurnal and seasonal variability of low molecular weight organic acids in Zurich...
A detailed description of an interactive relationship is made between water-soluble ionic components...
To gain an understanding of the characteristics of nitrate, sulfate and ammonium in the urban atmosp...
Water-soluble ionic constituents (Cl-, NO3-, SO42-, Na+, NH4+, K+, Mg2+ and Ca2+) of PM2.5 were meas...
In order to understand the behavior of fine particles (FP; less than 2.5 μm) in the atmosphere, a be...
Mobile measurements of PM<sub>1</sub> (particulate matter with an aerodynamic diameter &...
A comprehensive range of gas and particle phase pollutants were sampled at 1-hour time resolution in...
Aerosol samples were collected in Zurich, Switzerland, at an urban background site and were analyzed...
[[abstract]]Concentrations and distributions of water-soluble ion species contained in ambient parti...
Similarities and differences in the submicron atmospheric aerosol chemical composition are analyzed ...
Various water-soluble inorganic compounds, including Na+, NH4+, K+, Ca2+, Mg2+, Cl-, NO3-, PO43- and...
In order to understand the seasonal levels, formation mechanism and atmospheric chemical behaviours ...
Secondary inorganic aerosol (SIA), i.e. particulate sulphate (S(VI)), ammonium and nitrate (N(V)) is...
International audienceSimilarities and differences in the submicron atmospheric aerosol chemical com...
Gas and aerosol samples were taken using a wet effluent diffusion denuder/aerosol collector (WEDD/AC...
[ 1] We discuss the diurnal and seasonal variability of low molecular weight organic acids in Zurich...
A detailed description of an interactive relationship is made between water-soluble ionic components...
To gain an understanding of the characteristics of nitrate, sulfate and ammonium in the urban atmosp...
Water-soluble ionic constituents (Cl-, NO3-, SO42-, Na+, NH4+, K+, Mg2+ and Ca2+) of PM2.5 were meas...
In order to understand the behavior of fine particles (FP; less than 2.5 μm) in the atmosphere, a be...
Mobile measurements of PM<sub>1</sub> (particulate matter with an aerodynamic diameter &...
A comprehensive range of gas and particle phase pollutants were sampled at 1-hour time resolution in...
Aerosol samples were collected in Zurich, Switzerland, at an urban background site and were analyzed...
[[abstract]]Concentrations and distributions of water-soluble ion species contained in ambient parti...
Similarities and differences in the submicron atmospheric aerosol chemical composition are analyzed ...
Various water-soluble inorganic compounds, including Na+, NH4+, K+, Ca2+, Mg2+, Cl-, NO3-, PO43- and...
In order to understand the seasonal levels, formation mechanism and atmospheric chemical behaviours ...
Secondary inorganic aerosol (SIA), i.e. particulate sulphate (S(VI)), ammonium and nitrate (N(V)) is...
International audienceSimilarities and differences in the submicron atmospheric aerosol chemical com...