Seasonal aerosol acidity and liquid water content: impact on aerosol concentration and nitrogen deposition fluxes in a urban Canadian environment.
Athanasios Nenes(FORTH Institute of Chemical Engineering Sciences), Ewa Dąbek-Złotorzyńska(Environment and Climate Change Canada), Andrea M. Arangio(Max Planck Institute for Chemistry), Pourya Shahpoury(Trent University)
Cited by 0
Related Papers
ISORROPIA II: a computationally efficient thermodynamic equilibrium model for K <sup>+</sup> –Ca <sup>2+</sup> –Mg <sup>2+</sup> –NH <sub>4</sub> <sup>+</sup> –Na <sup>+</sup> –SO <sub>4</sub> <sup>2−</sup> –NO <sub>3</sub> <sup>−</sup> –Cl <sup>−</sup> –H <sub>2</sub> O aerosols
|Atmospheric chemistry and physics|2007|2k
Global atmospheric particle formation from CERN CLOUD measurements
|Science|2016|575
Past, Present, and Future Atmospheric Nitrogen Deposition
|Journal of the Atmospheric Sciences|2016|344
An overview of the ORACLES (ObseRvations of Aerosols above CLouds and their intEractionS) project: aerosol–cloud–radiation interactions in the southeast Atlantic basin
|Atmospheric chemistry and physics|2021|315
In-cloud oxalate formation in the global troposphere: a 3-D modeling study
|Atmospheric chemistry and physics|2011|284