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The effect of carrier gas contaminants on the charging probability of aerosols under bipolar charging conditions

Autor(en)
Gerhard Steiner, Georg Reischl
Abstrakt

This work concentrates on the experimental determination of the properties of ionic molecular clusters that are produced in the bipolar ionic atmosphere of a radioactivity based 241Am charger. The main scope of this study was to investigate the dependency of the ions' properties on carrier gas contaminants caused by the evaporation of trace gases from different kinds of frequently encountered tubing materials. A recently developed high resolution mobility spectrometer allows the precise determination of the ions' electrical mobility; an empirical mass-mobility relationship was used to approximate the corresponding ion masses. It was found that impurities in the carrier gas dramatically change the pattern of the ion mobility/size distribution, resulting in very different ion properties that strongly depend on the carrier gas composition. Since the ion properties control the charging process of aerosols, it was further investigated how the different ion properties affect the calculation of the charging probabilities of aerosols. The results show that despite large variations of the ions' properties, only a minor effect on the calculated charging probabilities can be found.

Organisation(en)
Aerosolphysik und Umweltphysik
Journal
Journal of Aerosol Science
Band
54
Seiten
21-31
Anzahl der Seiten
11
ISSN
0021-8502
DOI
https://doi.org/10.1016/j.jaerosci.2012.07.008
Publikationsdatum
2012
Peer-reviewed
Ja
ÖFOS 2012
105904 Umweltforschung
Link zum Portal
https://ucrisportal.univie.ac.at/de/publications/2433b85f-7b3f-4c30-ae50-46a417165398