Titel
A new high transmission inlet for the Caltech nano-RDMA for size distribution measurements of sub-3 nm ions at ambient concentrations
Autor*in
A. Franchin
Department of Physics, University of Helsinki
Autor*in
A. J. Downard
Division of Chemistry and Chemical Engineering, California Institute of Technology
Autor*in
J. Kangasluoma
Department of Physics, University of Helsinki
... show all
Abstract
Reliable and reproducible measurements of atmospheric aerosol particle number size distributions below 10nm require optimized classification instruments with high particle transmission efficiency. Almost all DMAs have an unfavorable potential gradient at the outlet (e.g. long column, Vienna type) or at the inlet (nano-radial DMA). This feature prevents them from achieving a good transmission efficiency for the smallest nanoparticles. We developed a new high transmission inlet for the Caltech nano-radial DMA (nRDMA) that increases the transmission efficiency to 12% for ions as small as 1.3nm in mobility equivalent diameter (corresponding to 1.2x10-4 m2 V-1 s-1 in electrical mobility). We successfully deployed the nRDMA, equipped with the new inlet, in chamber measurements, using a Particle Size Magnifier (PSM) and a booster Condensation Particle Counter (CPC) as a counter. With this setup, we were able to measure size distributions of ions between 1.3 and 6 nm, corresponding to a mobility range from 1.2x10-4 to 5.8x10-6 m2 V-1 s-1. The system was modeled, tested in the laboratory and used to measure negative ions at ambient concentrations in the CLOUD 7 measurement campaign at CERN. We achieved a higher size resolution than techniques currently used in field measurements, and maintained a good transmission efficiency at moderate inlet and sheath air flows (2.5 and 30 LPM, respectively). In this paper, by measuring size distribution at high size resolution down to 1.3 nm, we extend the limit of the current technology. The current setup is limited to ion measurements. However, we envision that future research focused on the charging mechanisms could extend the technique to measure neutral aerosol particles as well, so that it will be possible to measure size distributions of ambient aerosols from 1nm to 1 μm.
Objekt-Typ
Sprache
Englisch [eng]
Persistent identifier
https://phaidra.univie.ac.at/o:446790
Erschienen in
Titel
Atmospheric Measurement Techniques Discussions
Band
8
Ausgabe
6
Seitenanfang
5847
Seitenende
5876
Verlag
Copernicus GmbH
Erscheinungsdatum
2015
Zugänglichkeit

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