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E-cigarette aerosol collection using converging and straight tubing sections: physical mechanisms
Accepted manuscript   Open access   Peer reviewed

E-cigarette aerosol collection using converging and straight tubing sections: physical mechanisms

Markus Hilpert, Vesna Ilievski, Shao-Yiu Hsu, Ana M. Rule, Pablo Olmedo and German Drazer
Journal of colloid and interface science, Vol.584, pp.804-815
02/15/2021
DOI:
https://doi.org/10.7282/t3-gcx9-v016
PMID: 33268068

Abstract

Aerosol collection Visualization experiments Coalescence Inertial impaction E-cigarette
Hypothesis Identification and quantification of harmful chemicals in e-cigarette aerosol requires collecting the aerosolized e-liquid for chemical analysis. In 2016, Olmedo at al. empirically developed a simple method for aerosol collection by directing the aerosol through a sequence of alternating straight and converging tubing sections, which drain the recovered e-liquid into a collection vial. The tubing system geometry and flow conditions promote inertial impaction of aerosolized e-liquid on tube walls, where it deposits and flows into the collection vial. Experiments We use high-speed optical imaging to visualize aerosol transport in proxies of the collection system. We also determined collection efficiencies of various configurations of the collection system. Findings A turbulent jet emerges from converging conical sections and impinges onto the wall of downstream tubing sections, resulting in inertial impaction and deposition of the aerosol. For inertial impaction to occur the tip radius of the converging section must be small enough for a jet to be formed and the sequence of tubing sections must be curved in a polygon-like manner such that the jet emerging from a converging section impinges on the downstream tube wall. The collection efficiency is significantly smaller without such curvature.
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Accepted Manuscript (AM) Open Access CC BY-NC-ND V4.0
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https://doi.org/10.1016/j.jcis.2020.10.011View
Journal of Colloid and Interface Science
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