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Evaluation of newly developed nose-only inhalation exposure chamber for nanoparticles

Authors
Jeon, KiSooYu, Il JeAhn, Kang-Ho
Issue Date
Aug-2012
Publisher
Taylor & Francis
Keywords
Nose-only exposure chamber; computational fluid dynamics; inhalation toxicity; numerical analysis; particle size distribution and concentration
Citation
Inhalation Toxicology, v.24, no.9, pp 550 - 556
Pages
7
Indexed
SCI
SCIE
SCOPUS
Journal Title
Inhalation Toxicology
Volume
24
Number
9
Start Page
550
End Page
556
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/32213
DOI
10.3109/08958378.2012.696742
ISSN
0895-8378
1091-7691
Abstract
In this study, a direct-flow-type nose-only exposure chamber developed for inhalation toxicity experiments using a numerical analysis and experiments is evaluated. Maintaining a uniform flow rate and test article concentration are the critical factors when designing an inhalation exposure chamber. Therefore, this study evaluated whether the flow rate and particle size distribution at the injection nozzles at each port could be maintained with a deviation below 10%. To achieve this requirement, a nose-only exposure chamber flow field was simulated using a numerical analysis method, i.e. computational fluid dynamics (CFD) code FLUENT 6.3.26. Based on the simulation results, a test chamber was built and tested. The flow velocity was measured at the injection nozzle of the chamber and the aerosol particle size distribution was also measured at each port while inserting the test material into the exposure chamber. The results indicated that a uniform flow field distribution at each stage and port, the deviation of the flow velocity, and particle size distribution were all within 10%. Thus, the resulting nose-only exposure chamber could be described as well-designed.
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