Wetted Wall Cyclones for Bioaerosol Sampling

Циклоны с увлажнённой стенкой для отбора биоаэрозолей
Andrew R. McFarland, John Haglund, Maria D. King, Shishan Hu, Manpreet Singh Phull, Brandon Wayne Moncla, Youngjin Seo
2010-02-19

Bacillus atrophaeus sporesStokes scalingaerosol-to-hydrosol collection efficiencybioaerosol samplingwetted wall cyclone
A wetted wall bioaerosol sampling cyclone with an aerosol sampling flow rate of 1250 L/min and a continuous liquid outflow rate of about 1 mL/min was developed by upgrading an existing system. The aerosol-to-hydrosol collection efficiency curve for the upgraded device was shown to have a cutpoint of 1.2 μ m aerodynamic diameter (AD) and an average collection efficiency of 90% over the size range of 2 to 10.2 μ m AD. Tests with near-monodisperse cells and clusters of Bacillus atrophaeus (aka BG) spores showed an average aerosol-to-hydrosol collection efficiency of 98% over the size range from 1.7 to 9.8 μ m AD. Pressure drop across the cyclone, which is also the ideal specific power, was 5.5 kPa (22 inches H2O). Stokes scaling was used to design geometrically similar cyclones with nominal air sampling flow rates of 100 and 300 L/min. Extensive tests were performed with the 100 L/min unit and check tests with the 300 L/min. Results with the scaled units showed similar, although somewhat lower collection efficiencies than the 1250 L/min device, but with lower consumption of liquid and lower pressure losses. For the 100 L/min cyclone, the cutpoint of the aerosol-to-hydrosol efficiency curve was 1.2 μ m AD, and the average collection efficiency for single cells and clusters of BG spores was 86% over a size range of 1.2 to 8.3 μ m AD. Also, for the 100 L/min cyclone, typical output liquid flow rates were 100 μ L/min, and the pressure loss was 1.6 kPa (6.4 inches H2O).
1
An upgraded wetted-wall cyclone sampled bioaerosols at 1250 L/min with continuous hydrosol outflow of approximately 1 mL/min.
2
Near-monodisperse Bacillus atrophaeus spores and clusters showed 98% average aerosol-to-hydrosol collection efficiency across 1.7–9.8 μm aerodynamic diameter.
3
Stokes scaling enabled geometrically similar 100 and 300 L/min cyclones with lower liquid consumption and pressure losses, though somewhat reduced collection efficiencies.
4
The 100 L/min cyclone retained a 1.2 μm cutpoint, achieved 86% average spore collection efficiency from 1.2 to 8.3 μm, and operated with 100 μL/min liquid outflow and 1.6 kPa pressure loss.
5
The 1250 L/min device had a 1.2 μm aerodynamic-diameter cutpoint and 90% average collection efficiency for particles from 2 to 10.2 μm.

Wetted-wall cyclones for bioaerosol sampling, including 1250, 100, and 300 L/min devices

Aerosol-to-hydrosol collection efficiency, aerodynamic cutpoint, liquid consumption, and pressure loss for collecting Bacillus atrophaeus spores and clusters

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Publication Date
2010-02-19
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Authors
Andrew R. McFarland
John Haglund
Maria D. King
Shishan Hu
Manpreet Singh Phull
Brandon Wayne Moncla
Youngjin Seo
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