Penetration and pressure drop of a HEPA filter during loading with submicron liquid particles

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Abstract

Experiments and a model have been made of the effects of mass loading of a HEPA fiber filter during filtration of submicron liquid aerosol particles. The measurements reveal that penetration of the test medium increased during clogging by a liquid aerosol, irrespective of particle size within the chosen range (0.02-0.5 μm). The physicochemical properties of the test aerosol did not seem to affect this phenomenon. Application of a non-stationary filtration model by Payet [1991, Thèse, Université Paris, 150 p] (based on the correlation of Liu and Rubow [1990, 5th World Filt. Congress, Nice 3, 112] showed that the increase in penetration can be explained in part by an increase in interstitial velocity and in part by a decrease in the number of fibers available for capture of particles. © 1992.

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Payet, S., Boulaud, D., Madelaine, G., & Renoux, A. (1992). Penetration and pressure drop of a HEPA filter during loading with submicron liquid particles. Journal of Aerosol Science, 23(7), 723–735. https://doi.org/10.1016/0021-8502(92)90039-X

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