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Regular Articles

Impact of Relative Humidity on HVAC Filters Loaded with Hygroscopic and Non-Hygroscopic Particles

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Pages 322-331 | Received 03 Oct 2014, Accepted 22 Feb 2015, Published online: 08 Apr 2015

REFERENCES

  • Arnold, B. D., Matela, D. M., and Veeck, A. C. (2005). Life-Cycle Costing of Air Filtration. ASHRAE J. 47(11):30–32.
  • ASHRAE. (2012). ANSI/ASHRAE Standard 52.2–2012, Method of Testing General Ventilation Air-Cleaning Devices for Removal Efficiency by Particle Size. American Society of Heating, Refrigerating, and Air Conditioning Engineers, Atlanta, GA.
  • Bémer, D., and Callé, S. (2000). Evolution of the Efficiency and Pressure Drop of a Filter Media with Loading. Aerosol Sci. Technol. 33(5):427–439.
  • Biskos, G., Russell, L. M., Buseck, P. R., and Martin, S. T. (2006). Nanosize Effect on the Hygroscopic Growth Factor of Aerosol Particles. Geophys. Res. Lett. 33(7):L07801.
  • Brown, R. C. (1993). Air Filtration—An Integrated Approach to the Theory and Applications of Fibrous Filters. Pergaman Press, New York, NY.
  • Bruzewicz, D. A., Checco, A., Ocko, B. M., Lewis, E. R., McGraw, R. L., and Schwartz, S. E. (2011). Reversible Uptake of Water on NaCl Nanoparticles at Relative Humidity below Deliquescence Point Observed by Noncontact Environmental Atomic Force Microscopy. J. Chem. Phys. 134(4):044702.
  • Endo, Y., Chen, D. R., and Pui, D. (1998). Bimodal Aerosol Loading and Dust Cake Formation on Air Filters. Filtr. Sep. 35(2):191–195.
  • Fisk, W. J., Faulkner, D., Palonen, J., and Seppanen, O. (2002). Performance and Costs of Particle Air Filtration Technologies. Indoor Air 12(4):223–234.
  • Gupta, A., Novick, V. J., Biswas, P., and Monson, P. R. (1993). Effect of Humidity and Particle Hygroscopicity on the Mass Loading Capacity of High Efficiency Particulate Air (HEPA) Filters. Aerosol Sci. Technol. 19(1):94–107.
  • Hu, D., Qiao, L., Chen, J., Ye, X., Yang, X., Cheng, T., and Fang, W. (2010). Hygroscopicity of Inorganic Aerosols: Size and Relative Humidity Effects on the Growth Factor. Aerosol Air Qual. Res. 10:255–264.
  • Japuntich, D. A., Stenhouse, J., and Liu, B. Y. H. (1994). Experimental Results of Solid Monodisperse Particle Clogging of Fibrous Filters. J. Aerosol Sci. 25(2):385–393.
  • Joubert, A., Laborde, J. C., Bouilloux, L., Callé-Chazelet, S., and Thomas, D. (2010). Influence of Humidity on Clogging of Flat and Pleated HEPA Filters. Aerosol Sci. Technol. 44(12):1065–1076.
  • Joubert, A., Laborde, J. C., Bouilloux, L., Chazelet, S., and Thomas, D. (2011). Modelling the Pressure Drop Across HEPA Filters During Cake Filtration in the Presence of Humidity. Chem. Eng. J. 166(2):616–623.
  • Kasper, G., Schollmeier, S., and Meyer, J. (2010). Structure and Density of Deposits Formed on Filter Fibers by Inertial Particle Deposition and Bounce. J. Aerosol Sci. 41(12):1167–1182.
  • Langlet, M., Nadaud, F., Benali, M., Pezron, I., Saleh, K., Guigon, P., and Metlas-Komunjer, L. (2011). Kinetics of Dissolution and Recrystallization of Sodium Chloride at Controlled Relative Humidity. Kona Hosokawa Powder Technol. Found. 29:168–179.
  • Miguel, A. F. (2003). Effect of Air Humidity on the Evolution of Permeability and Performance of a Fibrous Filter During Loading with Hygroscopic and Non-Hygroscopic Particles. J. Aerosol Sci. 34(6):783–799.
  • Montgomery, J. F., Green, S. I., Rogak, S. N., and Bartlett, K. (2012). Predicting the Energy use and Operation Cost of HVAC Air Filters. Energy Buildings. 47:643–650.
  • Novick, V. J., Klassen, J. F., and Monson, P. R. (1992). Predicting Mass Loading as a Function of Pressure Difference Across Prefilter/Hepa Filter Systems. 22nd DOE/NRC Nuclear Air Cleaning and Treatment Conference, Denver, CO.
  • Pöschl, U. (2005). Atmospheric Aerosols: Composition, Transformation, Climate and Health Effects. Angew. Chem. Int. Edit. 44(46):7520–7540.
  • Raynor, P. C., and Chae, S.-J. (2003). Dust Loading on Electrostatically Charged Filters in a Standard Test and a Real HVAC System. Filtr. Sep. 40(2):35–39.
  • Romay, F. J., Liu, B. Y. H., and Chae, S.-J. (1998). Experimental Study of Electrostatic Capture Mechanisms in Commercial Electret Filters. Aerosol Sci. Technol. 28(3):224–234.
  • Sanchez, A. L., Hubbard, J. A., Dellinger, J. G., and Servantes, B. L. (2013). Experimental Study of Electrostatic Aerosol Filtration at Moderate Filter Face Velocity. Aerosol Sci. Technol. 47(6):606–615.
  • Song, C. B., Park, H. S., and Lee, K. W. (2006). Experimental Study of Filter Clogging with Monodisperse PSL Particles. Powder Technol. 163(3):152–159.
  • Sun, C., and Woodman, D. (2009). Delivering Sustainability Promise to HVAC Air Filtration—Part I: Classification of Energy Efficiency for Air Filters. ASHRAE Trans. 115:581.
  • Thomas, D., Contal, P., Renaudin, V., Penicot, P., Leclerc, D., and Vendel, J. (1999). Modelling Pressure Drop in HEPA Filters During Dynamic Filtration. J. Aerosol Sci. 30(2):235–246.
  • Thomas, D., Penicot, P., Contal, P., Leclerc, D., and Vendel, J. (2001). Clogging of Fibrous Filters by Solid Aerosol Particles—Experimental and Modelling Study. Chem. Eng. Sci. 56(11):3549–3561.
  • Walsh, D. C., and Stenhouse, J. (1997). The Effect of Particle Size, Charge, and Composition on the Loading Characteristics of an Electrically Active Fibrous Filter Material. J. Aerosol Sci., 28(2):307–321.
  • Walsh, D. C., and Stenhouse, J. I. T. (1998). Parameters Affecting the Loading Behavior and Degradation of Electrically Active Filter Materials. Aerosol Sci. Technol. 29(5):419–432.
  • Weingartner, E., Burtscher, H., and Baltensperger, U. (1997). Hygroscopic Properties of Carbon and Diesel Soot Particles. Atmos. Environ. 31(15):2311–2327.
  • Wise, M. E., Martin, S. T., Russell, L. M., and Buseck, P. R. (2008). Water Uptake by NaCl Particles Prior to Deliquescence and the Phase Rule. Aerosol Sci. Technol. 42(4):281–294.

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