전기방사를 통해 제조된 정전기 보유 필터의 표면전위 및 대전량에 따른 성능특성 분석

Characteristic Analysis of Electret Filters made by Electrospinning

  • Kim, Gil-Tae (Housing and Urban Research Institute, Korea National Housing Corporation) ;
  • Ahn, Young-Chull (School of Architecture, Pusan National University) ;
  • Lee, Jae-Keun (School of Mechanical Engineering, Pusan National University)
  • 발행 : 2008.12.10

초록

Electret filter media are used in general ventilation filters, disposable respirators, vehicle cabin filters, vacuum cleaners and room air cleaners. There are basic mechanisms of interception, inertial impaction, diffusion, gravitational settling, electrostatic attraction by which an aerosol particle can be deposited onto a fiber in a filter. The ability of fine particle removal strongly depends on the electrostatic forces between particles and polarized fibers. Thus, the stability of the fiber polarization is a major factor in the reliability of electret filters. In this study, the electret filter is made by electrospinning process using Polystyrene which is dissolved by 5 : 5 of Tetrahydrofuran (THF) and Dimethylformamide (DMF). Also the electrical properties and the filtration performances of electrospun filter media are Quantitatively investigated. Electrical properties of electrospun filters have been studied on surface charge potential and surface charge density. Also the filtration performance of the electret filters are evaluated on collection efficiency. The surface charge potential and the surface charge density of electrospun PS filters are increased with increasing applied voltage and saturated at 30 kV of applied voltage. Also collection efficiency of electro spun filters is increased with increasing surface charge potential and surface charge density. But the surface charge potential is decreased by natural decay and it causes deterioration of particle collection efficiency.

키워드

참고문헌

  1. Moshkin, A. A. and Moshkina, S. A., 1997, Electrical Filters made of Polymer Materials, Journal of Electrostatics, Vol. 40, No. 41, pp. 681-685 https://doi.org/10.1016/S0304-3886(97)00115-0
  2. Gutfinger, C., Moldavsky, L., Shuster, K., Fichman, M. and Pnueli, D., 2000, Enhancing the Efficiency of the Electrostatic Filter, J. Aerosol Sci, Vol. 31, pp. 608-609 https://doi.org/10.1016/S0021-8502(00)90617-7
  3. Peter, P. T., Hei, S. G., and Phillip, G., 2002, Different electrostatic methods for making electret filters, Journal of Electrostatics, Vol. 54, pp. 333-341 https://doi.org/10.1016/S0304-3886(01)00160-7
  4. Turnhout, J. V., 1980, Electret filters for High Efficiency Air Cleaning, Journal of Electrostatics, pp. 369-379
  5. Horenstein, M. N., 1995, Surface Charging Limit for a Woven Fabric on a Ground Plane, Journal of Electrostatics, Vol. 35, pp. 31-40 https://doi.org/10.1016/0304-3886(95)00020-B