Browse > Article
http://dx.doi.org/10.3795/KSME-B.2003.27.2.197

Effect of Particle Clogging in Orifices on the Particle Collection Efficiency of a Micro-Orifice Impactor  

Ji, Jun-Ho (연세대학교 대학원 기계공학과)
Bae, Gwi-Nam (한국과학기술연구원 지구환경연구센터)
Hwang, Jung-Ho (연세대학교 기계공학과)
Publication Information
Transactions of the Korean Society of Mechanical Engineers B / v.27, no.2, 2003 , pp. 197-205 More about this Journal
Abstract
A cascade impactor is a multistage impaction device used to separate airborne particles into aerodynamic size classes. A micro-orifice impactor uses micro-orifice nozzles to extend the cut sizes of the lower stages to as small as 0.05 ${\mu}{\textrm}{m}$ in diameter without resorting to low pressures or creating excessive pressure drops across the impactor stages. In this work, the phenomenon of particle clogging in micro-orifice nozzles was experimentally investigated for a commercial micro-orifice uniform deposit impactor (MOUDI). It was observed, using an optical microscope, that the micro-orifice nozzles of the final stages were partially clogged due to particle deposition during the aerosol sampling. Therefore the pressure drops across the nozzles were higher than the nominal values given by the manufacturer. To examine the effect of particle clogging in micro-orifice nozzles, the particle collection efficiency of the MOUDI was evaluated using an electrical method for fine particles with diameters in the range of 0.1-0.6 ${\mu}{\textrm}{m}$. The monodisperse liquid dioctyl sebacate (DOS) particles were used as test aerosols. A faraday cage was employed to measure the low-level current of the charged particles upstream and downstream of each stage. It was found that the collection efficiency curves shifted to correspond to smaller orifice sizes, and the 50-% cutoff sizes were much smaller than those given by the manufacturer for the three stages with nozzles less than 400 ${\mu}{\textrm}{m}$ in diameter.
Keywords
Cascade Impactor; Collection Efficiency; Micro-orifice; Nozzle Clogging;
Citations & Related Records
Times Cited By KSCI : 6  (Citation Analysis)
연도 인용수 순위
1 Howell, S., Pszenny, A.A.P., Quinn, P., and Huebert, B., 1998, 'A Field Intercomparison of Three Cascade Impactors,' Aerosol Sci. Technoi., Vol. 29, pp. 475-492   DOI
2 Kim, Y.P, Bae, G.N., Ji, J.H., Jin, H.C. and Moon, K.C., 1999, 'Aerosol Size Distribution and Composition at Kosan, Cheju Island: Measurements in April 1998,' Journal of Korean Society for Atmospheric Environment, Vol. 15, No. 5, pp. 67 7-685   과학기술학회마을
3 Bae, G.N., Ji, J.H. and Moon, K.C., 1999, 'Collection Characteristics of a MOUD1 Cascade Impactor for Coarse Particles,' Journal of Korean Society for Atmospheric Environment, Vol. 15, No. 6, pp. 799-804
4 Ji, J.H, Hwang, J., Bae, G.N. and Kim, Y.G, 2001, 'Experimental Study on Electrical Agglomeration of Liquid Particles in an Alternating Electric Field,' KSME Journal B, Vol. 25, No. 3, pp. 442-450
5 MSP Corporation, 1992, Model 100/Model 110 Micro-Orifice Uniform Deposit lmpactor Instruction Manual (MOUDI)
6 Park, J.H. and Choi, K.C., 1997, 'Characterization of Chemical Composition and Size Distribution of Atmospheric Aerosols by Low-Pressure lmpactor,' Journal of Korea Air Pollution Research Association, Vol. 13, No. 6, pp. 475-486   과학기술학회마을
7 Lodge, Jr., J.P. and Chan, T.L., 1986, Cascade Impactor: Sampling & Data Analysis, American Industrial Hygiene Association
8 Ji, J.H., Bae, G.N., and Hwang, J., 2001, 'Design and Performance Evaluation of a Three Stage lmpactor,' Journal of Korean Society for Atmospheric Environment, Vol. 17, No. 6, pp. 441-450   과학기술학회마을
9 Hillamo, R.E. and Kauppinen, E.I, 1991, 'On the Performance of the Berner Low Pressure lmpactor,' Aerosol Sci. Technol. Vol. 14, pp. 33-47   DOI   ScienceOn
10 Rader, D.J. and Marple, V.A., 1985, 'Effect of Ultra-Stokesian Drag and Particle Interception on Impaction Characteristics,' Aerosol Sci. Technol., Vol. 4, pp. 141-156   DOI   ScienceOn
11 Marple, V.A., Rubow, K.L., and Behm, S.M., 1991, 'A Microorifice Uniform Deposit lmpactor (MOUDI): Description, Calibration, and Use,' Aerosol Sci. Technoi., Vol. 14, pp. 434-446   DOI   ScienceOn
12 Rader, D.J., Mondy, L.A., Brockmann, J.E., Lucero, D.A., and Rubow, K.L., 1991, 'Stage Response Calibration of the Mark III and Marple Personal Cascade Impactors,' Aerosol Sci. Technoi., Vol. 14, pp. 365-379   DOI   ScienceOn
13 Juan, L, Brown, S, Serageldin, K, Davis, N, Rosell, J, Lazcano, J, and Mora, F, 1997. 'Electrostatic Effects in Inertial Impactors,' J. Aerosol Sci., Vol. 28, No. 6, pp. 1029-1048   DOI   ScienceOn
14 Knuth, R.H., 1984, 'Calibration and Field Application of a Sierra Model 235 Cascade lmpactor,' Am. Ind. Hyg. Assoc. J., Vol. 45, No. 6, pp. 393-398   DOI   ScienceOn