1,332
Views
14
CrossRef citations to date
0
Altmetric
INSTRUMENT DEVELOPMENT AND EVALUATION

Design of a Slot Nanoparticle Virtual Impactor

&
Pages 737-743 | Received 14 Apr 2005, Accepted 28 Feb 2006, Published online: 01 Feb 2007

REFERENCES

  • Biswas , P. and Flagan , R. C. 1984 . High Velocity Inertial Impactors . Environ. Sci. Technol. , 18 : 611 – 616 . [CSA]
  • Chutmanop , J. , Uji , N. , Furuuchi , M. and Kanaoka , C. Inertial Classification of Ultra Fine Particle by a Supersonic Virtual Impactor . The 17th Symposium on Aerosol Science & Technology . Higashi-Hiroshima, Japan. Japan Assoc. Aerosol Sci. Technol.
  • Dhaniyala , S. , Flagan , R. C. , Mckinney , R. A. and Wennberg , P. O. 2003 . Novel Aerosol/Gas Inlet for Aircraft Measurements . Aerosol Sci. Technol. , 37 ( 10 ) : 828 – 840 . [CROSSREF] [CSA]
  • Ding , Y. and Koutrakis , P. 2000 . Development of a Dichotomous Slit Nozzle Virtual Impactor . J. Aerosol Sci. , 31 ( 12 ) : 1421 – 1431 . [CROSSREF] [CSA]
  • Fernández de la Mora , J. , Rao , N. and McMurry , P. H. 1990 . Inertial Impaction of Fine Particles at Moderate Reynolds Numbers and in the Transonic Regime with a Thin-Plate Orifice Nozzle . J. Aerosol Sci. , 21 ( 5 ) : 889 – 909 . [CSA]
  • Flagan , R. C. 1982 . Compressible Flow Inertial Impactor . J. Colloid Interface Sci , 87 ( 1 ) : 291 – 297 . [CROSSREF] [CSA]
  • Forney , L. J. , Ravenhall , D. G. and Lee , S. S. 1982 . Experimental and Theoretical Study of a Two-Dimensional Virtual Impactor . Environ. Sci. Technol. , 16 : 492 – 497 . [CROSSREF] [CSA]
  • Furuuchi , M. Numerical Simulation of Flow and Particle Motion Inside a Supersonic Virtual Impactor . NSF-ESF International Symposium on Nanoparticle: Aerosols and Materials . July 5–6 2001 , Pusan, Korea. pp. 98 – 101 .
  • Hounam , R. F. and Sherwood , R. J. 1965 . Cascade Centripeter—A Device for Determining Concentration and Size Distribution of Aerosols . Am. Ind. Hyg. Assoc. J. , 26 : 122 – 131 . [INFOTRIEVE] [CSA]
  • Hering , S. W. 1987 . Calibration of the QCM Impactor for Stratospheric Sampling . Aerosol Sci. Technol. , 7 : 257 – 274 . [CSA]
  • Kim , T. K. , Seshadri , S. , Kihm , K. D. , Phares , D. J. and McIntyre , P. M. 2004 . Visualization of Defect Particle Transmission to the Major Flow of a Slit Virtual Impactor . Aerosol Sci. Technol. , 38 : 870 – 880 . [CROSSREF] [CSA]
  • Lee , P. , Chen , D. and Pui , D. Y. H. 2003 . Experimental Study of a Nanoparticle Virtual Impactor . J. Nanopart. Res. , 5 : 269 – 280 . [CROSSREF] [CSA]
  • Liu , P. , Ziemann , P. J. , Kittelson , D. B. and McMurry , P. H. 1995a . Generating Particle Beams of Controlled Dimensions and Divergence: I. Theory of Particle Motion in Aerodynamic Lenses and Nozzle Expansions . Aerosol Sci. Technol. , 22 : 293 – 313 . [CSA]
  • Liu , P. , Ziemann , P. J. , Kittelson , D. B. and McMurry , P. H. 1995b . Generating Particle Beams of Controlled Dimensions and Divergence: II. Experimental Evaluation of Particle Motion in Aerodynamic Lenses and Nozzle Expansions . Aerosol Sci. Technol. , 22 : 314 – 324 . [CSA]
  • Loo , B. W. and Cork , C. P. 1988 . Development of High Efficiency Virtual Impactors . Aerosol Sci. Technol. , 9 : 167 – 176 . [CSA]
  • Mallina , R. V. , Wexler , A. S. , Rhoads , K. P. and Johnston , M. V. 2000 . High-Speed Particle Beam Generation: A Dynamic Focusing Mechanism for Selecting Ultrafine Particles . Aerosol Sci. Technol. , 33 : 87 – 104 . [CROSSREF] [CSA]
  • Marple , V. A. and Chien , C. M. 1980 . Virtual Impactors: A Theoretical Study . Environ. Sci. Technol. , 14 : 976 – 985 . [CROSSREF] [CSA]
  • Middha , P. and Wexler , A. S. 2003 . Particle Focusing Characteristics of Sonic Jets . Aerosol Sci. Technol. , 37 : 907 – 915 . [CROSSREF] [CSA]
  • Middha , P. and Wexler , A. S. 2005 . Particle Focusing Characteristics of Matched Aerodynamic Lenses . Aerosol Sci. Technol. , 39 : 222 – 230 . [CROSSREF] [CSA]
  • Noone , K. J. , Ogren , J. A. , Heintzenberg , J. , Charlson , R. J. and Covert , D. S. 1988 . Design and Calibration of A Counterflow Virtual Impactor for Sampling of Atmospheric Fog and Cloud Droplets . Aerosol Sci. Technol , 8 ( 3 ) : 235 – 244 . [CSA]
  • Ravenhall , D. G. , Forney , L. J. and Hubbard , A. G. 1982 . Theory and Observation of a Two-Dimensional Virtual Impactor . J. Colloid Interface Sci. , 2 : 508 – 520 . [CROSSREF] [CSA]
  • Sioutas , C. , Koutrakis , P. and Burton , R. P. 1994a . Development of a Low Cut-Point Slit Virtual Impactor for Sampling Ambient Fine Particles . J. Aerosol Sci. , 25 ( 7 ) : 1321 – 1330 . [CROSSREF] [CSA]
  • Sioutas , C. , Koutrakis , P. and Olson , B. A. 1994b . Development and Evaluation of a Low Cut-Point Virtual Impactor . Aerosol Sci. Technol. , 21 : 223 – 235 . [CSA]
  • Sioutas , C. , Ferguson , S. T. , Wolfson , J. M. , Ozkaynak , H. and Koutrakis , P. 1996 . Inertial Collection of Fine Particles Using a High-Volume Rectangular Geometry Conventional Impactor . J. Aerosol Sci. , 28 ( 6 ) : 1015 – 1028 . [CROSSREF] [CSA]
  • Tsai , C. -J. and Lin , T. -Y. 2000 . Particle Collection Efficiency of Different Impactor Designs . Separation Sci. Technol. , 35 ( 16 ) : 2639 – 2650 . [CROSSREF] [CSA]
  • Willeke , K. 1976 . Temperature Dependence of Particle Slip in a Gaseous Medium . J. Aerosol Sci. , 7 : 381 – 387 . [CROSSREF] [CSA]

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.