2,169
Views
24
CrossRef citations to date
0
Altmetric
Original Articles

Investigation of a New Electrostatic Sampler for Concentrating Biological and Non-Biological Aerosol Particles

, , , &
Pages 463-471 | Received 01 Aug 2012, Accepted 13 Dec 2012, Published online: 28 Jan 2013

REFERENCES

  • Barthlott , W. and Neinhuis , C. 1997 . Purity of the Sacred Lotus, or Escape From Contamination in Biological Surfaces . Planta , 202 ( 1 ) : 1 – 8 .
  • Caruana , D. J. 2011 . Detection and Analysis of Airborne Particles of Biological Origin: Present and Future . Analyst , 136 : 4661 – 4652 .
  • Davidson , J. H. and McKinney , P. J. 1998 . Chemical Vapor Deposition in the Corona Discharge of Electrostatic Air Cleaners . Aerosol Sci. Tech. , 29 : 102 – 110 .
  • Farnoosh , N. , Adamiak , K. and Castle , G. S. P. 2011 . 3D Numerical Study of Wire-Cylinder Precipitator for Collecting Ultrafine Particles From Diesel Exhaust . IEEE-IAS Annu. Meeting , : 1 – 5 .
  • Feng , L. , Li , S. , Li , Y. , Li , H. , Zhang , L. and Zhai , J. 2002 . Super-Hydrophobic Surfaces: From Natural to Artificial . Adv. Mater. , 14 ( 24 ) : 1857 – 1860 .
  • Han , B. , Hudda , N. , Ning , Z. , Kim , Y. J. and Sioutas , C. 2009 . Efficient Collection of Atmospheric Aerosols with a Particle Concentrator - Electrostatic Precipitator Sampler . Aerosol Sci. Tech. , 43 : 757 – 766 .
  • Han , T. , An , H. R. and Mainelis , G. 2010 . Performance of an Electrostatic Precipitator with Superhydrophobic Surface when Collecting Airborne Bacteria . Aerosol Sci. Tech. , 44 : 339 – 348 .
  • Han , T. and Mainelis , G. 2008 . Design and Development of an Electrostatic Sampler for Bioaerosols with High Concentration rate . Aerosol Sci. , 39 : 1066 – 1078 .
  • Heidelberg , J. F. , Shahamat , M. , Levin , M. , Rahman , I. , Stelma , G. Grim , C. 1997 . Effect of Aerosolization on Culturability and Viability of Gram-Negative Bacteria . Appl. Environ. Microbiol. , 63 ( 9 ) : 3585 – 3588 .
  • Hinds , W. C. 1999 . Aerosol Technology: Properties, Behavior, and Measurement of Airborne Particles, 2nd ed. , New York : Wiley .
  • Hogan , C. J. Jr , Kettleson , E. M. , Lee , M.-H. , Ramaswami , B. , Angenent , L. T. and Biswas , P. 2005 . Sampling Methodologies and Dosage Assessment Techniques for Submicrometre and Ultrafine Virus Aerosol Particles . J. Appl. Microbiol. , 99 : 1422 – 1434 .
  • Jaworek , A. , Krupa , A. and Czech , T. 2007 . Modern Electrostatic Devices and Methods for Exhaust Gas Cleaning: A Brief Review . Journal of Electrostatics , 65 ( 3 ) : 133 – 155 .
  • Lawless , P. A. and Sparks , L. E. 1985 . Review of Mathematical Models for ESPs and Comparison of Their Successes . Technical Report of the U.S. Department of Energy , : 513 – 522 .
  • Leonard , G. L. , Mitchner , M. and Self , S. A. 1983 . An Experimental Study of the Electrohydrodynamic Flow in Electrostatic Precipitator . J. Fluid. Mech. , 127 : 123 – 140 .
  • Li , C. , Liu , S. and Zhu , Y. 2010 . Determining Ultrafine Particle Collection Efficiency in a Nanometer Aerosol Sampler . Aerosol Sci. Tech. , : 1027 – 1041 .
  • Liang , W. J. and Lin , T. H. 1994 . The Characteristics of Ionic Wind and Its Effect on Electrostatic Precipitators . Aerosol Sci. Tech. , 20 ( 4 ) : 330 – 344 .
  • Long , Z. and Yao , Q. 2010 . Evaluation of Various Particle Charging Models for Simulating Particle Dynamics in Electrostatic Precipitators . J. Aerosol Sci. , 41 : 702 – 718 .
  • Madsen , A. M. and Sharma , A. K. 2008 . Sampling of High Amounts of Bioaerosols Using a High-Volume Electrostatic Field Sampler . Ann. Occup. Hyg. , 52 ( 3 ) : 167 – 176 .
  • Mainelis , G. , Adhikari , A. , Willeke , K. , Lee , S. A. , Reponen , T. and Grinshpun , S. A. 2002 . Collection of Airborne Microorganisms by a New Electrostatic Precipitator . Aerosol Sci. , 33 : 1417 – 1432 .
  • Mainelis , G. , Grinshpun , S. A. , Willeke , K. and Reponen , T. 1999 . Collection of Airborne Microorganisms by Electrostatic Precipitation . Aerosol Sci. Tech. , 30 : 127 – 144 .
  • Mizuno , A. 2000 . Electrostatic Precipitation . IEEE T. Dielect. El. In. , 7 ( 5 ) : 615 – 624 .
  • Nashimoto , K. 1988 . Growth Behavior of Silicon Oxide on Wire Anode of Positive Corona Discharge . Jpn. J. Appl. Phys. , 27 ( 8 ) : 1381 – 1385 .
  • NF S90–351 . 2003 . Health Care Establishments – Cleanrooms and Associated Controlled Environments – Requirements for the Control of Airborne Contamination. .
  • Park , J-H. and Chun , C-H. 2002 . An Improved Modelling for Prediction of Grade Efficiency of Electrostatic Precipitators with Negative Corona . J. Aerosol Sci. , 33 ( 4 ) : 673 – 694 .
  • Petrovick , M. S. , Harper , J. D. , Nargi , F. E. , Schwoebel , E. D. , Hennessy , M. C. Rider , T. H. 2007 . Rapid Sensors for Biological-Agent Identification . Lincoln Laboratory Journal , 17 ( 1 ) : 63 – 84 .
  • Riehle , C. and Löffler , F. 1995 . Grade Efficiency and Eddy Diffusivity Models . J. Electrostat. , 34 : 401 – 413 .
  • Saiyasitpanich , P. , Keener , T. C. , Lu , M. , Khang , S. J. and Evans , D. G. 2006 . Collection of Ultrafine Diesel Particulate Matter (DPM) in Cylindrical Single-Stage Wet Electrostatic Precipitators . Environ. Sci. Technol. , 40 : 7890 – 7895 .
  • Sillanpää , M. , Geller , M. D. , Phuleria , H. C. and Sioutas , C. 2008 . High Collection Efficiency Electrostatic Precipitator for in Vitro Cell Exposure to Concentrated Ambient Particulate Matter (PM) . Aerosol Sci. , 39 : 335 – 347 .
  • Tan , M. , Shen , F. , Yao , M. and Zhu , T. 2011 . Development of an Automated Electrostatic Sampler (AES) for Bioaerosol Detection . Aerosol Sci. Tech. , 45 : 1154 – 1160 .
  • Thomas , R. J. , Webber , D. , Sellors , W. , Collinge , A. , Frost , A. and Stagg , A. J. 2008 . Characterization and Deposition of Respirable Large- and Small-Particle Bioaerosols . App. Environ. Microb. , 74 ( 20 ) : 6437 – 6443 .
  • Townsend , J. S. 1914 . The Potentials Required to Maintain Currents Between Coaxial Cylinders . Philos. Mag J. Sci. , 6 ( 28 ) : 83 – 90 .
  • Yamamoto . 1989 . Effects of Turbulence and Electrohydrodynamics on the Performance of Electrostatic Precipitators . J. Electrostat. , 22 ( 1 ) : 11 – 22 .
  • Yao , M. and Mainelis , G. 2006 . Utilization of Natural Electrical Charges on Airborne Microorganisms for Their Collection by Electrostatic Means . Aerosol Sci. , 37 : 513 – 527 .
  • Yao , M. , Zhang , H. , Dong , S. , Zhen , S. and Chen , X. 2009 . Comparison of Electrostatic Collection and Liquid Impinging Methods When Collecting Airborne House Dust Allergens, Endotoxin and (1,3)-β-d-glucans . Aerosol Sci. , 40 : 492 – 502 .
  • Zhuang , Y. , Kim , Y. J. , Lee , T. G. and Biswas , P. 2000 . Experimental and Theoretical Studies of Ultra-Fine Particle Behavior in Electrostatic Precipitators . J. Electrostat. , 48 : 245 – 260 .

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.