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ARTICLES

Effects of relative humidity and particle and surface properties on particle resuspension rates

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Pages 339-352 | Received 01 Sep 2015, Accepted 26 Jan 2016, Published online: 04 Apr 2016

References

  • Aptowicz, K. B., and Chang, R. K. (2005). Angularly-Resolved Elastic Scatter from Single Particles Collected over a Large Solid Angle and with High Resolution. J. Phys.: Conf. Ser., 6:90–96.
  • Ata, A., Rabinovich, Y. I., and Singh, R. K. (2002). Role of Surface Roughness in Capillary Adhesion. J. Adhesion Sci. Tech., 16:337–346.
  • Bechert, D. W. (1996). Calibration of Preston Tubes. AIAA J., 34:205–206.
  • Biggs, S., Cain R. G., Dagastine, R.R., and Page, N. W. (2002). Direct Measurements of the Adhesion Between a Glass Particle and a Glass Surface in a Humid Atmosphere. J. Adhesion Sci. Technol., 16: 869–885.
  • Bocquet, L., Charlaix, E., Ciliberto, S., and Crassous J. (1998). Moisture-Induced Ageing in Granular Media and the Kinetics of Capillary Condensation. Nature, 396:735–737.
  • Boor, B. E., Siegel, J. A., and Novoselac, A. (2011). Development of an Experimental Methodology to Determine Monolayer and Multilayer Particle Resuspension from Indoor Surfaces. ASHRAE Trans., 117:434–441.
  • Bowling, R.A. (1988). A Theoretical Review of Particle Adhesion, in Particles on Surfaces I: Detection, Adhesion and Removal, K. L. Mittal, ed., Plenum Press, New York. pp. 129–142.
  • Braaten, D. A. (1994). Wind Tunnel Experiments of Large Particle Reentrainment-Deposition and Development of Large Particle Scaling Parameters. Aerosol Sci. Technol., 21:157–169.
  • Braaten, D. A., Paw, U. K. T., and Shaw, R. H. (1990). Particle Resuspension in a Turbulent Boundary Layer – Observed and Modeled. J. Aerosol Sci., 21:613–628.
  • Butt, H. J., and Kappl, M. (2009). Normal Capillary Forces. Adv. Coll. Interface Sci., 146:48–60.
  • Cleaver, J. W., and Yates, B. (1975). A Sub-Layer Model for the Deposition of Particles from a Turbulent Flow. Chem. Eng. Sci., 30:983–992.
  • Corn, M. (1961). The Adhesion of Solid Particles to Solid Surfaces, I. A Review. J. Air Pollut. Cont. Assoc., 11:523–528.
  • Corn, M., and Stein, F. (1965). Re-entrainment of Particles from a Plane Surface. Am. Ind. Hyg. Assoc. J., 26:325–336.
  • Corsi, R. L., Siegel, J. A., and Chiang, C. (2008). Particle Resuspension during the Use of Vacuum Cleaners on Residential Carpet. J. Occup. Environ. Hygiene., 5: 232–238.
  • Dillon, M. B. (2011). Skin as a Potential Source of Infectious Foot and Mouth Disease Aerosols. Proc. R. Soc. B, 278:1761–1769.
  • Farshchi-Tabrizi, M., Kappl, M., and Butt, H. J. (2008). Influence of Humidity on Adhesion: An Atomic Force Microscope Study. J. Adh. Sci. Technol., 22: 181–203.
  • Farshchi-Tabrizi, M., Kappl, M., Cheng, Y., Gutmann, J., and Butt, H. J. (2006). On the Adhesion Between Fine Particles and Nanocontacts: an Atomic Force Microscope Study. Langmuir, 28:2171–2184.
  • Giess, P., Goddard, A. J. H., and Shaw, G. (1997). Factors Affecting Particle Resuspension from Grass Swards. J. Aerosol Sci., 28:1331–1349.
  • Goldasteh, I., Ahmadi, G., and Ferro, A. (2012). A Model for Removal of Compact, Rough, Irregularly Shaped Particles from Surfaces in Turbulent Flows. J. Adh., 88:766–786.
  • Gomes, C., Freihaut, J., and Bahnfleth, W. (2007). Resuspension of Allergen-Containing Particles Under Mechanical and Aerodynamic Disturbances from Human Walking. Atmos. Environ., 41:5257–5270.
  • Halsey, T. C., and Levine, A. J. (1998). How Sandcastles Fall. Phys. Rev. Lett., 80:3141–3144.
  • Hays, D. (1991). Role of Electrostatics in Adhesion, in Fundamentals of Adhesion, L. H. Lee, ed., Plenum Press, New York, pp. 249–278.
  • Hubbard, J. A., Brockmann J. E., Rivera D., and Moore D. G. (2012). Experimental Study of Impulse Resuspension with Laser Doppler Vibrometry. Aerosol Sci. Technol., 46:1303–1312.
  • Ibrahim, A. H. (2004). Microparticle Detachment from Surface by Fluid Flow. Ph.D. thesis, University of Notre Dame, Notre Dame, Indiana. (Available for download from http://etd.nd.edu/ETD-db/theses/available/etd-01302004–105607/)
  • Ibrahim, A. H., Dunn, P. F., and Brach, R. M. (2003). Microparticle Detachment from Surfaces Exposed to Turbulent Air Flow: Controlled Experiments and Modeling. J. Aerosol Sci., 34:765–782.
  • Ibrahim, A. H., Dunn, P. F., and Brach, R. M. (2004). Microparticle Detachment from Surfaces Exposed to Turbulent Air Flow: Effects of Flow and Particle Deposition Characteristics. J. Aerosol Sci., 35:805–821.
  • Israelachvili, J. (1991). Intermolecular and Surface Forces, 2nd ed., Academic Press, London.
  • Jones, A. M., and Harrison, R. M. (2004). The Effects of Meteorological Factors on Atmospheric Bioaerosol Concentrations - A Review. Sci. Total Environ. 326:151–180.
  • Jones, R., Pollock, H. M., Cleaver, J. A. S., and Hodges, C. S. (2002). Adhesion Forces Btween Glass and Silicon Surfaces in Air Studied by AFM: Effects of Relative Humidity, Particle Size, Roughness, and Surface Treatment. Langmuir, 18:8045–8055.
  • Kassab, A. S., Ugaz, V. M., King, M. D., and Hassan, Y. A. (2013). High Resolution Study of Micrometer Particle Detachment on Different Surfaces. Aerosol Sci. Technol., 47:351–360.
  • Kim, Y., Gidwani, A., Wyslouzil, B. E., and Sohn, C. W. (2010). Source Term Models for Fine Particle Resuspension from Indoor Surfaces. Build. Environ., 45:1854–1865.
  • Krauter, P., and Biermann, A. (2007). Reaerosolization of Fluidized Spores in Ventilation Systems. Appl. Environ. Microbiol., 73:2165–2172.
  • Kweon, H., Yiacoumi, S., and Tsouris, C. (2011). Friction and Adhesion Forces of Bacillus thuringiensis Spores on Planar Surfaces in Atmospheric Systems. Langmuir, 27:14975–14981.
  • Lengweiler, P. (2000). Modelling Deposition and Resuspension of Particles on and from Surfaces. Ph.D. thesis, Swiss Federal Institute of Technology, Zürich, Switzerland. (Available for download from http://e-collection.ethbib.ethz.ch/eserv/eth:23702/eth-23702–02.pdf)
  • Loosmore, G. A. (2003). Evaluation and Development of Models for Resuspension of Aerosols at Short Times after Deposition. Atmos. Environ., 37:639–647.
  • Mukai, C., Siegel, J. A., and Novoselac, A. (2009). Impact of Airflow Characteristics on Particle Resuspension from Indoor Surfaces. Aerosol Sci. Technol., 43: 1022–1032.
  • Nicholson, K. W. (1988). A Review of Particle Resuspension. Atmos. Environ., 22:2639–2651.
  • Nicholson, K. W. (1993). Wind Tunnel Experiments on the Resuspension of Particulate Material. Atmos. Environ., 27A:181–188.
  • Oberoi, R. C., Choi, J.-I., Edwards, J. R., Rosati, J. A., Thornburg, J., and Rodes, C. E. (2010). Human-Induced Particle Re-Suspension in a Room. Aerosol Sci. Technol., 44: 216–229.
  • Orgill, M. M., Sehmel, G. A., and Petersen, M. R. (1976). Some Initial Measurements of Airborne DDT over Pacific Northwest Forests. Atmos. Environ., 10:827–834
  • Ould-Dada, Z., and Baghini, N. M. (2001). Resuspension of Small Particles from Tree Surfaces. Atmos. Environ., 35:3799–3809.
  • Paajanen, M., Katainen, J., Pakarinen, O. H., Foster, A. S., and Lahtinen, J. (2006). Experimental Humidity Dependency of Small Particle Adhesion on Silica and Titania. J. Colloid Interface Sci., 304:518–523.
  • Pakarinen, O. H., Foster, A. S., Paajanen, M., Kalinainen, T., Katainen, J., Makkonen, I., Lahtinen, J., and Nieminen, R. M. (2005). Towards an Accurate Description of the Capillary Force in Nanoparticle-Surface Interactions. Modelling Simul. Mater. Sci. Eng., 13:1175–1186.
  • Phares, D. J., Smedley, G. T., and Flagan, R. C. (2000). Effect of Particle Size and Material Properties on Aerodynamic Resuspension from Surfaces. J. Aerosol Sci., 31:1335–1353.
  • Plomp, M., Leighton, T. J., Wheeler, K. E., and Malkin, A. J. (2005). The High-Resolution Architecture and Structural Dynamics of Bacillus Spores. Biophys. J., 88:603–608.
  • Prokopovich, P., and Starov, V. (2011). Adhesion Models: From Single to Multiple Asperity Eontacts. Adv. Colloid Interface Sci. 168:210–222.
  • Qian, J., and Ferro, A. R. (2008). Resuspension of Dust Particles in a Chamber and Associated Environmental Factors. Aerosol Sci. Technol., 42: 566–578.
  • Rabinovich, Y. I., Adler, J. J., Esayanur, M. S., Ata, A., Singh, R. K., and Moudgil, B. M. (2002). Capillary Forces Between Surfaces with Nanoscale Roughness. Adv. Coll. Interf. Sci., 96:213–230.
  • Reeks, M. W., and Hall, D. (2001). Kinetic Models for Particle Resuspension in Turbulent Flows: Theory and Measurement. J. Aerosol Sci., 32:1–31.
  • Reeks, M. W., Reed, J., and Hall, D. (1988). On the Resuspension of Small Particles by a Turbulent Flow. J. Phys. D: Appl. Phys., 21:574–589.
  • Riedo, E., Levy, F., Brune, H. (2002). Kinetics of Capillary Condensation in Nanoscopic Sliding Friction. Phys. Rev. Lett., 88:1855051–1855054.
  • Restagno, F., Bocquet, L., Crassous, J., and Charlaix, E. (2002). Slow Kinetics of Capillary Condensation in Confined Geometry: Experiment and Theory. Colloids Surf. A, 206:69–77.
  • Sander, M., Patterson, R. I. A., Raj, A., and Kraft, M. (2010). Comment on “Low Fractal Dimension Cluster-Dilute Soot Aggregates from a Premixed Flame.” Phys. Rev. Lett., 104:119601.
  • Sehmel, G. A. (1980). Particle Resuspension: A Review. Envir. Int., 4:107–127.
  • Smith, T. (1980). The Hydrophilic Nature of a Clean Gold Surface. J. Colloid Interf. Sci., 75:51–55.
  • Soltani, M., and Ahmadi, G. (1994). On Particle Adhesion and Removal Mechanisms in Turbulent Flows. J. Adh. Sci. Technol., 8:763–785.
  • Szori, M., Jedlovszky, P., and Roeselová, M. (2010). Water Adsorption on Hydrophilic and Hydrophobic Self-Assembled Monolayers as Proxies for Atmospheric Surfaces. A Grand Canonical Monte Carlo Simulation Study. Phys. Chem. Chem. Phys., 12:4604–4616.
  • Weis, C. P., Intrepido, A. J., Miller, A. K., Cowin, P. G., Durno, M. A., Gebhardt, J. S., and Bull, R. (2002). Secondary Aerosolization of Viable Bacillus anthracis Spores in a Contaminated US Senate Office. J. Am. Med. Assoc., 288:2853–2858.
  • Wen, H. Y., and Kasper, G. (1989). On the Kinetics of Particle Reentrainment from Surfaces. J. Aerosol Sci., 20:483–498.
  • Wu, Y.-L., Davidson, C. I., and Russell, A. G. (1992). Controlled Wind Tunnel Experiments for Particle Bounceoff and Resuspension. Aerosol Sci. Technol., 17:245–262.
  • Zhang, F., Reeks, M., and Kissane, M. (2013). Particle Resuspension in Turbulent Boundary Layers and the Influence of Non-Gaussian Removal Forces. J. Aerosol Sci., 58:103–128.
  • Ziskind, G. (2006). Particle Resuspension from Surfaces: Revisited and Re-evaluated. Rev. Chem. Eng., 22:1–123.

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