• Title of article

    Use of Nuclepore filters for ambient and workplace nanoparticle exposure assessment—Spherical particles

  • Author/Authors

    Chen، نويسنده , , Sheng-Chieh and Wang، نويسنده , , Jing and Fissan، نويسنده , , Heinz and Pui، نويسنده , , David Y.H.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2013
  • Pages
    9
  • From page
    385
  • To page
    393
  • Abstract
    Nuclepore filter collection with subsequent electron microscopy analysis for nanoparticles was carried out to examine the feasibility of the method to assess the nanoparticle exposure. The number distribution of nanoparticles collected on the filter surface was counted visually and converted to the distribution in the air using existing filtration models for Nuclepore filters. To search for a proper model, this paper studied the overall penetrations of three different nanoparticles (PSL, Ag and NaCl), covering a wide range of particle sizes (20–800 nm) and densities (1.05–10.5 g cm−3), through Nuclepore filters with two different pore diameters (1 and 3 μm) and different face velocities (2–15 cm s−1). The data were compared with existing particle deposition models and modified models proposed by this study, which delivered different results because of different deposition processes considered. It was found that a parameter associated with flow condition and filter geometry (density of fluid medium, particle density, filtration face velocity, filter porosity and pore diameter) should be taken into account to verify the applicability of the models. The data of the overall penetration were in very good agreement with the properly applied models. A good agreement of filter surface collection between the validated model and the SEM analysis was obtained, indicating a correct nanoparticle number distribution in the air can be converted from the Nuclepore filter surface collection and this method can be applied for nanoparticle exposure assessment.
  • Keywords
    Nuclepore filter , Nanoparticle exposure assessment , Capillary tube model , Nanoparticle size distribution
  • Journal title
    Atmospheric Environment
  • Serial Year
    2013
  • Journal title
    Atmospheric Environment
  • Record number

    2241440