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References and Further Readings                                 425

            46. Scheibel HG, Porstendorfer J (1983) Generation of monodisperse Ag and NaCl aerosols with
               particle diameters between 2 and 200 nm. J Aerosol Sci 14:113–126
            47. Schulte PA, Murashov V, Zumwalde R, Kuempel ED, Geraci CL (2010) Occupational
               exposure limits for nanomaterials: state of the art. J Nanopart Res 12:1971–1987
            48. Seinfeld J, Pandis S (2006) Atmospheric chemistry and physics, Chapter 8. Properties of the
               atmospheric aerosol, 2nd edn. Wiley-Interscience, Hoboken, pp 350–395
            49. Severac C, Jouve G, Goldman A, Goldman M (2004) Chemistry on the low field anodes and
               cathodes of air corona gaps. J Appl Phys 95:3297–3303
            50. Singh Y, Javier JRN, Ehrman SH, Magnusson MH, Deppert K (2002) Approaches to
               increasing yield in evaporation/condensation nanoparticle generation. J Aerosol Sci
               33:1309–1325
            51. Stahlmecke B, Wagener S, Asbach C, Kaminski H, Fissan H, Kuhlbusch T (2009)
               Investigation of airborne nanopowder agglomerate stability in an orifice under various
               differential pressure conditions. J Nanopart Res 11:1625–1635
            52. Stommel YG, Riebel U (2005) A corona-discharge-based aerosol neutralizer designed for use
               with the SMPS-system. J Electrostat 63:917–921
            53. Tabor D (1977) Surface forces and surface interactions. J Colloid Interface Sci 58:2–13
            54. Tan Z, Wexler A (2007) Fine particle counting with aerodynamic particle focusing and corona
               charging. Atmos Environ 41:5271–5279
            55. Tan Z (2013) Nanoaerosol. In: Li D (ed) Encyclopedia of microfluidics and nanofluidics, 2nd
               edn. Springer, New York
            56. Tan Z, Givehchi R, Saprykina A (2014) Submicron particle sizing by aerodynamic dynamic
               focusing and electrical charge measurement, Particuology. doi:10.1016/j.partic.2014.01.002
            57. Toyama T, Matsuda H, Ishida I, Tani M, Kitaba S, Sano S, Katayama I (2008) A case of toxic
               epidermal necrolysis-like dermatitis evolving from contact dermatitis of the hands associated
               with exposure to dendrimers. Contact Dermat 59(2):122–123
            58. Tsai C, White D, Rodriguez H, Munoz C, Huang C, Tsai C, Barry C, Ellenbecker M (2012)
               Exposure assessment and engineering control strategies for airborne nanoparticles: an
               application to emissions from nanocomposite compounding processes. J Nanopart Res 14:989
            59. Wang SC, Flagan RC (1990) Scanning electrical mobility spectrometer. Aerosol Sci Technol
               13:230–240
            60. Wang H, Kasper G (1991) Filtration efficiency of nanometer-size aerosol particles. J Aerosol
               Sci 22:31–41
            61. Wang J, Pui DYH (2011) Characterization, exposure measurement and control for nanoscale
               particles in workplaces and on the road. J Phys Conf Ser 304. doi:10.1088/1742-6596/304/1/
               012008
            62. Wang J, Chen DR, Pui DYH (2007) Modeling of filtration efficiency of nanoparticles in
               standard filter media. J Nanopart Res 9:109–115
            63. White H (1951) Particle charging in electrostatic precipitation. Trans Am Inst Electr Eng
               70:1186–1191
            64. Zhang L, Ranade MB, Gentry JW (2002) Synthesis of nanophase silver particles using an
               aerosol reactor. J Aerosol Sci 33:1559–1575
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