• Title of article

    Simulation of droplet heating and desolvation in inductively coupled plasma—part II: coalescence in the plasma

  • Author/Authors

    Benson، نويسنده , , Craig M. and Zhong، نويسنده , , Jiaqiang and Gimelshein، نويسنده , , Sergey F. and Levin، نويسنده , , Deborah A. and Montaser، نويسنده , , Akbar، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2003
  • Pages
    19
  • From page
    1453
  • To page
    1471
  • Abstract
    A numerical model is developed to consider for the first time droplet coalescence along with transport, heating and desolvation in an argon inductively coupled plasma (Ar ICP). The direct simulation Monte Carlo (DSMC) method and the Ashgriz–Poo model are used, respectively, to compute droplet–droplet interactions and to determine the outcome of droplet collisions. Molecular dynamics (MD) simulations support the use of the Ashgriz–Poo coalescence model for small droplet coalescence. Simulations predict spatial maps of droplet number and mass densities within an Ar ICP for a conventional nebulizer-spray chamber arrangement, a direct injection high efficiency nebulizer (DIHEN), and a large bore DIHEN (LB-DIHEN). The primary findings are: (1) even at 1500 W, the collisions of the droplets in the plasma lead primarily to coalescence, particularly for direct aerosol injection; (2) the importance of coalescence in a spray simulation exhibits a complex relationship with the gas temperature and droplet size; (3) DIHEN droplets penetrate further into the Ar ICP when coalescence is considered; and (4) droplets from a spray chamber or the LB-DIHEN coalesce less frequently than those from a DIHEN. The implications of these predictions in spectrochemical analysis in ICP spectrometry are discussed.
  • Keywords
    Droplet coalescence , Numerical model , Direct simulation Monte Carlo simulations , Molecular dynamics simulations , DSMC , droplet collisions , Droplet transport , Spray chamber , Direction injection high efficiency nebulizer , Inductively coupled plasma , DIHEN , heating and desolvation , ICP
  • Journal title
    Spectrochimica Acta Part B Atomic Spectroscopy
  • Serial Year
    2003
  • Journal title
    Spectrochimica Acta Part B Atomic Spectroscopy
  • Record number

    1679819