• Title of article

    An investigation of heat and mass transfer enhancement of air dehumidification with addition of γ-Al2O3 nanoparticles to liquid desiccant

  • Author/Authors

    Omidvar Langroudi، L. نويسنده Department of Chemistry,Islamic Azad University, Chalus Branch,Chalus,Iran , , pahlavanzadeh، h. نويسنده Faculty of Chemical Engineering,Tarbiat Modares University,Tehran,Iran , , nanvakenari، s. نويسنده Faculty of Chemical Engineering,Tarbiat Modares University,Tehran,Iran ,

  • Issue Information
    فصلنامه با شماره پیاپی سال 2016
  • Pages
    17
  • From page
    96
  • To page
    112
  • Abstract
    This study introduces an experimental and theoretical investigation of the performance of a proposed air dehumidification system using a nanofluid of γalumina nanoparticles in LiBr/H2O as a desiccant. Comparative experiments organized using a central composite design were carried out to evaluate the effects of six numerical factors (air velocity, desiccant flow rate, air humidity ratio, desiccant solution concentration, air temperature, desiccant temperature) and one categorical factor (adding nanoparticles) on outlet air humidity ratio and outlet air temperature as responses. Reduced quadratic models were derived for each response. The results revealed that the concentration of LiBr/H2O solution and air temperature had the largest effect on outlet air humidity ratio and outlet air temperature, respectively. It was found that the average increase in mass transfer rate was 12.23% and heat transfer rate was 13.22% when γ-alumina nanoparticles (0.02% wt) were added to the LiBr/H2O solution. The average increase in mass transfer coefficient was 22.73% and heat transfer coefficient was 26.51%. respectively.
  • Keywords
    Liquid desiccant , RSM , Nanoparticles , Mass transfer , heat transfer , Dehumidification
  • Journal title
    Iranian Journal of Chemical Engineering
  • Serial Year
    2016
  • Journal title
    Iranian Journal of Chemical Engineering
  • Record number

    2401010