• Title of article

    Self-diffusion coefficients of water in Nafion-117 membrane with multivalent counterions

  • Author/Authors

    G. Suresh، نويسنده , , A.K. Pandey، نويسنده , , A. Goswami، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2006
  • Pages
    5
  • From page
    193
  • To page
    197
  • Abstract
    The tritium tagged water (HTO) exchange rates between water swollen Nafion-117 membrane and equilibrating water were measured to obtain self-diffusion coefficients of water (image) in the membrane samples with several multivalent counterions, viz. Ba2+, Fe3+, Y3+, La3+, Eu3+ and Th4+. The values of image were obtained by analyzing the isotopic exchange rates profiles using an analytical solution of Fickʹs second law. The values of image in these ionic forms of Nafion-117 membrane were found to be in the range of 1.8 × 10−6–2.2 × 10−6 cm2/s. The water uptake capacity in the membrane samples with multivalent counterions was also not found to vary significantly. Since diffusion of water occurs through water channels in the membrane, the narrow spread of image values in membrane samples with multivalent counterions was attributed to nearly constant polymer volume fraction (Vp = 0.75 ± 0.02) in the membrane. The comparison of image values obtained in the present work with that reported for Nafion-117 membrane having same Vp (0.75) with Na+ counterions (2.85 × 10−6 cm2/s) indicated that the self-diffusivity of water is higher in monovalent forms of membrane. image represents tortuosity factor in membrane and hence it is dependent on Vp and microstructure of the membrane. Therefore, the slight difference in image values in monovalent and multivalent forms of membrane with same Vp could be attributed to minor difference in transport channels of membrane in these forms of Nafion-117 membrane.
  • Keywords
    Multivalent counterions , Self-diffusion coefficient , Water , Nafion-117 , Radiotracer method
  • Journal title
    Journal of Membrane Science
  • Serial Year
    2006
  • Journal title
    Journal of Membrane Science
  • Record number

    1352782