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Effect of electro-chemical properties of sodium salts of various anions on their diffusional parameters in symmetrical cellulose acetate membranes
Authors:Haruhiko Ohya  Svetlana I Semenova  Aya Sawada  Shinichi Fukaya  Yohei Suzuki  Masahako Aihara  Youichi Negishi
Affiliation:

a Department of Material Science and Chemical Engineering, Yokohama National University, Tokiwadai, Hodogayaku, Yokohama 240-8501, Japan Tel. +81 (45) 339-3989; Fax +81 (45) 339-4012

b Currently with Vladipore Research JSC, Frunze 77, Vladimir 600016, Russia

Abstract:A relation was obtained between electro-chemical properties of sodium salts (NaCl, NaBr, and Na2SO4), and the thermodynamic property of permeability in symmetrical cellulose acetate membranes, the distribution coefficient K and the kinetic property, the overall diffusion coefficients D. K and D were obtained by the method we proposed using measured unsteady- and steady-state dialysis data. The K values increase with the increase of water content and are in the range of 10?2 for sodium halides and 10?3 for Na2SO4. D is found to increase with the increase of the solute concentration, and the extrapolated values of D to zero concentration D(0) are obtained as 0.015–0.03 μm2/s and increase with the increase of water content in the membrane. D can be divided into the concentration independent diffusion coefficients in the dense part of the membrane Dd and in the porous Dp, applying a two-part (perfect or dense and imperfect or porous) model of the membrane. Contrary to Dd, Dp increases with the increase of Ww and can be correlated as Dp,c = Image d exp (γ × Ww). It is shown that the averaged Dd, Image D increases with the increase of the quantity of the ionic mobility uring operator of the solutes at infinite dilution divided by valence, and that the parameter γ increases with the increase of the ionic mobility uring operator. The value of K increases slightly with the increase of water content and decreases with the increase of the Flory—Huggins parameter χ. The Flory—Huggins parameter χ is calculated from the measured values of distribution coefficients and data obtained from the literature. And it was found that the gradient of linear decrease of χ (λcation) depends on equivalent ionic conductivity of anion of salt, λan.
Keywords:Cellulose acetate membrane  Distribution coefficient  Diffusion coefficient  Sodium halide and sulfate salt  Flory—Huggins parameter
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