Permeability of solutes through hydrated polymer membranes. Part I. Diffusion of sodium chloride

Wiley - Tập 118 Số 1 - Trang 19-35 - 1968
H. Yasuda1, C. E. Lamaze1, L. D. Ikenberry1
1From the Camille Dreyfus Laboratory, Research Triangle Institute, Post Office Box 12194, Research Triangle Park, North Carolina 27709, U.S.A.

Tóm tắt

AbstractBased on an analysis by the free volume theory of diffusion, a study of the diffusion coefficients, D2, the distribution coefficients, κ2, and the permeability coefficients, P, of NaCl in various hydrophilic polymers was made with the assumptions that the free volume of a polymer/diluent system is linearly proportional to the volume fraction of diluent (H), and that NaCl permeates only through polymer/diluent systems in which the diluent of polymers is also a good solvent of the solute (NaCl).The values of D2 (over five orders of magnitude) were found to vary exponentially with changes in 1/H, as expected from the free volume theory of diffusion, in a wide range of H‐values and converge to the value of the diffusion constant of NaCl in pure water.The values of κ2 defined by g NaCl per cm3 polymer/g NaCl per cm3 solution were found to be more characteristic to the type of polymers particularly at a lower range of H‐values. At higher ranges of H‐values, k2 is nearly equal to H, however, at lower H, k2 values deviate significantly from the value of H and its extent was found to be greatly dependent on the chemical nature of polymers, whereas the diffusion coefficient follows the normal pattern predicted by the free volume theory.The values of P which are given by the product of D2 and k2 also were found to vary exponentially with changes in 1/H at higher range of H, however, at lower range of H it deviates from the relationship due to the varying dependence of factor k2 on 1/H.

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Tài liệu tham khảo

10.1002/pol.1967.150051125

10.1021/ja01619a008

Williams J. B., 1957, Trans. Faraday Soc., 53, 1146

10.1002/pol.1958.1202711530

10.1039/tf9605600424

10.1002/macp.1964.020730116

10.1002/app.1967.070111021

10.1063/1.1744654

10.1063/1.1730566

10.1002/pol.1959.1203713104

Bueche F., 1962, Physical Properties of Polymers

10.1149/1.2428174

10.1007/BFb0050514

10.1002/app.1965.070090707

10.1002/app.1965.070091019

10.1002/pol.1966.150041201

Spiegler K. S., 1966, Principles of Desalination, 384

Crank J., 1956, The Mathematics of Diffusion

1929, International Critical Tables, 67

K. A.Smith C. K.Colton E. W.Merrill andL. B.Evans The Artificial Kidney; Chemical Engineering Progress Symposium Series No. 84 Vol. 64 45 1968.