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By J. Inczédy and I. Buzás (Auth.)

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T. R. E. ), EP 660130, 1951. T. Kuwada, S. Yoshikawa and T. Kuboter, J. Chem. Soc. Japan, Ind. Chem. , 1954, 5 7 , 676; Chem. , 1955, 4 9 , 8526. 28. J. R. Dudley and L. A. Lundberg (Am. Cyan. ), USP 2469683, 1949. 29. D. F. Bradley and A. Rich, J. Amer. Chem. Soc, 1956, 7 8 , 5898. 30. G. Manecke and K. F. Bonhoeffer, Z. , 1951, 5 5 , 475. 31. K. W. Pepper, / . Appl. , 1951, 1 , 124. 32. D. K. Hale and D. Reichenberg, Discuss. Faraday Soc, 1949. 7 , 79. 33. G. F. D'Alelio (Gen. Electric Co), USP 2340111, 1944.

P. Bruns, Vysokomolekulyarnye Soyedineniya, 1960, 2 , 751; Chem. , 1961, 5 5 , 7989. CHAPTER 3 THEORY OF OPERATION OF ION EXCHANGERS IN THE beginning the development of theories concerning the operation of ion-exchange resins was unable to keep level with the rapid develop­ ment of their applications, and the analyst had to be satisfied with em­ pirical relations to describe ion-exchange processes. Only in the last few years has it been possible to work out adequate theories to des­ cribe the general operation of ion exchangers.

I. Bregman, J. , 1951, 6 , 323. 52. T. R. E. Kressman and J. A. Kitchener, Discuss. Faraday Soc, 1949, 7 , 95. 53. Κ. Dusek and R. Chromecek, Chem. Prümysl, 1960, 1 0 , 267. 54. W. J. Blaedel and E. D. Olsen, Analyt. , 1961, 3 3 , 531, 1958. 55. A. Iguchi, Sei. Papers, Coll. Gen. Educ. Univ. Tokyo, 1958, 8 , 145; Chem. , 1959, 5 3 , 16644. 56. M. Fodor, E. Szabó and Z. Pokó, Acta Chim. Acad. Sei. , 1961, 2 9 , 1. 57. G. W. Bodamer and R. Kunin, Ind. Eng. , 1953, 4 5 , 2577. 58. O. D. Bonner, J.

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