Investigation into the kinetics of ion-exchange processes accompanied by complex formation

A.I. Kalinichev ∗, T.D. Semenovskaya, E.V. Kolotinskaya, A.Ya. Pronin, K.V. Chmutov
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引用次数: 9

Abstract

A theoretical and experimental study of the diffusion processes in complex-formation in ion exchangers has been made. The study is based on diffusion-type equations expressing the laws of material balance for the counterions and a co-ion. These equations are complemented by the conditions of electroneutrality and absence of any electric current. In particular, the approximate solutions of the equations suggest that during the initial stages of particle conversion, the degree of conversion depends on the input concentration and is proportional to √(t), the effective diffusion being controlled by the individual diffusion coefficients for the counterions. The exact solution of the problem, for varying relations between the individual diffusion coefficient has been obtained numerically by using computers. The principles thus found have been verified experimentally for the MeM exchange in a carboxylic cation exchanger and for MeMe exchange in a complex formation vinylpyridine cation exchanger, respectively. The experimental data agree with the theoretical deductions.

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伴随络合物形成的离子交换过程动力学研究
本文对离子交换剂中络合物形成的扩散过程进行了理论和实验研究。该研究基于表示反离子和共离子物质平衡规律的扩散型方程。这些方程由电中性和无电流条件补充。特别是,方程的近似解表明,在粒子转换的初始阶段,转换程度取决于输入浓度并与√(t)成正比,有效扩散由反离子的单个扩散系数控制。利用计算机计算得到了各扩散系数之间变化关系下问题的精确解。所发现的原理已分别在羧基阳离子交换剂中的MeM交换和在络合形成的乙烯基吡啶阳离子交换剂中的MeMe交换中得到了实验验证。实验数据与理论推导一致。
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