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Kinetics characterization of ion release under dynamic and batch conditions. I. Weak acid and weak base ion exchange resins

机译:在动态和间歇条件下离子释放的动力学表征。 I.弱酸和弱碱离子交换树脂

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The aim of the present work is concerned with a study of the kinetics of release of both Ca2+ and F- from the corresponding loaded ion-exchange resins (weak acid and weak base character for Ca2+ for F-, respectively), using both dynamic and batch experimental conditions with an artificial saliva solution as the ion-exchange media at 293 and 310 K. The influence of resin particle size and the temperature were evaluated by the kinetics parameters for the effective rate of release (B) and diffusion coefficient (D). The rate of ion release increases with temperature and decreases with particle size. The experimental data were well fitted by models based on intraparticle diffusion-controlled processes. In dynamic studies, the linear dependence of -log(10)(B) with the diameter of the resin particles can be applied for the estimation of B values when resins of low particle size are considered. In batch processes, although resins of low particle size can be studied, a linear relationship was only attained for the case of slow ion-exchange kinetic systems.
机译:本工作的目的是利用动态和动态研究从相应的负载离子交换树脂中释放Ca2 +和F-的动力学(分别为F-的Ca2 +弱酸和弱碱特性)。人工唾液作为离子交换介质,在293和310 K的分批实验条件下。通过动力学参数评估有效释放速率(B)和扩散系数(D)的树脂粒径和温度的影响。离子释放速率随温度增加而减小,随颗粒尺寸而减小。通过基于颗粒内扩散控制过程的模型对实验数据进行了很好的拟合。在动态研究中,当考虑使用低粒径的树脂时,-log(10)(B)与树脂颗粒直径的线性相关性可用于估算B值。在分批工艺中,尽管可以研究低粒径的树脂,但仅在离子交换动力学系统缓慢的情况下才能获得线性关系。

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