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TANDEM ION EXCHANGE FRACTIONATION - NEW PREPARATIVE MODE FOR SEPARATION OF MULTICOMPONENT IONIC MIXTURES

机译:串联离子交换分离-分离多组分离子混合物的新制备模式。

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The paper reports the results on the development of the tandem ion-exchange fractionation (TIEF) concept for separation of n-component (n > 2) ionic mixtures on (n - 1) ion-exchange columns. TIEF technique is based on a sequential combination of frontal separation (FS) and reverse frontal separation (RFS) of the mixture components, The appropriate sequence of the FS leads to a stepwise elimination of the number of components, and It allows recovery of all ions under separation in a sufficiently pure state, A practical demonstration of this concept has been carried out by applying it to a typical mixture of metal ions present in nonferrous metal alloys, i.e. Cu2+, Al3+, Zn2+, and Mg2+. The values of the equilibrium separation coefficient, alpha, for quadri, tri-, and bicomponent mixtures involving the mentioned metal ions on polyacrylic and iminodiacetic resins have been determined, The increase of a values for, e.g., Zn2+-Mg2+ exchange from 3.3 to 15.8 on reducing of the number of mixture components from four to two has been observed to illustrate the validity of the TIEF concept. The preparative separation of a Cu2+, Al3+, Zn2+, and Mg2+ mixture with an equivalent ratio of Cu:Al:Zn:Mg = 1:1:1:1, carried out by applying the TIEF technique, has been shown to yield Mg2+ of around 100% purity and Cu2+, Al3+, and Zn2+ of 96.1%, 98.8%, and 95.1% average purity, respectively, at a reasonably high yield, The differential stripping during the RFS stage improves significantly the purity of the products obtained. The results obtained by applying TIEF to separate and recover Cu2+, Al3+, Zn2+, and Mg2+ from an acidic mine water sample containing nine metal ions as main components confirm the practical merit of the proposed technique.
机译:本文报道了在(n-1)离子交换柱上分离n组分(n> 2)离子混合物的串联离子交换分馏(TIEF)概念的开发结果。 TIEF技术基于混合组分的正面分离(FS)和反向正面分离(RFS)的顺序组合,FS的适当顺序可逐步消除组分的数量,并且可以回收所有离子在足够纯的分离状态下,通过将其应用于有色金属合金中存在的典型金属离子混合物(即Cu2 +,Al3 +,Zn2 +和Mg2 +)进行了实践证明。确定了在聚丙烯酸酯和亚氨基二乙酸树脂上涉及上述金属离子的四,三和双组分混合物的平衡分离系数α的值。例如,Zn2 + -Mg2 +交换的值从3.3增加到15.8。已经观察到关于将混合成分的数量从四个减少到两个的解释,以说明TIEF概念的有效性。通过使用TIEF技术进行的当量比为Cu:Al:Zn:Mg = 1:1:1:1的Cu2 +,Al3 +,Zn2 +和Mg2 +混合物的制备分离已显示可产生Mg2 +纯度约为100%,Cu2 +,Al3 +和Zn2 +的平均纯度分别为96.1%,98.8%和95.1%,且产量相当高,在RFS阶段进行的差异汽提显着提高了所得产品的纯度。通过使用TIEF分离并从包含9种金属离子作为主要成分的酸性矿井水样品中分离和回收Cu2 +,Al3 +,Zn2 +和Mg2 +所获得的结果证实了该技术的实用价值。

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