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Separation of Hf(IV)-Zr(IV) in H2SO4 solutions using solvent extraction with D2EHPA or Cyanex 272 at different reagent and metal ion concentrations

机译:使用D2EHPA或Cyanex 272在不同试剂和金属离子浓度下通过溶剂萃取分离H2SO4溶液中的Hf(IV)-Zr(IV)

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摘要

In order to produce nuclear reactor grade zircon metal from zircon sand, it is important to develop a process that can selectively extract Hf(IV) over Zr(IV). To this end, the extraction and separation from sulfuric acid solutions (2-6 M) of both of these metal ions were investigated with respect to their concentration ratio. When Hf(IV) was selectively extracted using either Cyanex 272 or D2EHPA, D2EHPA was observed to achieve a higher extraction percentage. With D2EHPA, the extraction percentage for both metals decreased as the concentration of sulfuric acid increased, and the use of a lower concentration of extractant in a stronger solution of sulfuric acid led to a higher separation factor between the two metals. A minimum separation factor of 8 was obtained, even at a metal ion concentration ratio of 100, and within the metal ion concentration ratio presented above, it was possible to separate Hf(IV) over Zr(IV) by utilizing D2EHPA for extraction. (C) 2014 Elsevier B.V. All rights reserved.
机译:为了从锆英砂中生产核反应堆级锆石金属,重要的是开发一种可以选择性地从Zr(IV)提取Hf(IV)的方法。为此,就它们的浓度比研究了两种金属离子从硫酸溶液(2-6M)中的提取和分离。当使用Cyanex 272或D2EHPA选择性提取Hf(IV)时,观察到D2EHPA可获得更高的提取率。使用D2EHPA时,两种金属的萃取百分比随硫酸浓度的增加而降低,并且在浓度较高的硫酸溶液中使用较低浓度的萃取剂会导致两种金属之间的分离系数更高。即使在金属离子浓度比为100的情况下,最小分离系数也为8,并且在上述金属离子浓度比之内,可以利用D2EHPA进行萃取分离Hf(IV)超过Zr(IV)。 (C)2014 Elsevier B.V.保留所有权利。

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