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首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry >The effect of physicochemical parameters on the separation recovery of plutonium and uranium from aqueous solutions by cation exchange
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The effect of physicochemical parameters on the separation recovery of plutonium and uranium from aqueous solutions by cation exchange

机译:理化参数对阳离子交换法从水溶液中分离回收and和铀的影响

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摘要

The effect of physicochemical parameters such as pH, salinity (e.g. [NaCl]) and competitive cation (e.g. Ca2+ and Fe3+) concentration on the separation recovery of plutonium and uranium from aqueous solutions by cation exchange has been investigated. The investigation was performed to evaluate the applicability of cation exchange as separation and pre-concentration method prior to the radiometric analysis of uranium and plutonium isotopes in natural water samples. Application of the method to test solutions of constant radionuclide concentration and variable composition (0.1, 0.5 and 1 M NaCl; 0.1 and 0.5 M Ca(NO3)2; 0.1 and 1 mM FeCl3; 10) has generally shown that: (1) the optimum pH is 4.5 for uranium and plutonium, (2) increasing salinity results in slightly lower for uranium and significantly higher chemical recovery plutonium and (3) the presence of Ca(II) cations doesn’t significantly affect the chemical recovery of both radionuclides. Contrary, the presence of Fe(III) cations ([Fe(III)] > 0.1 mM) results in significantly lower chemical recovery for both radionuclides (<50%). The later is attributed to the formation of Fe(III) colloids, which present increased chemical affinity for uranium and plutonium and hence compete with the radionuclide binding by the resin. Nevertheless, the results indicate that the method could be successfully applied to a wide range of natural waters.
机译:pH,盐度(如[NaCl])和竞争性阳离子(如Ca 2 + 和Fe 3 + )等物理化学参数对p分离回收率的影响并且已经研究了通过阳离子交换从水溶液中提取铀。在对天然水样品中的铀和p同位素进行辐射分析之前,进行了研究以评估阳离子交换作为分离和预浓缩方法的适用性。该方法在测试恒定浓度和可变成分(0.1、0.5和1 M NaCl; 0.1和0.5 M Ca(NO 3 2 ; 0.1和0.5)的溶液中的应用1 mM FeCl 3 ; 10)通常表明:(1)铀和p的最佳pH为4.5,(2)盐度提高导致铀的略微降低,化学回收率的recovery和(3)Ca(II)阳离子的存在不会显着影响两种放射性核素的化学回收率。相反,Fe(III)阳离子([Fe(III)]> 0.1 mM)的存在导致两种放射性核素的化学回收率均显着降低(<50%)。后者归因于Fe(III)胶体的形成,该胶体对铀和p的化学亲合力增强,因此与树脂对放射性核素的结合竞争。尽管如此,结果表明该方法可以成功地应用于各种天然水域。

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