首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >Biphasic kinetic investigations on the evaluation of non-salt forming reductants for Pu(IV) stripping from tributyl phosphate and N,N-dihexyl octanamide solutions in n-dodecane
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Biphasic kinetic investigations on the evaluation of non-salt forming reductants for Pu(IV) stripping from tributyl phosphate and N,N-dihexyl octanamide solutions in n-dodecane

机译:双相动力学研究,用于评估在正十二烷中从磷酸三丁酯和N,N-二己基辛酰胺溶液中提取Pu(IV)的非盐形成还原剂

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摘要

The relative stability of different oxidation states of actinide elements is influenced by the nature of complexes formed and redox equilibria in aqueouson-aqueous solutions. The reduction/stripping studies on Pu(IV) ions from loaded organic phases of 1.1 M tributyl phosphate and of 1.1 M N,N-dihexyl octanamide in n-dodecane were studied using organic soluble tert-butyl hydroquinone (TBH) and aqueous soluble reductants like acetaldoxime (AX) and hydroxyurea (HU). These studies were carried out as a function of reductant and nitric acid concentration (0.5-4 M HNO3) and of time. The changes in Pu oxidation states were followed by spectrophotometry for TBH and by distribution ratio values for AX and HU as reductants. Spectrophotometric investigations using TBH as reductant showed that it was desirable to strip Pu(III) formed after reduction of Pu(IV) in the organic phase, which may otherwise be reconverted to extractable Pu(IV) by in situ generated HNO _2 from oxidative degradation of TBH to tert-butyl quinone. Similarly, the biphasic reduction/stripping of Pu(IV) using AX and HU as reductant rate was affected adversely with increased aqueous phase acidity. This data will help in the accurate simulation of Pu separation processes using these reductants in mixer-settlers/pulsed columns or centrifugal contactors.
机译:aqueous系元素不同氧化态的相对稳定性受水溶液/非水溶液中形成的络合物和氧化还原平衡性质的影响。使用有机可溶叔丁基对苯二酚(TBH)和水溶性还原剂(例如),研究了正十二烷中1.1 M磷酸三丁酯和1.1 MN,N-二己基辛酰胺的负载有机相中Pu(IV)离子的还原/剥离研究乙醛肟(AX)和羟基脲(HU)。这些研究是作为还原剂和硝酸浓度(0.5-4 M HNO3)和时间的函数进行的。 Pu氧化态的变化之后,用TBH进行分光光度法,然后使用AX和HU作为还原剂的分布比值。使用TBH作为还原剂的分光光度法研究表明,希望将有机相中的Pu(IV)还原后形成的Pu(III)汽提,否则可以通过氧化降解原位生成的HNO _2转化为可萃取的Pu(IV) TBH生成叔丁基醌。类似地,使用AX和HU作为还原剂的Pu(IV)的双相还原/汽提对水相酸度的增加有不利影响。这些数据将有助于在混合沉降器/脉冲塔或离心接触器中使用这些还原剂对Pu分离过程进行准确的模拟。

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