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Determination of uranium and rare-earth metals separation coefficients in LiCl-KCl melt by electrochemical transient techniques

机译:电化学瞬态技术测定LiCl-KCl熔体中铀和稀土金属的分离系数

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摘要

The main step in the pyrometallurgical process of spent nuclear fuel recycling is a molten salt electrorefining. The knowledge of separation coefficients of actinides (U, Np, Pu and Am) and rare-earth metals (Y, La, Ce, Nd and Gd) is very important for this step. Usually the separation coefficients are evaluated from the formal standard potentials of metals in melts containing their own ions, values obtained by potentiometric method. Electrochemical experiments were carried out at 723-823 K in order to estimate separation coefficients in LiCl-KCl eutectic melt containing uranium and lanthanum trichlorides. It was shown that for the calculation of uranium and lanthanum separation coefficients it is necessary to determine the voltammetric peak potentials of U(III) and La(III), their concentration in the melt and the kinetic parameters relating to U(III) discharge such as transfer and diffusion coefficients, and standard rate constants of charge transfer. (c) 2005 Elsevier B.V. All rights reserved.
机译:乏核燃料循环利用的火法冶金工艺的主要步骤是熔融盐电精炼。 this系元素(U,Np,Pu和Am)和稀土金属(Y,La,Ce,Nd和Gd)的分离系数知识对于此步骤非常重要。通常,分离系数是根据包含其自身离子的熔体中金属的形式标准电势(通过电位法获得的值)评估的。为了估计在包含铀和三氯化镧的LiCl-KCl共晶熔体中的分离系数,在723-823 K进行了电化学实验。结果表明,为了计算铀和镧的分离系数,有必要确定U(III)和La(III)的伏安峰电位,其在熔体中的浓度以及与U(III)放电有关的动力学参数,例如作为传输和扩散系数,以及电荷传输的标准速率常数。 (c)2005 Elsevier B.V.保留所有权利。

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