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The electrochemical behaviour of the Pr(III)/Pr redox system at Bi and Cd liquid electrodes in molten eutectic LiCl-KCl

机译:熔融共晶LiCl-KCl中Bi和Cd液体电极上Pr(III)/ Pr氧化还原体系的电化学行为

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摘要

The electrode reactions of LiCl-KCI-PrCl3 Solutions at the surface of liquid electrodes, i.e. Cd and Bi, were investigated by electrochemical techniques. The redox potential of the Pr(III)/Pr couple at the liquid electrodes were observed at more positive potential values than those at one inert electrode. This potential shift was thermodynamically analysed by a lowering of activity of Pr in the metal phase. Cyclic voltammetry, using Cd and Bi pools as working electrodes, was conducted in order to study the reaction mechanism. The results suggest a quasi-reversible behaviour of the Pr(III)/Pr electrochemical system at the liquid electrodes, and the values of the kinetic parameters, k(o) and alpha as well as the reversible half wave potential, E-1/2(r), have been obtained. The interdiffusion coefficients of Pr in the metal phases seem to be similar to the diffusion coefficient of Pr(III) in solution. From comparison between the equilibrium potential adopted by a praseodymium electrode immersed in a solution containing Pr(Ill) ions, and the calculated E-1/2(r) of the system Pr(III)/Pr-M (being M = Cd or Bi) it has been possible to estimate the activity coefficients of Pr in the Cd and Bi phases. Open circuit chronopotentiometry using Cd or Bi film electrodes was also conducted. Electromotive force, emf, measurements for various intermetallic compounds in two-phase coexisting states were carried out in the temperature range of 673823 K. The activities and relative partial molar Gibbs energies of Pr were obtained from the measured emf for various Pr-Cd and Pr-Bi intermetallic compounds, PrCd11, PrCd6, PrCd4.46, PrBi, and PrBi. The relative partial molar entropies and enthalpies of Pr were also calculated from the temperature dependence of the emf. The standard Gibbs energies of formation for the Pr-Cd and Pr-Bi intermetallic compounds were calculated. (c) 2005 Elsevier B.V. All rights reserved.
机译:通过电化学技术研究了LiCl-KCl-PrCl3溶液在液体电极表面Cd和Bi上的电极反应。在液体电极处观察到的Pr(III)/ Pr对的氧化还原电位比在一个惰性电极处的电位高。通过降低金属相中Pr的活性进行热力学分析。为了研究反应机理,以Cd和Bi池为工作电极进行了循环伏安法。结果表明Pr(III)/ Pr电化学体系在液体电极上具有准可逆行为,动力学参数k(o)和α的值以及可逆半波电势E-1 /已获得2(r)。 Pr在金属相中的互扩散系数似乎与Pr(III)在溶液中的扩散系数相似。通过比较浸入含Pr(III)离子的溶液中的ase电极所采用的平衡电位与Pr(III)/ Pr-M体系的计算出的E-1 / 2(r)(M = Cd或Bi)可以估计Cd和Bi相中Pr的活度系数。还进行了使用Cd或Bi膜电极的开路计时电位法。在673823 K的温度范围内对各种金属间化合物在两相共存状态下的电动势,电动势进行测量。 -Bi金属间化合物PrCd11,PrCd6,PrCd4.46,PrBi和PrBi。还从电动势的温度依赖性计算出Pr的相对部分摩尔熵和焓。计算了Pr-Cd和Pr-Bi金属间化合物的标准吉布斯形成能。 (c)2005 Elsevier B.V.保留所有权利。

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