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Investigation on electrochemical behaviors of MgCl2 impurity in LiCl-KCl melt

机译:LICL-KCL熔体MGCL2杂质电化学行为的研究

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摘要

In this work, the electrochemical behaviors of impurity Mg(II) in LiCl-KCl melt were investigated at 673 K by using cyclic voltammetry (CV), chronopotentiometry (CP) and square wave voltammetry (SWV) techniques. Results showed that the semi-integral curve derived from CV measurements revealed that the reduction of Mg(II) was a quasi-reversible process. And the standard reaction rate constant of the order ?10?3 cm s?1, calculated by Nicholson method, which showed that the redox reaction of Mg was in the quasi-reversible range of Matsuda-Ayabe standard. The EMF measurements were applied to measure the apparent standard potential and activity coefficient of Mg(II). According to the standard apparent potentials at various temperatures, the values of enthalpy and entropy changes were ?673.3302 ? 4.3997 kJ mol?1 and 0.1930 kJ mol?1 K?1, respectively. Chronoamperometry (CA) results showed that deposition of metal Mg on the W electrode was an instantaneous nucleation process under diffusion control. Additionally, the diffusion coefficients calculated by CP revealed that the temperature dependence obeyed the Arrhenius law. And the activation energy for diffusion of Mg(II) is 44.73 kJ mol?1.
机译:本文采用循环伏安法(CV)、计时电位法(CP)和方波伏安法(SWV)研究了杂质Mg(II)在673K下LiCl-KCl熔体中的电化学行为。结果表明,由CV测量得出的半积分曲线表明,Mg(II)的还原是一个准可逆过程。那么这个顺序的标准反应速率常数呢?10?3厘米s?1,用Nicholson方法计算,结果表明,Mg的氧化还原反应在Matsuda Ayabe标准的准可逆范围内。电动势测量用于测量Mg(II)的表观标准电位和活度系数。根据不同温度下的标准视在电位,焓变和熵变的值是?673.3302 ? 4.3997千焦摩尔?1和0.1930 kJ mol?1千?分别为1。计时电流法(CA)结果表明,金属镁在W电极上的沉积是扩散控制下的瞬时形核过程。此外,由CP计算的扩散系数表明,温度依赖性符合阿累尼乌斯定律。Mg(II)的扩散活化能为44.73kJ mol?1.

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