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Data acquisition in Thermodynamic and electrochemical reduction in a Gd(III)/Gd system in LiF-CaF2 media

机译:LiF-CaF2介质中Gd(III)/ Gd系统中热力学和电化学还原中的数据采集

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摘要

The electrochemical reduction of GdF3 was studied in the LiF-CaF2 eutectic (77/23 mol%) on a tantalum electrode for various GdF3 concentrations in the 800-900°C temperature range. A previous thermodynamic study showed that gadolinium trifluoride is reduced to metal in a one-step process: Gd(III) + 3 e- = Gd Cyclic voltammetry and square wave voltammetry were used to confirm this mechanism, and the results show that the electrochemical reduction process is limited by the diffusion of Gd(III) in the solution. The Gd(III) diffusion coefficient was calculated at different temperatures and the results obey the Arrhenius law with an activation energy of 83 ± 4 kJ.mol-1. The activity coefficient of Gd(III) and the Gd(III)/Gd standard potential E° were determined in the melt at various temperatures and concentrations. The values obtained for the activity coefficients were close to 1 at the highest temperatures and between 1.3 and 1.6 at lower temperatures.
机译:在800-900°C的温度范围内,在钽电极上的LiF-CaF2低共熔物(77/23 mol%)中研究了GdF3的电化学还原。先前的热力学研究表明,三氟化g可通过一步法还原为金属:Gd(III)+ 3 e- = Gd循环伏安法和方波伏安法用于证实该机理,结果表明电化学还原此过程受溶液中Gd(III)扩散的限制。计算了在不同温度下的Gd(III)扩散系数,其结果遵循Arrhenius律,其活化能为83±4 kJ.mol-1。在各种温度和浓度下测定熔体中Gd(III)的活度系数和Gd(III)/ Gd标准电势E°。活性系数的值在最高温度下接近1,在较低温度下在1.3和1.6之间。

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