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首页> 外文期刊>Hydrometallurgy >Modelling the effect of temperature and free acid, silver, copper and lead concentrations on silver electrorefining electrolyte conductivity
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Modelling the effect of temperature and free acid, silver, copper and lead concentrations on silver electrorefining electrolyte conductivity

机译:模拟温度和游离酸,银,铜和铅浓度对银电解电解质导电性的影响

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摘要

Conductivity is one of the key physico-chemical properties of electrolyte in silver electrorefining since it affects the energy consumption of the process. As electrorefining process development trends towards high current density operation, having electrolytes with high conductivities will greatly reduce the energy consumption of the process. This study outlines investigations into silver electrorefining electrolyte conductivity as a function of silver, free acid, copper and lead concentration at different temperatures via a full factorial design comprising of 246 individual measurements. Regression analysis of the model was used to determine the goodness of fit R-2, goodness of prediction Q(2), model validity and reproducibility. Conductivity was shown to be enhanced by increases in free acid, copper, silver and lead, with free add having the highest impact on conductivity. Temperature also increased conductivity in two ways: both as a single factor and as a combined effect with free acid, silver and copper concentration. Overall, this work produced a model of high accuracy that allows conductivity of a range of industrial silver electrorefining conditions to be calculated. (C) 2016 Elsevier B.V. All rights reserved.
机译:电导率是银电解中电解质的关键物理化学性质之一,因为它影响了该过程的能量消耗。作为电动缩合工艺发育趋势朝向高电流密度的趋势,具有高导电性的电解质将大大降低该过程的能量消耗。本研究概述了在不同温度下通过包含246个单独测量的完整因子设计的不同温度下的银,游离酸,铜和铅浓度的函数。模型的回归分析用于确定适合R-2的良善度,预测Q(2)的良好,模型有效性和再现性。显示导电性通过加法酸,铜,银和铅的增加而增强,自由加入对电导率的影响最高。温度也以两种方式增加了导电性:既是单一因素,也为单一因素,作为与游离酸,银和铜浓度的组合效果。总的来说,这项工作产生了一种高精度模型,允许计算待计算一系列工业银色电气化条件的电导率。 (c)2016年Elsevier B.v.保留所有权利。

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