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首页> 外文期刊>Hydrometallurgy >A comparison of electrochemical methods and the rotating electrochemical quartz crystal microbalance for measuring hydrometallurgical reaction kinetics
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A comparison of electrochemical methods and the rotating electrochemical quartz crystal microbalance for measuring hydrometallurgical reaction kinetics

机译:电化学方法与旋转电化学石英晶体微量天平测量湿法冶金反应动力学的比较

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摘要

As cementation and most leaching processes are electrochemical in nature, there is an interest in the use of electrochemical methods to estimate the rate at which these reactions occur. Despite this, there has been little work published evaluating methods such as linear polarisation resistance (LPR) in hydrometallurgical applications. In the present paper, the kinetics of a range of different metal leaching and cementation reactions was measured using the rotating electrochemical quartz crystal microbalance. The measured reaction rates were then compared to those calculated using Evans' diagrams and LPR. The accuracy of the Evans' diagrams is limited to instances where the constituent half reactions are independent of each other; examples will be provided where this assumption is valid and invalid. LPR will be shown to be problematic, as the polarisation resistance is a measure of both the Tafel slopes and the reaction rate. Examples will be given where the Tafel slope either varies or is difficult to obtain; in these cases, LPR is of limited value. Another problem with LPR which will be highlighted is when the mixed potential is close to the open circuit potential of one of the constituent half reactions; this leads to the polarisation resistance being a combination of the reaction rate and the exchange current density.
机译:由于胶结和大多数浸出过程本质上是电化学的,因此人们对使用电化学方法来估计这些反应发生的速率感兴趣。尽管如此,很少有工作发表评估湿法冶金应用中的方法,例如线性极化电阻(LPR)。在本文中,使用旋转电化学石英晶体微量天平测量了一系列不同的金属浸出和胶结反应的动力学。然后将测得的反应速率与使用Evans图和LPR计算的反应速率进行比较。埃文斯图的准确性仅限于组成半反应彼此独立的情况;将提供该假设有效和无效的示例。 LPR将显示出问题,因为极化电阻是Tafel斜率和反应速率的量度。将给出塔菲尔斜率变化或难以获得的示例;在这些情况下,LPR的价值是有限的。 LPR的另一个问题将突出显示,即当混合电位接近组成半反应之一的开路电位时。这导致极化电阻是反应速率和交换电流密度的组合。

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