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Effect of concurrent ball milling on cementation reactions: The case of Cu-Al system

机译:并发球铣削对胶粘反应的影响:Cu-Al系统的情况

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Despite a strong thermodynamic tendency, cementation by aluminum of relatively noble metals from sulfate solutions involves a rather slow kinetics due to the presence of the passive oxide film on the aluminum surface. We know from the literature that small amounts of chloride ion can reduce the dimension of the problem. In this paper, we investigate the additional effect of concurrent ball milling on the enhancement of the cementation kinetics of Cu-Al system as a case study. The cementation tests were carried out in a polyamide jar placed in a planetary ball mill. In the first part of the study, the effect of rotation speed of the milling jar, number of alumina milling balls, particle size of the aluminum powder, and the initial hydrogen ion concentration on the copper recovery was studied and optimized using a central composite design of experiments. In the second part, we investigated the kinetics and mechanism of the cementation process under the optimum conditions obtained from the first part. The results show that the concurrent ball milling can shorten or even remove the initial slow rate period, known as the induction period. It also alters the rate-controlling mechanism from chemical to boundary layer diffusion revealed by a decrease in the activation energy from 79 to 18 kJ mol(-1) . The morphology of copper deposits obtained under ball milling condition was found to be botryoidal in contrast to the typical dendritic structure. The findings overall support the beneficial role of the simultaneous ball milling in lowering the kinetic barrier of cementation reactions on the aluminum surface.
机译:尽管具有强烈的热力学趋势,但由于铝表面上的被动氧化物膜存在,硫酸盐溶液的铝含有相对贵金属的粘合涉及相当慢的动力学。我们从文献中知道,少量氯离子可以减少问题的尺寸。本文研究了并发球铣削对Cu-Al系统胶粘动力学增强的额外效果作为案例研究。在放置在行星球磨机中的聚酰胺罐中进行胶结试验。在研究的第一部分中,使用中央复合设计研究并优化了铣罐的旋转速度,铝碾磨球的数量,铝粉末的数量,铝粉末的粒度和初始氢离子浓度实验。在第二部分中,我们在从第一部分获得的最佳条件下调查了胶结过程的动力学和机制。结果表明,并发球铣削可以缩短甚至移除初始慢速速率时段,称为诱导期。它还改变了化学到边界层扩散的速率控制机制,从79至18 kJ摩尔(-1)的激活能量的降低显示。发现在球磨条件下获得的铜沉积物的形态与典型的树突结构相反是肉体。结果总体支持同时球磨在降低铝表面上的胶结反应动力学屏障中的有益作用。

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