酸性硫酸铜水溶液中铜、银和锌对伽巴尼克的电化学行为和当场观察

Yasushi TAKASAKI, Shoichi KAWAKAMI, Hinako KUBO, Hiroyuki KANEKO
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引用次数: 0

摘要

考虑不同金属作为杂质的电偶反应,研究了铜电精炼过程中铜的阳极溶解反应。本研究选择锌作为典型的阳极杂质,银作为典型的阴极杂质,用银线或锌线缠绕在铜线上对电偶进行了电化学测量,并使用立体显微镜对电极表面进行了原位观察。相比之下,使用镀锌或镀银的铜线。因此,即使是简单的将银线或锌线缠绕在铜线上的方法也能够捕捉到铜线上银和锌的电反应的特征行为。还证实了铜对锌的溶解有加速作用,银对铜的溶解有加速作用,且在阳极极化条件下效果更明显。观察了硫酸铜在铜电极表面的结晶和钝化过程以及银的溶解行为。这些结果表明,本实验方法是研究杂质对粗铜金属溶解度和钝化影响的有效方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
酸性硫酸銅水溶液中における銅と銀および亜鉛のガルバニック対の電気化学的挙動とその場観察
The anodic dissolution reaction of copper in copper electro-refining was studied by considering the reaction of galvanic couples with different metals as impurities. In this study, zinc was chosen as a typical anodic impurity and silver as a cathodic impurity, and electrochemical measurements of galvanic couples with silver or zinc wires winding around a copper wire and in situ observation of the electrode surface using a stereo microscope were carried out. For comparison, copper wire with zinc or silver plating was used. As a result, even the simple method of winding silver or zinc wire around copper wire was able to capture the characteristic behavior of the galvanic reaction of silver and zinc on copper wire. It was also confirmed that zinc dissolution was accelerated by copper and copper dissolution was accelerated by silver, and that the effects were more promoted under anodic polarization. The crystallization and passivation of copper sulfate on the copper electrode surface and the dissolution behavior of silver were also observed. These results indicate that the experimental method presented in this study is an effective way to investigate the effects of impurities on the solubility and passivation of crude copper metal.
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