Cyclic voltammetric behaviour of – brass in alkaline media

F. H. Assaf, S. El-rehim, A. Zaky
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引用次数: 15

Abstract

Abstract The electrochemical behaviour of a brasses was studied in NaOH solutions using the cyclic voltammetric technique to establish the effect of such variables as alloy composition, reversal anodic potential, scan rate, NaOH concentration, and temperature. Compounds that formed on the surface during the anodic sweep were analysed using X-ray diffraction analysis (XRD). The data show that the voltammetric behaviour of – brass consists of two potential regions. The first or subcritical potential region was indicated by two anodic peaks designated A1 and A2. Within this potential region, selective dissolution of the less noble component, zinc, occurs (i.e. dezincification). The second potential region consists of three anodic peaks, designated A3, A4, and A5, where the two components of the alloy, namely copper and zinc, dissolve simultaneously. Alloying zinc with copper resulted in a decrease in the dissolution of zinc from the alloy. This behaviour could be explained on the basis that the dissolution is limited by the non-steady state diffusion of zinc atoms from the bulk of the alloy to the alloy solution interface, which implies that the rate determining step of dezincification is the diffusion of zinc atoms. The process of preferential dissolution of zinc leads to the formation of a layer rich in copper and depleted in zinc on the electrode surface.
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-黄铜在碱性介质中的循环伏安行为
摘要:采用循环伏安法研究了黄铜在NaOH溶液中的电化学行为,确定了合金成分、阳极电位、扫描速率、NaOH浓度和温度等因素对电化学行为的影响。利用x射线衍射分析(XRD)对阳极扫描过程中表面形成的化合物进行了分析。数据表明-黄铜的伏安行为由两个电位区组成。第一或亚临界电位区由两个阳极峰A1和A2表示。在这个电位区域内,选择性地溶解不那么贵重的成分,锌,发生(即脱锌)。第二个电位区由三个阳极峰组成,分别为A3、A4和A5,在这里合金的两种成分铜和锌同时溶解。锌与铜的合金化导致锌从合金中溶解的减少。这种行为可以解释为,锌原子从合金体向合金溶液界面的非稳态扩散限制了溶解,这意味着锌原子的扩散是脱锌速率的决定步骤。锌优先溶解的过程导致电极表面形成富铜贫锌层。
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