Effect of Longer Waiting Time During OCP and Pre-Applied Cleaning Potential In Corrosion Analysis of Zinc Metal

Salih CİHANGİR
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Abstract

Tafel analysis is a widely accepted technique for corrosion studies in electrochemistry. A general literature search for one of the electronegative metals, zinc, revealed serious deviations in corrosion results. In order to understand the reasons behind these deviations, zinc metal was investigated at macro and micro levels during and after the Tafel corrosion analysis. In-situ macro surface investigation during the OCP period and Tafel analysis were performed, and it was found that the zinc surface undergoes proceeding corrosion attack following the immersion in 3.5 wt.% NaCl solution. In-situ macro surface analysis exhibited that the pre-oxidation of the surface proceeds as nonuniform at local regions. SEM-EDS and XRD analysis proved that the particular crystal planes of the zinc form ZnO with increasing immersion time. A linear sweep voltammetry (LSV) technique was applied to detect the oxygen removal and starting hydrogen evolution potentials. Three identical Tafel experiments were performed on samples without any treatment, and another three consecutive Tafel experiments were performed on the samples which applied pre-reduction potential. Obtained results revealed that in-situ pre-applied reduction potential just before the Tafel analysis cleaned the surface and allowed uniform oxide formation, resulting in the lowest standard deviation of the calculated Tafel elements.
延长OCP等待时间和预施清洗电位对锌金属腐蚀分析的影响
塔菲尔分析是电化学腐蚀研究中广泛采用的一种技术。对电负性金属锌的一般文献检索,揭示了腐蚀结果的严重偏差。为了了解这些偏差背后的原因,在Tafel腐蚀分析期间和之后从宏观和微观层面对锌金属进行了研究。在OCP期间进行了现场宏观表面调查和Tafel分析,发现在3.5 wt.% NaCl溶液中浸泡后,锌表面发生了持续的腐蚀攻击。现场宏观表面分析表明,表面预氧化在局部区域是不均匀的。SEM-EDS和XRD分析表明,随着浸渍时间的延长,锌的特定晶面形成ZnO。采用线性扫描伏安法(LSV)测定了脱氧和析氢起始电位。在未处理的样品上进行3次相同的Tafel实验,在施加预还原电位的样品上进行3次连续的Tafel实验。得到的结果表明,在Tafel分析之前,原位预施加的还原电位清洁了表面,并允许均匀的氧化物形成,导致计算的Tafel元素的标准偏差最小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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