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Influence of pH and chloride concentration on the corrosion behavior of unalloyed copper in NaCl solution: a comparative study between the micro and macro scales

机译:pH值和氯离子浓度对NaCl溶液中非合金铜腐蚀行为的影响:微观尺度与宏观尺度的对比研究

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摘要

The effects of pH and chloride concentration on the electrochemical corrosion of copper in aqueous sodium chloride (NaCl) media were studied at the micro scale using a microcapillary droplet cell and at the macro scale using a conventional large scale cell. Using an experimental design strategy, electrochemical response surface models of copper versus pH and NaCl concentration were constructed with the minimum number of experiments required. Results show that the electrochemical behavior of copper under corrosive media shows significant differences between the micro and macro scale experiments. At the micro scale, the pit initiation of copper occurs at more negative potentials for high NaCl concentrations and alkaline pH values. Also, the micro scale potentiostatic measurements indicate higher stabilised passive currents at high NaCl concentrations and low (acidic) pH values. At the macro scale, the pH is shown to have a greater influence on the corrosion potential. The chloride concentration is the most significant factor in the passive current case while at the micro scale the effect of these two factors on the passive current was found to be the same. The surface morphology of the formed patina on the corroded copper in both micro and macro systems reveal a more significant role of the chloride concentration on the structure and the grain size of the patinas. Finally, micro and macro electrochemical impedance spectroscopy of copper at various NaCl concentrations and pH values demonstrates a different behavior of copper after several potentiodynamic polarization cycles.
机译:pH和氯化物浓度对氯化钠(NaCl)水溶液中铜的电化学腐蚀的影响是使用微毛细管液滴池在微观上进行研究的,而使用常规大型池在宏观上进行了研究。使用实验设计策略,以所需的最少实验次数构建了铜相对于pH和NaCl浓度的电化学响应表面模型。结果表明,铜在腐蚀性介质下的电化学行为在微观和宏观实验之间显示出显着差异。在微观规模上,对于高NaCl浓度和碱性pH值,铜的凹坑引发在更负的电位下发生。同样,微型恒电位测量结果表明,在高NaCl浓度和低(酸性)pH值下,稳定的无源电流更高。在宏观上,pH值显示出对腐蚀电位的更大影响。在无源电流情况下,氯离子浓度是最重要的因素,而在微观尺度上,发现这两个因素对无源电流的影响是相同的。在微观和宏观系统中,腐蚀的铜上形成的铜绿的表面形态都显示出氯化物浓度对铜绿的结构和晶粒尺寸具有更重要的作用。最后,在各种NaCl浓度和pH值下,铜的微观和宏观电化学阻抗谱表明,经过几个电位动力学极化循环后,铜的行为不同。

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