首页> 外文会议>EPD congress 2004 >DEVELOPMENT OF ELECTROCHEMICAL SENSORS AND THEIR APPLICATION FOR CHARACTERIZING THE METAL/ELECTROLYTE SYSTEM DURING LOCALIZED CORROSION
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DEVELOPMENT OF ELECTROCHEMICAL SENSORS AND THEIR APPLICATION FOR CHARACTERIZING THE METAL/ELECTROLYTE SYSTEM DURING LOCALIZED CORROSION

机译:电化学传感器的发展及其在局部腐蚀过程中表征金属/电解质体系的应用

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Electrochemical microprobes for in situ monitoring of the electrochemical conditions inside recesses are needed to better understand how localized corrosion and other charge transfer processes occur in confined spaces. The electrode potential distribution can be routinely measured in cavities of > 100 μm opening dimension, but the ability to measure the concentrations of chemical species and their change with time in the presence of potential gradients is only recently becoming possible. Microprobes for pH and chloride ion will be described and results with these sensors will be presented and discussed for creviced iron samples in aqueous electrolytes. Available results reveal that these species change in concentration and distribution with time both during the induction period before crevice corrosion starts and during propagation of crevice corrosion. Preliminary data show that ionic concentrations peak at locations of highest metal dissolution rate on the crevice wall.
机译:为了更好地了解在狭窄空间中如何发生局部腐蚀和其他电荷转移过程,需要使用电化学微探针对凹槽内部的电化学条件进行原位监测。可以在开口尺寸大于100μm的腔中常规测量电极电势分布,但是直到最近才有可能测量化学物质的浓度及其随时间的变化而变化的能力。将描述用于pH和氯离子的微探针,并将介绍和讨论这些传感器在水性电解质中的铁样品中得到的结果。现有的结果表明,在缝隙腐蚀开始之前的诱导期和缝隙腐蚀的传播期间,这些物质的浓度和分布都随时间而变化。初步数据显示,离子浓度在缝隙壁上最高金属溶解速率的位置达到峰值。

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