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USE AND ABUSE OF EIS IN STUDYING THE MECHANISMS OF CO2/H2S CORROSION OF MILD STEEL

机译:EIS在研究温和钢的CO2 / H2S腐蚀机制方面的使用和滥用

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Electrochemical Impedance Spectroscopy (EIS) is a powerful transient technique which enables an insight into the corrosion process not easily obtained by other predominantly DC techniques. However the EIS technique presents a large challenge both from a theoretical as well as an experimental point of view. Collecting accurate EIS raw data is not easy as EIS is plagues with errors not seen by the DC techniques. Building mechanistic models to capture the EIS data is a very complex task which enables extraction of valuable information about the corrosion process, however the time and effort investment required is very large. In this study of CO2/H2S corrosion of mild steel it was found that a “minor” detail in the experimental set-up caused erroneous acquisition of EIS raw data. These data were “successfully” modeled by using a complex electrochemical theory, which appeared plausible. When the experimental mistake was discovered the EIS data were retaken, the analysis was redone and the conclusions about the corrosion process were completely revised.
机译:电化学阻抗光谱(EIS)是一种强大的瞬态技术,可以通过其他主要的DC技术能够深入了解不容易获得的腐蚀过程。然而,EIS技术从理论和实验的角度来看都具有很大的挑战。收集准确的EIS原始数据并不容易,因为EIS是DC技术没有看到错误的瘟疫。建筑机械模型捕获EIS数据是一个非常复杂的任务,可以提取有关腐蚀过程的有价值信息,但需要的时间和精力投资非常大。在该研究的CO2 / H2S腐蚀的温和钢的腐蚀中,发现实验装置中的“次要”细节导致EIS原始数据的错误获取。通过使用复杂的电化学理论,这些数据是“成功”建模的,这些理论出现了合理的。当发现实验错误时,将EIS数据重新提出,分析是重做的,并且完全修订了关于腐蚀过程的结论。

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