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On the Use of Voltammetry to Estimate the Effectiveness of Cathodic Protection of Buried Steel Structures

机译:关于使用伏安法估算埋藏钢结构阴极保护的有效性

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Buried steel structures, e.g., oil and gas pipelines, are often protected against corrosion by the combination of organic coating and cathodic protection. The effectiveness of cathodic protection can be monitored over time using voltammetry via a computer fitting of the polarization curves with theoretical electrochemical kinetic laws. In this study, the influence of the scan rate and the procedure used for the acquisition of the polarization curve was investigated. Reliable, though slightly overestimated, residual corrosion rates were obtained using a specific procedure and a low potential scan rate. However, the residual corrosion rate has a meaning only if the wet area of the electrode is known, which can be achieved by measuring another parameter linked to the wet area, e.g., the electrolyte resistance R-s. In a soil at 25% saturation, the wet area, which is the surface of the metal in contact with the soil electrolyte, may be actually significantly different from the whole surface of the electrode.
机译:埋地钢结构,例如石油和天然气管道,通常通过有机涂层和阴极保护的组合来保护腐蚀。通过通过具有理论电化学动力学法的偏振曲线的计算机拟合,可以随着时间的推移通过伏安法监测阴极保护的有效性。在该研究中,研究了扫描速率的影响和用于采集偏振曲线的过程。可靠,虽然使用特定程序和低电位扫描速率获得稍微高估的残余腐蚀速率。然而,只有在已知电极的湿区域,剩余腐蚀速率才具有含义,这可以通过测量与湿区域连接的另一个参数,例如电解电阻R-S来实现。在25%饱和度的土壤中,湿区域是与土壤电解质接触的金属表面的湿区域可以实际上与电极的整个表面显着不同。

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