Evaluation of cathodic protection performance of carbon steel pipeline buried in soil: A review

M. G. Mahlobo, P. Mjwana, M. Tladi, B. Obadele, P. Olubambi, P. Refait
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引用次数: 3

Abstract

Carbon steel is commonly used in the gas and liquid pipeline transportation due to its low price while it possesses machanical properties accepted in most industrial applications. However, it has been reported to be susceptible to corrosion when exposed to various soil conditions. Cathodic protection (CP) is the most promising and already implemented technique for protecting buried carbon steel from corrosion. This study aims at reviewing the soil properties influencing the carbon steel corrosion process in the presence and absence of CP thus also giving the effectiveness of CP. The literature review carried out in this work has identified voltammetry as the only method for monitoring and estimating carbon steel residual corrosion rate under various soil conditions. The voltammetry was found to be a very reliable method that can be used to evaluate the CP effectiveness under soil conditions. However, more experimental tests have been proposed to extend the knowledge on all soil processes taking place during carbon steel corrosion in the presence of CP. Among other soil processes referred to for future studies are the soluble ionic species behavior in the soil which is linked to steel/soil vicinity pH, long-term exposure experiments as well as CP potential (insufficient, sufficient and overprotection potential).
埋地碳钢管道阴极保护性能评价综述
碳钢因其价格低廉而被广泛应用于气体和液体管道运输中,同时又具有大多数工业应用所接受的机械性能。然而,据报道,当暴露在各种土壤条件下时,它容易受到腐蚀。阴极保护(CP)是目前应用最广泛、最有前途的埋地碳钢防腐技术。本研究旨在回顾在CP存在和不存在的情况下影响碳钢腐蚀过程的土壤性质,从而也给出了CP的有效性。在这项工作中进行的文献综述已经确定伏安法是在各种土壤条件下监测和估计碳钢残余腐蚀速率的唯一方法。伏安法是一种非常可靠的评价土壤条件下CP有效性的方法。然而,已经提出了更多的实验测试,以扩展在CP存在下碳钢腐蚀过程中发生的所有土壤过程的知识。未来研究中提到的其他土壤过程包括土壤中与钢/土壤附近pH值相关的可溶性离子物种行为,长期暴露实验以及CP电位(不足,充分和过保护电位)。
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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