Water-based corrosion inhibitor for prevention and repair of reinforcement in chloride and carbonated environment

A. K. Tiwari, Purnima Dogra, S. Goyal, Vijay Luxami
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Abstract

This paper explores the influence of 2-aminopyridine (2AP) as water-based migratory corrosion inhibitor (M-CoI) on the corrosion resistance of reinforcing steel bars embedded in ordinary Portland cement and pozzolanic Portland cement concrete subjected to combined chloride and carbonation ingress. Two applications of 2AP are considered i.e., preventive (applied before exposure to aggressive environment) and repair (applied after corrosion initiates). Corrosion performance was assessed using electrochemical techniques and gravimetric mass loss method. The study also examines the impact of 2AP application on chloride ion concentration and carbonation depth of both concrete systems. The compressive strength of each concrete system was also measured to study the impact of M-CoI application on strength properties. Surface condition of hardened concrete and extracted rebar was evaluated by optical microscopy. Results conclude that 2AP effectively retards reinforcement corrosion when used as preventive measure by forming a homogeneous inhibitive layer on steel. However, when used as a repair technique, localised and uniform corrosion was perceived. An attempt has been made to identify the cause of non-performance of 2AP as repair measure. It was concluded that reached concentration of 1 mM was not sufficient to reduce ongoing corrosion due to the accumulation of corrosion products. The influence of the inhibitor on chloride profile and carbonation depth was found to be insignificant. It is concluded that chloride ions initiate the corrosion mechanism, while carbonation exacerbates it, particularly in blended cement concrete. Nonetheless, inhibitor application can provide similar resistance in both concrete systems.
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水基缓蚀剂,用于防止和修复氯化物和碳酸环境中的钢筋
本文探讨了作为水基迁移腐蚀抑制剂(M-CoI)的 2-氨基吡啶(2AP)对埋入普通硅酸盐水泥和波状硅酸盐水泥混凝土中的钢筋在氯化物和碳酸盐化合作用下的耐腐蚀性能的影响。我们考虑了 2AP 的两种应用,即预防性应用(在暴露于腐蚀性环境之前使用)和修复性应用(在腐蚀开始后使用)。采用电化学技术和重量质量损失法对腐蚀性能进行了评估。研究还考察了施用 2AP 对两种混凝土体系的氯离子浓度和碳化深度的影响。此外,还测量了每种混凝土体系的抗压强度,以研究施用 M-CoI 对强度特性的影响。硬化混凝土和拔出的钢筋的表面状况由光学显微镜进行评估。结果表明,2AP 可在钢筋上形成均匀的抑制层,从而有效阻止钢筋锈蚀。但是,在作为修复技术使用时,会出现局部和均匀腐蚀。研究人员试图找出 2AP 作为修复措施效果不佳的原因。得出的结论是,由于腐蚀产物的积累,1 mM 的浓度不足以减少正在发生的腐蚀。抑制剂对氯离子分布和碳化深度的影响微乎其微。结论是氯离子启动了腐蚀机制,而碳化则加剧了腐蚀,特别是在混合水泥混凝土中。尽管如此,在两种混凝土体系中使用抑制剂可以提供类似的抗腐蚀能力。
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