An Outline of Employing Metals and Alloys in Corrosive Settings with Ecologically Acceptable Corrosion Inhibitors

Surfaces Pub Date : 2023-10-11 DOI:10.3390/surfaces6040027
Prabu Baskar, Shalini Annadurai, Sushmithaa Panneerselvam, Mayakrishnan Prabakaran, Jongpil Kim
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Abstract

Researchers have just discovered an alternative to synthetic corrosion inhibitors, which are hazardous and terrible for the ecosystem, to prevent rusting in the environment. A metal corrodes when it is subjected to corrosive media (acid, base, or saline) and they deteriorate, leading to failure. The most straightforward and affordable corrosion protection and prevention technique in acidic environments has been proven to be corrosion inhibitors. On industrial surfaces, pieces of machinery, or vessels, these inhibitors slow the rate of corrosion, preventing the monetary losses brought on by metallic corrosion. Recently, attention has been directed to developing ecologically appropriate corrosion retardation methods because inorganic and organic inhibitors are harmful and expensive. Recent studies have focused on green mild steel (MS) corrosion inhibitors that mimic industrial processes in acidic conditions. This presentation briefly covers the many types of corrosion, the corrosion process and the most recent studies on using natural plant extracts as corrosion inhibitors. Since they are safe and cost-effective, green corrosion inhibitors are a new trend in preventing corrosion. These inhibitors are produced from various plant parts, and inhibition efficiency (IE) also depends on them. To ascertain the IE of the corrosion inhibitor, some experiments, including computational studies (quantum calculations and MD simulations), electrochemical measurements (electrochemical impedance (EIS) and potentio-dynamic polarization), surface morphology atomic force microscopy (AFM), scanning electron microscopy (SEM)/energy-dispersive X-ray analysis (EDX) and UV–visible spectroscopy are carried out. It has been demonstrated that the IE is maximum for green corrosion inhibitors compared to synthetic inhibitors. This paper provides an overview of the properties, mechanism of corrosion inhibitors, nature of green corrosion inhibitors and their IE obtained by performing tests. This review article discussion shows that reinforcement with plant extract performs well in aggressive environments, which is evident from electrochemical studies and surface analysis when compared to reinforcement with inhibitors.
在具有生态可接受的缓蚀剂的腐蚀性环境中使用金属和合金的概述
研究人员刚刚发现了一种替代合成缓蚀剂的方法,以防止环境中的生锈。合成缓蚀剂对生态系统来说是危险和可怕的。当金属受到腐蚀性介质(酸、碱或盐水)的腐蚀时,它们就会变质,导致失效。在酸性环境中,最直接、最经济的防腐蚀技术已经被证明是缓蚀剂。在工业表面、机械部件或容器上,这些抑制剂减缓了腐蚀的速度,防止了金属腐蚀带来的经济损失。近年来,由于无机和有机缓蚀剂有害且价格昂贵,开发生态适宜的缓蚀剂已成为人们关注的焦点。最近的研究集中在绿色低碳钢(MS)缓蚀剂,模拟酸性条件下的工业过程。本报告简要介绍了多种类型的腐蚀,腐蚀过程和使用天然植物提取物作为缓蚀剂的最新研究。绿色缓蚀剂具有安全、经济的特点,是防腐蚀的新趋势。这些抑制剂是由各种植物部位产生的,抑制效率(IE)也取决于它们。为了确定缓蚀剂的IE,进行了一些实验,包括计算研究(量子计算和MD模拟)、电化学测量(电化学阻抗(EIS)和电位动力学极化)、表面形貌原子力显微镜(AFM)、扫描电子显微镜(SEM)/能量色散x射线分析(EDX)和紫外可见光谱。研究表明,与合成缓蚀剂相比,绿色缓蚀剂的IE最大。本文综述了缓蚀剂的性能、机理、绿色缓蚀剂的性质及其试验所得的IE。从电化学研究和表面分析中可以看出,与抑制剂相比,植物提取物增强剂在恶劣环境中表现良好。
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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