Corrosion inhibition of carbon steel in hydrochloric acid by organic compounds containing heteroatoms

M. Athar, H. Ali, M. Quraishi
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引用次数: 47

Abstract

Abstract Three organic inhibitors containing heteroatoms, namely: undecenoic acid hydrazide (UAH); 2-mercaptobenzothiazole (MBT); and 2-hydrazinobenzothiazole (HBT) have been synthesised in the lab and their inhibiting action on the corrosion of carbon steel in 1N HCl was investigated by means of two different techniques, namely weight loss and potentiodynamic studies. The weight loss studies were conducted in 1MHCl at different temperatures (30, 45, and 60°C) using various concentrations (25–500 ppm) of the inhibitor, and the inhibitor with the highest efficiency (HBT) was also tested for different immersion times (1/2, 3, 6, and 24 h) at the optimum concentration (500 ppm) at room temperature (30°C). The results show that the inhibitor efficiency increases with increased temperature, from room temperature (30°C) to 60°C at the most effective concentration (500 ppm). Inhibitor efficiency (IE) also increases with increase in the inhibitor concentration from 25 to 500 ppm at a given temperature and time. The effect of immersion time on the inhibition efficiency (IE) for HBT was also studied, and the results show that the inhibition efficiency (IE) increases with immersion time. The potentiodynamic polarisation studies revealed that UAH is a mixed type of inhibitor whereas MBT and H BT are predominantly anodic inhibitors. The adsorption of these inhibitors on the metal surface obeys the Temkin adsorption isotherm.
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含杂原子的有机化合物对碳钢在盐酸中的缓蚀作用
三种含杂原子的有机抑制剂,即:十一烯酸肼(UAH);2-mercaptobenzothiazole (MBT);和2-肼苯并噻唑(HBT)在实验室合成,并通过两种不同的技术,即失重和动电位研究,研究了它们对碳钢在1N HCl中的腐蚀抑制作用。在不同温度(30、45和60°C)的1MHCl中,使用不同浓度(25-500 ppm)的抑制剂进行了失重研究,并在室温(30°C)的最佳浓度(500 ppm)下,对效率最高的抑制剂(HBT)进行了不同浸泡时间(1/2、3、6和24 h)的测试。结果表明,缓蚀剂的效率随着温度的升高而增加,从室温(30°C)到60°C (500 ppm)的最有效浓度。在给定温度和时间下,随着抑制剂浓度从25 ppm增加到500 ppm,抑制剂效率(IE)也会增加。研究了浸没时间对HBT缓蚀效率的影响,结果表明:浸没时间越长,缓蚀效率越高。电位动力学极化研究表明,UAH是一种混合型抑制剂,而MBT和hbt主要是阳极抑制剂。这些抑制剂在金属表面的吸附遵循Temkin吸附等温线。
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