棘棘皮叶提取物在1M HCl溶液中对低碳钢腐蚀的抑制作用

J. N. Akaaza, S. Bam, G. B. Nyior, D. Gundu
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引用次数: 0

摘要

采用重量法和动电位极化法研究棘棘皮叶提取物在1M HCl溶液中对低碳钢的缓蚀效果。这项研究是在313、323、333和343K的室温和高温下进行的。试验时间为24 ~ 168小时,间隔24小时,室温下,每次升高3小时。抑制剂浓度分别为0.1、0.2、0.3、0.4和0.5 g/L。结果表明:在不添加缓蚀剂的情况下,腐蚀速率随浸泡时间的延长而增加,但随室温和高温下缓蚀剂浓度的增加而降低;在0.5 g/L的室温条件下,对叶提取物的缓蚀率为80%,在0.5 g/L和343K的温度条件下,缓蚀率降至66.67%,说明在较高的温度条件下,缓蚀剂有解吸作用。用动电位极化法观察了提取物对低碳钢阳极溶解的影响。结果表明,该提取物作为混合型缓蚀剂,可同时减缓阳极和阴极反应,显著降低腐蚀速率,从10.889 mm/yr降至0.365 mm/yr。提取物在金属表面的吸收服从Langmuir和Temkin等温线。热力学参数在-21.35 ~ - 22.82 kJ/mol范围内为负值。小于40 kJ/mol,表明萃取物在金属表面的物理吸收。Ea (kJ/mol)由24.21增加到47.88 kJ/mol,也证实了吸附是通过物理吸附机制进行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inhibitive Properties of Acanthospermum hispidum Dc Leaves Extracts on Corrosion of Mild Steel in 1M HCl solution
This study was conducted to investigate the suitability of Acanthospermum hispidum Dc leaves extracts for corrosion inhibition of mild steel immersed in 1M HCl solution using gravimetric and potentiodynamic polarization methods. The study was conducted at room and elevated temperatures of 313, 323, 333 and 343K. The test period was varied from 24 to 168hrs at 24hrs interval, at room temperature and 3 hours at each elevated temperature. The experiments were performed with inhibitor concentrations of 0.1, 0.2, 0.3, 0.4 and 0.5 g/L. The results showed that the corrosion rates increased with time of immersion in the absence of inhibitor but decreased with inhibitor concentration at room and elevated temperature, while inhibition efficiency increased with increase in inhibitor concentration at room temperature but decreased with temperature rise. .Inhibition efficiency of 80 % for leaves extracts was achieved at 0.5 g/L at room temperature but decreased to 66.67 % at 0.5 g/L and temperature of 343K implying desorption of inhibitor at higher temperature. Potentiodynamic polarization method was used to see the influence of the extracts on the anodic dissolution of mild steel. The results showed that the extracts acted as mixed type inhibitor by moderating both the anodic and cathodic reactions and remarkably lowered corrosion rates from 10.889 to 0.365 mm/yr. The absorption of the extracts on the metal surface obeyed Langmuir and Temkin isotherms. The thermodynamic parameters evaluated gave negative values of ∆G°ads in the range of -21.35 to – 22.82 kJ/mol. which is less than 40 kJ/mol indicating physical absorption of the extracts on the metal surface. The increasing values of Ea (kJ/mol) from 24.21 to 47.88 kJ/mol also confirms that absorption is by physisorption mechanism.
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