Quantum and Electrochemical Studies of Corrosion Inhibition Impact on Industrial Structural Steel (E410) by Expired Amiloride Drug in 0.5 M Solutions of HCl, H2SO4 and NaHCO3

IF 2.4 Q3 CHEMISTRY, MULTIDISCIPLINARY Moroccan Journal of Chemistry Pub Date : 2021-08-07 DOI:10.48317/IMIST.PRSM/MORJCHEM-V9I3.22346
B. U. Ugi, M. E. Obeten, V. Bassey, E. Boekom, E. Omaliko, Frederick Ugi, I. Uwah
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引用次数: 3

Abstract

Computational and Electrochemical Studies of Corrosion Inhibition Impact on Industrial Structural Steel (E410) by Expired Amiloride Drug in 0.5 M Solutions of HCl, H 2 SO 4 and NaHCO 3 was carried out under the following experimental and analytical methods: Mass loss, thermometric, electrochemical impedance spectroscopy, potentiodynamic polarization, Quantum chemical calculations, simulation analysis and scanning electron microscopy (SEM). Findings revealed that the inhibitor is highly effective in all the tested media with surface coverage and an inhibition efficiency of 0.99/98.6, 0.92/92.2 and 0.88/88.2 % for HCl, H 2 SO 4 and NaHCO 3 respectively. Electrochemical data revealed strong adsorption of the inhibitor in both solutions as charged transfer resistance as in the increased. Thermodynamically, the inhibitor was stabled, spontaneous, physically adsorbed and associative. The theoretical data showed an energy gap of 0.019 eV close enough to allow speedy movement of the inhibitor molecules across energy levels. A good correlation of the data was found with the Langmuir isotherm compared to the El-Awady, hence a monolayer chemical adsorption as deduced. The electrochemical, SEM and theoretical data were in agreement with those of chemical experiment confirming expired amiloride as a good inhibitor of industrial structural steel (E410) in 0.5 M solutions of HCl, H 2 SO 4 and NaHCO 3 .
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在0.5 M HCl、H2SO4和NaHCO3溶液中,过期阿米洛利药物对工业结构钢(E410)缓蚀作用的量子和电化学研究
在以下实验和分析方法下,对过期酰胺类药物在0.5M HCl、H2 SO4和NaHCO3溶液中对工业结构钢(E410)的缓蚀作用进行了计算和电化学研究:质量损失、测温、电化学阻抗谱、动电位极化、量子化学计算,模拟分析和扫描电子显微镜(SEM)。结果表明,该抑制剂在所有测试介质中都具有很高的表面覆盖率,对HCl、H2 SO4和NaHCO3的抑制效率分别为0.99/98.6、0.92/92.2和0.88/88.2%。电化学数据显示,随着电荷转移电阻的增加,抑制剂在两种溶液中的吸附都很强。热力学上,抑制剂是稳定的、自发的、物理吸附的和缔合的。理论数据显示,0.019eV的能隙足够接近,可以使抑制剂分子在能级上快速移动。与El Awady相比,数据与Langmuir等温线有很好的相关性,因此推断出单层化学吸附。电化学、扫描电镜和理论数据与化学实验结果一致,证实失效的阿米洛利在0.5M的HCl、H2 SO4和NaHCO3溶液中对工业结构钢(E410)具有良好的缓蚀作用。
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来源期刊
Moroccan Journal of Chemistry
Moroccan Journal of Chemistry CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
3.40
自引率
9.10%
发文量
0
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