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Acid Corrosion Inhibition and Adsorption Behaviour of Ethyl Hydroxyethyl Cellulose on Mild Steel Corrosion

机译:乙基羟乙基纤维素对低碳钢的酸腐蚀抑制作用和吸附行为

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摘要

The corrosion inhibition of mild steel in 1.0 M H2SO4solution by ethyl hydroxyethyl cellulose has been studied in relation to the concentration of the additive using weight loss measurement, EIS, polarization, and quantum chemical calculation techniques. The results indicate that EHEC inhibited corrosion reaction in the acid medium and inhibition efficiency increased with EHEC concentration. Further increase in inhibition efficiency is observed in the presence of iodide ions, due to synergistic effect. Impedance results reveal that EHEC is adsorbed on the corroding metal surface. Adsorption followed a modified Langmuir isotherm, with very high negative values of the free energy of adsorption(ΔGads). The polarization data indicate that the inhibitor was of mixed type, with predominant effect on the cathodic partial reaction. The frontier molecular orbitals, HOMO (the highest occupied molecular orbital) and LUMO (the lowest unoccupied molecular orbital) as well as local reactivity of the EHEC molecule, were analyzed theoretically using the density functional theory to explain the adsorption characteristics at a molecular level. The theoretical predictions showed good agreement with experimental results.
机译:通过重量损失测量,EIS,极化和量子化学计算技术,研究了乙基羟乙基纤维素对1.0 M H2SO4溶液中低碳钢的腐蚀抑制作用与添加剂浓度的关系。结果表明,EHEC抑制了酸性介质中的腐蚀反应,且抑制效率随EHEC浓度的增加而增加。由于协同作用,在碘离子的存在下观察到抑制效率的进一步提高。阻抗结果表明EHEC吸附在腐蚀的金属表面上。吸附遵循改进的Langmuir等温线,具有很高的负吸附自由能(ΔGads)。极化数据表明该抑制剂是混合型的,对阴极部分反应具有主要作用。使用密度泛函理论从理论上分析了EHEC分子的前沿分子轨道HOMO(最高占据的分子轨道)和LUMO(最低未占据的分子轨道)以及局部反应性,以在分子水平上解释吸附特性。理论预测与实验结果吻合良好。

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