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Inhibition of Mild Steel Corrosion Using Aqueous Extract of Cocos nucifera L. Peduncle in Acidic Solutions and Their Adsorption Characteristics

机译:酸性溶液中椰壳茎杆水提物对轻钢腐蚀的抑制及其吸附特性

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Cocos nucifera L peduncle (CNP) extract, obtained from destructive distillation, as a possible source of green inhibitor, for the corrosion of mild steel in 1 M HCI was evaluated using mass loss method, potentiodynamic polarization technique, and electrochemical impedance spectroscopy (EIS). The inhibition efficiency was found to change with variation in concentration of the inhibitor, time of immersion, and temperature. The adsorption of the inhibitor molecule onto the metal surface was found to obey El-Awady kinetic thermodynamic and Frumkin adsorption isotherm. The activation energy (E_a) and other thermodynamic parameters indicate a strong interaction between the inhibitor and the mild steel surface. Polarization measurements indicate that CNP act as a mixed type inhibitor. SEM confirmed the adsorption of inhibitor molecules on mild steel surface. Quantum chemical calculations were performed by Gaussian 03 code of programs using B3LYP /6-31 G (d) basis set, to gain some insight, about structural and electronic effects on the inhibition efficiency of the tested inhibitor. FT-IR spectral studies further corroborated the mechanism of inhibition.
机译:使用质量损失法,恒电位极化技术和电化学阻抗谱(EIS),评估了从破坏性蒸馏中获得的椰油小花梗(CNP)提取物(可能作为绿色抑制剂的来源)对1 M HCl中低碳钢的腐蚀作用。 。发现抑制效率随抑制剂浓度,浸渍时间和温度的变化而变化。发现抑制剂分子在金属表面上的吸附遵循El-Awady动力学热力学和Frumkin吸附等温线。活化能(E_a)和其他热力学参数表明抑制剂与低碳钢表面之间有很强的相互作用。极化测量表明,CNP充当混合型抑制剂。 SEM证实了抑制剂分子在低碳钢表面上的吸附。使用B3LYP / 6-31 G(d)基集,通过程序的高斯03代码执行量子化学计算,以了解有关结构和电子对被测抑制剂的抑制效率的影响。 FT-IR光谱研究进一步证实了抑制作用的机理。

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