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Eucalyptus leaf extract as a eco-friendly corrosion inhibitor for mild steel in sulfuric and phosphoric acid solutions

机译:<斜视>桉树叶提取物作为硫酸和磷酸溶液中温和钢的生态友好腐蚀抑制剂

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The adsorption mechanism and inhibitive action of the Eucalyptus plant leaf extract (Eu) on the corrosion of mild steel in 0.5?M H_(2)SO_(4)and 0.5?M H_(3)PO_(4)solutions were investigated by potentiodynamic polarization curves measurements and electrochemical impedance spectroscopy technique. Potentiodynamic polarization curves revealed that the Eucalyptus leaf extract acts as a mixed type inhibitor in both acidic solutions. The impedance responses indicated that the corrosion process occurs under activation control. Fourier transform infrared spectroscopy has been used to predict the possible major chemical constituent of the leaf extract. Four adsorption isotherms including Langmuir, kinetic–thermodynamic, Flory–Huggins and Temkin model were used to investigate the mode of inhibition of Eucalyptus leaf extract. The free energy of adsorption showed that the corrosion inhibition takes place by spontaneous physical adsorption of Eucalyptus leaf extract molecules on the mild steel surface. The obtained data indicated that Eucalyptus leaf extract is a more efficient inhibitor of mild steel corrosion in 0.5?M H_(2)SO_(4)than in 0.5?M H_(3)PO_(4)solutions. Thermodynamics activation parameters were also calculated and discussed.
机译:通过电位动力学研究了0.5μmH_(2)SO_(2)SO_(4)和0.5μmH_(3)溶液的温和钢腐蚀的吸附机制和抑制作用偏振曲线测量和电化学阻抗谱技术。电位动力学偏振曲线揭示了桉树叶片提取物作为酸性溶液中的混合型抑制剂。阻抗响应表明腐蚀过程发生在激活控制下。傅里叶变换红外光谱已经用于预测叶子提取物的可能的主要化学成分。使用包括Langmuir,动力动力动力动力学,牙龈和Temkin模型的四个吸附等温线用于探讨桉树叶提取物的抑制模式。吸附的自由能表明,通过在温和钢表面上的桉树叶子提取物分子的自发物理吸附来进行腐蚀抑制。所获得的数据表明,桉叶叶提取物是0.5μmH_(2)SO_(4)中的温和钢腐蚀的更有效抑制剂,而不是0.5μmH_(3)PO_(4)溶液。还计算并讨论了热力学激活参数。

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