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Metol as Corrosion Inhibitor for zinc

机译:甲醇作为锌的缓蚀剂

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The inhibition behavior of metol (N-methyl-p-aminophenol sulphate) on zinc in different corrosive solutions at room temperature was investigated by various techniques such as weight loss, polarization and linear polarization methods. The percentage inhibition efficiencies were evaluated at different concentrations of the inhibitors. The corrosion rate, inhibition efficiency and surface coverage were dependent on metol concentration. The electrochemical data indicated a basic modification of zinc surface resulting in a decrease in the corrosion rate. Corrosion inhibition was explained by considering an interaction between metal surface and the inhibitor. SEM images and FT-IR profiles confirmed the formation of passive film on the metal surface.
机译:利用失重法,极化法和线性极化法等多种技术研究了甲醇在室温下在不同腐蚀性溶液中对甲醇的抑制作用(N-甲基-对氨基苯酚硫酸盐)。在不同浓度的抑制剂下评估抑制效率百分比。腐蚀速率,抑制效率和表面覆盖率取决于甲酚浓度。电化学数据表明锌表面的基本改性导致腐蚀速率降低。通过考虑金属表面和抑制剂之间的相互作用来解释腐蚀抑制作用。 SEM图像和FT-IR曲线证实了在金属表面上形成了钝化膜。

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