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Thiosemicarbazone derivatives as corrosion inhibitor for C- steel in HCl corrosive medium

机译:硫代氨基脲类衍生物在HCl腐蚀性介质中作为C型钢的腐蚀抑制剂

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Reaction of thiosemicarbazide with Pyrazole carboxaldehyde derivatives to give the corresponding thiosemicarbazone which characterized by FTIR and 1HNMR, the product was investigated as corrosion inhibitors for carbon steel in HCl by chemical and electrochemical method. It has been observed that corrosion rate decreases and inhibition efficiencies increases with increasing in inhibitor concentration and temperature. The apparent activation energy (Ea) and other thermodynamic parameters have also been computed. The electrochemical data indicated the basicmodification of steel surface as a result in a decrease in the corrosion rate. The polarization data indicated that the used compound act as mixed type inhibitors. The slopes of the cathodic and anodic Tafel lines (âc, âa) are approximately constant and independent of the inhibitor concentrations. The inhibition occurs through adsorption of the inhibitor molecules on the metal surface without modifying the mechanism of corrosion process. SEM studies revels the formation of passive filmon themetal surface. Results obtained frompolarization, open circut and weight loss measurements are in good agreement with each other.
机译:硫代氨基脲与吡唑甲醛衍生物反应生成相应的硫代氨基脲,用FTIR和1HNMR表征,用化学和电化学方法研究了该产物作为碳钢在HCl中的缓蚀剂。已经观察到,随着抑制剂浓度和温度的增加,腐蚀速率降低并且抑制效率增加。表观活化能(Ea)和其他热力学参数也已经计算出来。电化学数据表明,由于腐蚀速率降低,钢表面发生了基本改性。极化数据表明所用化合物起混合型抑制剂的作用。阴极和阳极Tafel线的斜率(â,a)大致恒定,与抑制剂浓度无关。抑制是通过抑制剂分子在金属表面上的吸附而发生的,而没有改变腐蚀过程的机理。 SEM研究抑制了金属表面上钝化膜的形成。从极化,开路和体重减轻测量获得的结果彼此非常吻合。

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