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Inhibition effect of the synergistic properties of 4-methyl-norvalin and 2-methoxy-4-formylphenol on the electrochemical deterioration of P4 low carbon mold steel

机译:4-甲基 - 诺尔林素和2-甲氧基-4-甲甲酚对P4低碳模钢电化学劣化的抑制作用

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Study of the synergistic inhibition properties of the combined admixture of 4-methyl-norvalin and 2-methoxy-4-formylphenol (non-toxic organic compounds) on the corrosion of P4 low carbon mold steel in 1.5 M H2SO4 and HCl solution was performed with weight loss measurement, potentiodynamic polarization and optical microscopy analysis. Results obtained showed the inhibition efficiency of the admixed compound performed above the value for effective corrosion inhibition at very low concentrations in H2SO4 solution. However, from mid concentration to the highest concentration studied, the inhibition efficiency of the compound was above 85% from electrochemical tests. In HCl solution the inhibition efficiency of the compound was well above 80% and 90% for weight loss and polarization tests at all concentration studied. Anodic corrosion inhibition mechanism was determined for the compound in H2SO4 according to Freundlich and Frumkin adsorption isotherms due to weak Van der Waals attraction between the inhibitor molecules and the steel’s surface. The mechanism of corrosion inhibition in HCl was calculated to be cathodic type according to Langmuir isotherm model.Morphological images of inhibited and non-inhibited steel surfaces significantly contrast each other though the extent of deterioration was much severe for the steel from H2SO4 solution.
机译:研究4-甲基 - 诺尔林蛋白和2-甲氧基-4-甲酰基苯酚(无毒有机化合物)在1.5M H 2 SO 4和HCl溶液中对P4低碳模钢腐蚀的组合混合物的协同抑制性能体重减轻测量,电位动力学和光学显微镜分析。得到的结果表明,在H 2 SO 4溶液中非常低浓度的有效腐蚀抑制的值的抑制效率。然而,从中浓度到所研究的最高浓度,从电化学测试中,化合物的抑制效率高于85%。在HCl溶液中,在研究所有浓度的重量损失和极化试验中,化合物的抑制效率远高于80%和90%。根据Freundlich和Frumplin吸附等温,根据抑制剂分子和钢表面之间的弱van der waals吸引力,确定阳极腐蚀抑制机制。根据Langmuir等温模型,计算HCl中腐蚀抑制的机理。抑制和非抑制钢表面的形态图像彼此显着对比,虽然来自H 2 SO 4溶液的钢的劣化程度非常严重。

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