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首页> 外文期刊>Results in Physics >Study of the synergistic effect of 2-methoxy-4-formylphenol and sodium molybdenum oxide on the corrosion inhibition of 3CR12 ferritic steel in dilute sulphuric acid
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Study of the synergistic effect of 2-methoxy-4-formylphenol and sodium molybdenum oxide on the corrosion inhibition of 3CR12 ferritic steel in dilute sulphuric acid

机译:2-甲氧基-4-甲酰基苯酚和氧化钼钠协同作用对3CR12铁素体钢在稀硫酸中的缓蚀作用的研究

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The synergistic effect of the corrosion inhibition properties of 2-methoxy-4-formylphenol and sodium molybdenum oxide on the electrochemical property of 3CR12 ferritic stainless steel in 2M H 2 SO 4 acid solution was assessed through coupon analysis, potentiodynamic polarization technique, IR spectroscopy and micro-analytical technique. Experimental data showed the combined admixture effectively inhibited the steel corrosion at the concentrations analyzed with a maximum inhibition efficiency of 94.47% and 89.71% from coupon analysis and potentiodynamic polarization due to the electrochemical action and inhibition of the steel by the ionized molecules of the inhibiting compound which influenced the mechanism of the redox reactions responsible to corrosion and surface deterioration. Results from corrosion thermodynamic calculations showed chemisorption adsorption mechanism. Infrared spectroscopic images exposed the functional groups of the molecules involved for the corrosion inhibition reaction. Micro-analytical images showed sharp contrast in surface morphology between the inhibited and corroded test specimens under study. Cracks, intergranular and pitting corrosion in addition to severe surface deterioration was observed in the uninhibited samples. Inhibitor adsorption fits the Langmuir isotherm model.
机译:通过试样分析,电位动力学极化技术,红外光谱和红外光谱分析了2-甲氧基-4-甲酰基苯酚和氧化钼钠对3CR12铁素体不锈钢在2M H 2 SO 4酸溶液中的电化学性能的协同抑制作用。微观分析技术。实验数据表明,由于电化学作用和抑制化合物的离子化分子对钢的抑制作用,混合后的混合物在所分析的浓度下能有效抑制钢的腐蚀,最大抑制效率为94.47%和89.71%(从试样分析和电位动力学极化)这影响了导致腐蚀和表面变质的氧化还原反应的机理。腐蚀热力学计算结果表明化学吸附吸附机理。红外光谱图像暴露了参与腐蚀抑制反应的分子的官能团。显微分析图像显示了所研究的受抑制和腐蚀试样之间的表面形态形成鲜明对比。在未抑制的样品中除了观察到严重的表面劣化外,还发现了裂纹,晶间腐蚀和点蚀。抑制剂吸附符合Langmuir等温模型。

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