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首页> 外文期刊>Applied Surface Science >Synergism Between Rare Earth Cerium(iv) Ion And Vanillin On The Corrosion Of Steel In H_2so_4 Solution: Weight Loss, Electrochemical, Uv-vis, Ftir, Xps, And Afm Approaches
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Synergism Between Rare Earth Cerium(iv) Ion And Vanillin On The Corrosion Of Steel In H_2so_4 Solution: Weight Loss, Electrochemical, Uv-vis, Ftir, Xps, And Afm Approaches

机译:稀土铈(iv)离子和香兰素对H_2so_4溶液中钢腐蚀的协同作用:重量损失,电化学,Uv-vis,Ftir,Xps和Afm方法

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摘要

The synergism between rare earth cerium(IV) ion and vanillin (4-hydroxy-3-methoxy-benzaldehyde) on the corrosion of cold rolled steel (CRS) in 1.0 M H_2SO_4 solution at five temperatures ranging from 20 to 60 ℃ was first studied by weight loss and potentiodynamic polarization methods. The inhibited solutions were analyzed by ultraviolet and visible spectrophotometer (UV-vis). The adsorbed film of CRS surface containing optimum doses of the blends Ce~(4+)-vanillin was investigated by Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS) and atomic force microscope (AFM). The results revealed that vanillin had a moderate inhibitive effect, and the inhibition efficiency (IE) increased with the vanillin concentration. The adsorption of vanillin obeyed Temkin adsorption isotherm. Polarization curves showed that vanillin was a mixed-type inhibitor in sulfuric acid, while prominently inhibited the cathodic reaction. For the cerium(IV) ion, it had a negligible effect, and the maximum IE was only about 20%. However, incorporation of Ce~(4+) with vanillin improved significantly the inhibition performance. The IE for Ce~(4+) in combination with vanillin was higher than the summation of IE for single Ce~(4+) and single vanillin, which was synergism in nature. A high inhibition efficiency, 98% was obtained by a mixture of 25-200 mg l~(-1) vanillin and 300-475 mg l~(-1) Ce~(4+). UV-vis showed that the new complex of Ce~(4+)-vanillin was formed in 1.0 M H_2SO_4 for Ce~(4+) combination with vanillin. Polarization studies showed that the complex of Ce~(4+)-vanillin acted as a mixed-type inhibitor, which drastically inhibits both anodic and cathodic reactions. FTIR and XPS revealed that a protective film formed in the presence of both vanillin and Ce~(4+) was composed of cerium oxide and the complex of Ce~(4+)-vanillin. The synergism between Ce~(4+) and vanillin could also be evidenced by AFM images. Depending on the results, the synergism mechanism was discussed from the viewpoint of adsorption theory.
机译:首先研究了稀土铈离子和香兰素(4-羟基-3-甲氧基苯甲醛)对1.0 M H_2SO_4溶液在20至60℃这五个温度下对冷轧钢(CRS)腐蚀的协同作用。通过重量损失和电位极化方法。用紫外可见分光光度计(UV-vis)分析抑制溶液。通过傅里叶变换红外光谱(FTIR),X射线光电子能谱(XPS)和原子力显微镜(AFM)研究了含有最佳剂量Ce〜(4 +)-香兰素共混物的CRS表面吸附膜。结果表明,香兰素具有中等程度的抑制作用,并且抑制效率(IE)随香兰素浓度的增加而增加。香兰素的吸附服从Temkin吸附等温线。极化曲线表明,香兰素是硫酸中的混合型抑制剂,而显着抑制了阴极反应。对于铈(IV)离子,其影响可忽略不计,最大IE仅约为20%。然而,Ce〜(4+)与香兰素的结合显着改善了抑制性能。 Ce〜(4+)与香兰素联用的IE高于单个Ce〜(4+)和单香兰素的IE的总和,这在本质上是协同的。 25-200 mg l〜(-1)香兰素和300-475 mg l〜(-1)Ce〜(4+)的混合物具有很高的抑制效率,达到98%。紫外可见可见,Ce〜(4+)与香兰素的结合在1.0M H_2SO_4中形成了新的Ce〜(4 +)-香兰素复合物。极化研究表明,Ce〜(4 +)-香兰素的配合物起混合型抑制剂的作用,可显着抑制阳极和阴极反应。 FTIR和XPS分析表明,香兰素和Ce〜(4+)均存在时形成的保护膜由氧化铈和Ce〜(4 +)-香兰素的配合物组成。 Ce〜(4+)与香兰素之间的协同作用也可以通过原子力显微镜图像证明。根据结果​​,从吸附理论的角度探讨了协同作用机理。

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