采用电沉积法在耐酸钢基体上制备了具有低温露点腐蚀性能的超疏水涂层

B. Shi, Xixun Shen, Gaofei Liang, Yanshaozuo Zhu, Qunjie Xu
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引用次数: 1

摘要

以09CrCuSb (ND)钢为代表的耐酸钢广泛应用于烟气处理系统中,在低温烟气环境中容易发生混酸露点腐蚀。为了提高ND钢在低温露点腐蚀环境下的耐蚀性,本文提出了一种肉豆酸铬杂化(CMH)超疏水涂层作为ND钢基体的低温露点腐蚀防护涂层。这种超疏水涂层通过一步直流电沉积沉积在ND钢基体上(预镀的暗镍作为过渡层)。电化学分析结果表明,CMH超疏水涂层能显著提高ND基体的耐蚀性。因此,本研究为ND钢在低温区防止混合酸露点腐蚀提供了一种可行的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The superhydrophobic coating with low‐temperature dew point corrosion resistance on an acid‐resistant steel substrate prepared by the electrodeposition method
The acid‐resistant steel represented by 09CrCuSb (ND) steel that is widely used in flue gas treatment systems is easily prone to mixed‐acid dew point corrosion in the low‐temperature flue gas environment. To improve the corrosion resistance of ND steel in a low‐temperature dew point corrosion environment, here, a chromium–myristate hybrid (CMH) superhydrophobic coating is proposed as a low‐temperature dew point corrosion protective coating for the ND steel substrate. This superhydrophobic coating is deposited on the ND steel substrate (preplated dark nickel as a transition layer) by one‐step direct current electrodeposition. The electrochemical analysis from potentiodynamic polarization and electrochemical impedance spectroscopy and the immersion test show that the CMH superhydrophobic coating can significantly improve the corrosion resistance of the ND substrate. Therefore, the present study provides a feasible strategy for preventing the mixed‐acid dew point corrosion of ND steel in the low‐temperature zone.
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