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    烷基链长对咪唑啉双子化合物表面与缓蚀性能的影响

    Effect of Alkyl Chain Length on the Surface Properties and Corrosion Inhibition Performance of Imidazoline Gemini Compounds

    • 摘要: 以四种不同烷基链长的脂肪酸(十二烷酸、十四烷酸、十六烷酸、十八烷酸)、二乙烯三胺、碳酸二甲酯为原料,合成咪唑啉季铵化中间产物,再与环氧氯丙烷反应合成了四种咪唑啉双子化合物(GI-C11、GI-C13、GI-C15、GI-C17)。采用悬滴法、分水法研究了四种双子化合物的表面性能;采用电化学测试、扫描电镜及配套能谱仪(SEM-EDS)等评价了其缓蚀性能,并研究了其吸附行为。结果表明:系列双子化合物都具有良好的表面性能与缓蚀性能,且随着链长减小,表面性能与缓蚀性能增强。其中GI-C11性能最佳,在临界胶束浓度(0.266 mmol·L-1)下,其水溶液的表面张力最低(24.55 mN·m-1);50 mg·L-1GI-C11对N80钢(50 ℃、5%HCl,腐蚀4 h)的缓蚀率高达97.46%;四种缓蚀剂均为以抑制阳极为主的混合型缓蚀剂,且随缓蚀剂量的增加,腐蚀抑制效果增强;其在N80钢表面的吸附满足Langmuir吸附等温式,是一种包含化学和物理吸附的混合吸附。

       

      Abstract: Four imidazoline gemini compounds (GI-C11, GI-C13, GI-C15, GI-C17) were synthesized by reacting imidazoline quaternization intermediates with four different alkyl chain length fatty acids (dodecanoic acid, tetradecanoic acid, hexadecanoic acid, octadecanoic acid), diethylenetriamine and dimethyl carbonate as raw materials. The surface properties of four gemini compounds were studied using hanging drop method and water separation method. The corrosion inhibition performance was evaluated using electrochemical testing, SEM-EDS, and the adsorption behavior was studied. The results indicate that the series of twin compounds had good surface performance and corrosion inhibition properties, and the surface and corrosion inhibition properties increased with decreasing chain length. Among them, GI-C11 had the best performance, with the lowest surface tension of its aqueous solution (24.55 mN · m-1) at the critical micelle concentration (0.266 mmol · L-1). The corrosion inhibition rate of 50 mg·L-1 GI-C11 on N80 steel (50 ℃, 5% HCl, corrosion for 4 hours) was 97.46%. The four types of corrosion inhibitors are all mixed corrosion inhibitors that mainly inhibit the anode, and the corrosion inhibition effect increases with the increase of corrosion inhibitor dosage. Its adsorption on the surface of N80 steel is a mixed adsorption involving chemical and physical adsorption which follows the Langmuir adsorption isotherm.

       

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