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首页> 外文期刊>Corrosion science >A novel Schiff base-based cationic gemini surfactants: Synthesis and effect on corrosion inhibition of carbon steel in hydrochloric acid solution
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A novel Schiff base-based cationic gemini surfactants: Synthesis and effect on corrosion inhibition of carbon steel in hydrochloric acid solution

机译:新型基于席夫碱的阳离子双子表面活性剂:盐酸溶液中碳钢的合成及其对缓蚀性能的影响

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摘要

The corrosion inhibition characteristics of the synthesized cationic gemini surfactants, namely bis(p-(N,N,N-decyldimethylammonium bromide)benzylidene thiourea (10-S-10), bis(p-(N,N,N-dodecyl-dimethyiammonium bromide)benzylidene thiourea (12-S-12) and bis(p-(N,N,N-tetradecyldimethylam-monium bromide)benzylidene thiourea (14-S-14) on the carbon steel corrosion in 1 M hydrochloric acid have been investigated at 25 ℃ by weight loss, potentiodynamic polarization and electrochemical impedance spectroscopy (EIS) techniques. The inhibition efficiencies obtained from all methods employed are in good agreement with each other. The obtained results show that compound 14-S-14 is the best inhibitor with an efficiency of 97.75% at 5 × 10~(-3) M additive concentration. Generally, the inhibition efficiency increased with increase of the inhibitor concentration. Changes in impedance parameters (charge transfer resistance, R_(ct), and double-layer capacitance, C_(dl)) were indicative of adsorption of 14-S-14 on the metal surface, leading to the formation of a protective film. The potentiodynamic polarization measurements indicated that the inhibitors are of mixed type. The adsorption of the inhibitors on the carbon steel surface in the acid solution was found to obey Langmuir's adsorption isotherm. The free energy of adsorption processes were calculated and discussed. The surface parameters of each synthesized surfactant were calculated from its surface tension including the critical micelle concentration (CMC), maximum surface excess (Γ_(max)) and the minimum surface area (A_(min)). The free energies of micellization (ΔG_(mic)~o) were calculated. The surface morphology of carbon steel sample was investigated by scanning electron microscopy (SEM).
机译:合成的阳离子双子表面活性剂双(对-(N,N,N-癸基二甲基溴化铵)亚苄基硫脲(10-S-10),双(对-(N,N,N-十二烷基-二甲铵)研究了溴化物)亚苄基硫脲(12-S-12)和双(对-(N,N,N-十四烷基二甲基铵-溴化铵)苄基硫脲(14-S-14)对碳钢在1 M盐酸中的腐蚀在25℃失重,电位极化和电化学阻抗谱(EIS)技术的抑制效率相互一致,所得结果表明化合物14-S-14是最佳的抑制剂。在添加剂浓度为5×10〜(-3)M时效率为97.75%。通常,抑制效率随抑制剂浓度的增加而增加。阻抗参数(电荷转移电阻,R_(ct)和双层电容)的变化,C_(dl))表示1的吸附4-S-14在金属表面上,导致形成保护膜。电位动力学极化测量表明抑制剂是混合型的。发现抑制剂在酸性溶液中在碳钢表面上的吸附符合朗缪尔的吸附等温线。计算并讨论了吸附过程的自由能。每种合成表面活性剂的表面参数均由其表面张力计算得出,包括临界胶束浓度(CMC),最大表面过量(Γ_(max))和最小表面积(A_(min))。计算了胶束化的自由能(ΔG_(mic)〜o)。通过扫描电子显微镜(SEM)研究了碳钢样品的表面形态。

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