Synthesis of gemini cationic surfactants-based pyridine Schiff base for steel corrosion and sulfate reducing bacteria mitigation

介电谱 阳离子聚合 吸附 吡啶 塔菲尔方程 腐蚀 化学 肺表面活性物质 朗缪尔吸附模型 临界胶束浓度 朗缪尔 核化学 无机化学 化学工程 材料科学 胶束 电化学 有机化学 物理化学 水溶液 生物化学 工程类 电极
作者
Ahmed G. Abdelhamid,Wagdy El-Dougdoug,S.M. Syam,I. Aiad,Samy M. Shaban,Dong‐Hwan Kim
出处
期刊:Journal of Molecular Liquids [Elsevier BV]
卷期号:369: 120890-120890 被引量:36
标识
DOI:10.1016/j.molliq.2022.120890
摘要

Three gemini cationic surfactant with different hydrophobic tails labeled GSBO, GSBD, and GSBH based azomethine and pyridine nuclei have been synthesized and confirmed spectroscopy via FTIR, 1HNMR, and mass spectroscopy. The surface and thermodynamic study were conducted via measurement the surface tension measurements at different temperatures for well examining their corrosion inhibition efficiency. The affinity of the GSBO, GSBD, and GSBH toward micelle formation and adsorption at interface were hydrophobic and temperature dependent. The C-steel corrosion suppression via the synthesized GSBO, GSBD, and GSBH in 1 M H2SO4 were evaluated using electrochemical impedance spectroscopy, weight loss and polarization techniques, demonstrating their efficient affinity to mitigate the steel corrosion. Increasing the surfactant hydrophobicity exhibit higher ability to suppress the corrosion, as confined by the higher inhibition efficiency achieved by GSBH of 94.5 % that matched with higher adsorption affinity as claimed from the surface and thermodynamic investigation. The Tafel examination clarified GSBO, GSBD, and GSBH behaves as mixed type inhibitors following modified Langmuir isotherm. The inhibitors adsorption on C-steel was confirmed by XPS and SEM surface examination. Ultimately the synthesized azomethine based pyridine nuclei showed affinity to mitigate the sulfate reducing bacteria (SRB) with cut-off point observed for GSBO.
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