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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Theoretical prediction and experimental study of 1-Butyl-2-(4-methylphenyl)benzimidazole as a novel corrosion inhibitor for mild steel in hydrochloric acid
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Theoretical prediction and experimental study of 1-Butyl-2-(4-methylphenyl)benzimidazole as a novel corrosion inhibitor for mild steel in hydrochloric acid

机译:1-丁基-2-(4-甲基苯基)苯并咪唑在盐酸中对低碳钢的新型缓蚀剂的理论预测和实验研究

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摘要

The inhibition performance of a newly synthesized benzimidazole derivative, 1-Butyl-2-(4-methylphenyl)benzimidazole (BMPB), on the surface of mild steel in 1.0 M HCl was predicted theoretically using molecular dynamics method and quantum chemical calculations in comparison with benzimidazole (BI) compound. The theoretical results confirmed by electrochemical measurements and scanning electron microscopy study show that BMPB may exhibit better inhibitive performance than BI for mild steel in hydrochloric acid solution. The adsorption process and thermodynamic parameters of BMPB were calculated and discussed. It was found that BMPB is classified as a mixed type inhibitor, suppressing both anodic metal dissolution and cathodic hydrogen evolution reactions. The high inhibitory efficiency of BMPB is due to the formation of a protective film on the mild steel surface. This study shows that theoretical calculations can be used as a reliable method to select organic inhibitors prior to experiments. (C) 2015 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:通过分子动力学方法和量子化学计算,从理论上预测了新合成的苯并咪唑衍生物1-丁基-2-(4-甲基苯基)苯并咪唑(BMPB)在1.0 M HCl中对低碳钢表面的抑制性能。苯并咪唑(BI)化合物。通过电化学测量和扫描电子显微镜研究证实的理论结果表明,对于盐酸溶液中的低碳钢,BMPB可能表现出比BI更好的抑制性能。计算并讨论了BMPB的吸附过程和热力学参数。发现BMPB被归类为混合型抑制剂,既抑制阳极金属溶解又抑制阴极氢放出反应。 BMPB的高抑制效率是由于在低碳钢表面上形成了保护膜。这项研究表明,理论计算可以用作在实验前选择有机抑制剂的可靠方法。 (C)2015台湾化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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