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首页> 外文期刊>Construction and Building Materials >Eriobotrya japonica Lindl leaves extract application for effective corrosion mitigation of mild steel in HC1 solution: Experimental and computational studies
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Eriobotrya japonica Lindl leaves extract application for effective corrosion mitigation of mild steel in HC1 solution: Experimental and computational studies

机译:Eriobotrya japonica Lindl叶提取物应用于HC1解决方案中低碳钢的有效腐蚀缓解:实验和计算研究

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摘要

The feasibility of using Eriobotrya japonica Lindl (EJL) extract as a green inhibitor towards mild steel corrosion retardation in 1 M HCl solution was evaluated through integrated experimental and computational perspective. By utilizing electrochemical and surface analyses benefits, including EIS, potentiodynamic polarization, SEM, AFM and contact angle test, the protection function of EJL extract was studied. In addition, the EJL extract itself was examined by means of FT-IR and UV-Vis analysis. EIS results revealed the increase in mild steel corrosion resistance in the presence of EJL extract by increasing the extract concentration. The highest resistance was achieved at 800 ppm concentration. A mixed type behavior of EJL extract with dominant anodic dissolution reduction was proved by DC polarization. The lowest current density was obtained at 800 ppm concentration. SEM and AFM images indicated the protective layer growth on steel surface having intact surface morphology and more homogeneity in the presence of inhibitor. Contact angle test results confirmed the steel surface wettability enhancement by addition of EJL extract. The presence of functional groups, which make the inhibitors molecule adsorption possible, was verified by FT-IR and UV-Vis tests results. Furthermore, the computational methods (i.e., quantum mechanics and molecular simulations) evidenced the binding of EJL extract compounds onto steel substrate, affirming the inhibition action of EJL extract. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过综合实验和计算的视角,评估使用Eriobotrya japonica Lindl(EJL)提取物作为绿色抑制剂在1M HCl溶液中进行温和钢腐蚀延迟的可行性。通过利用电化学和表面分析效益,包括EIS,电位动力学极化,SEM,AFM和接触角测试,研究了EJL提取物的保护功能。此外,通过FT-IR和UV-VIS分析检查EJL提取物本身。 EIS结果表明,通过增加提取物浓度,通过增加EJL提取物的温和钢耐腐蚀性增加。以800ppm浓度达到最高抗性。通过DC偏振证明了具有显性阳极溶解还原的EJL提取物的混合型行为。在800ppm浓度下获得最低电流密度。 SEM和AFM图像表明钢表面上具有完整表面形态和更均匀性在抑制剂存在下的保护层生长。接触角测试结果证实了通过添加EJL提取物的钢表面润湿性。通过FT-IR和UV-VI试验结果验证了使抑制剂可吸附的官能团的存在。此外,计算方法(即量子力学和分子模拟)证明了EJL提取物化合物在钢基材上的结合,肯定了EJL提取物的抑制作用。 (c)2019 Elsevier Ltd.保留所有权利。

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