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首页> 外文期刊>Journal of Molecular Liquids >Combined experimental and computational studies on corrosion inhibition of Houttuynia cordata leaf extract for steel in HCl medium
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Combined experimental and computational studies on corrosion inhibition of Houttuynia cordata leaf extract for steel in HCl medium

机译:HCl培养基钢钢腐蚀抑制的组合实验和计算研究

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The development of corrosion inhibitors that could spontaneously adsorb immediately on the metal surfaces after they are damaged by electrochemical reactions would remarkably arise the improvement of cost-saving, durability and environmental impact of metals. The use of leaf materials for metal corrosion remains an important challenge due to the high corrosion protection, availability as natural materials, environmental friendly and low-cost. Herein, we report a Houttuynia cordata leaf extract as a green corrosion inhibitor that acts as a mixed type of inhibitor for steel in an aqueous 0.1 M hydrochloric acid solution. It also performs the high inhibition performance (up to 983% by adding 1500 ppm inhibitor), spontaneous uniform and smooth film formation of the steel surface and less corrosion attack when the H. cordata leaf extract is added to the aqueous hydrochloric acid solution. In contrast to the inhibited systems, uninhibited specimen is severely corroded at high corrosion rate, which is associated with a significant degradation of the entire steel surface. Additionally, investigation on good adhesion and thermal stability of the protective film, as well as enriched electron abundance of selected inhibitor species are performed via molecular dynamics simulation method. Furthermore, insights of corrosion, inhibition and spontaneous film formation mechanisms are also proposed and discussed in detail. (C) 2020 Elsevier B.V. All rights reserved.
机译:在通过电化学反应损坏后,可以在金属表面上立即吸附的腐蚀抑制剂的发展将显着地产生成本节省,耐久性和环境影响的提高。由于高腐蚀性保护,天然材料,环境友好和低成本,使用叶片金属腐蚀的使用仍然是一个重要的挑战。在此,我们将Houttuynia Cordata叶提取物作为绿色腐蚀抑制剂,其用作钢中钢中的钢中的混合型抑制剂。它还通过加入高抑制性能(通过加入1500ppm抑制剂,在盐酸水溶液中加入钢表面的自发均匀和光滑的膜形成,耐腐蚀性较小的腐蚀攻击。与抑制的系统相比,不受抑制的标本在高腐蚀速率下严重腐蚀,这与整个钢表面的显着降解相关。另外,通过分子动力学模拟方法进行保护膜的良好附着力和热稳定性的研究以及富集的所选抑制剂物种的富含电子丰度。此外,还提出并详细讨论了腐蚀,抑制和自发膜形成机制的见解。 (c)2020 Elsevier B.v.保留所有权利。

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