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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Utilizing Lemon Balm extract as an effective green corrosion inhibitor for mild steel in 1M HCl solution: A detailed experimental, molecular dynamics, Monte Carlo and quantum mechanics study
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Utilizing Lemon Balm extract as an effective green corrosion inhibitor for mild steel in 1M HCl solution: A detailed experimental, molecular dynamics, Monte Carlo and quantum mechanics study

机译:利用柠檬香脂提取物作为1M HCl溶液中温和钢的有效绿色腐蚀抑制剂:详细的实验,分子动力学,蒙特卡罗和量子力学研究

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This study concerns with mild steel corrosion inhibition in 1M HCl solution protected with different concentrations of Lemon Balm extract. Electrochemical and theoretical approaches are utilized for approaching this goal. The type of functional groups in the active components present in the Lemon Balm extract (LB.E) was examined through UV-visible analysis, Fourier Transform Infrared (spectroscopy) (FT-IR) and Raman spectroscopy. According to the electrochemical impedance spectroscopy (EIS) test results the maximum inhibition efficiency of about 95% was obtained in the solution containing 800 ppm LB.E. Potentiodynamic polarization test results revealed that in the presence of LB.E the rates of anodic steel dissolution and cathodic hydrogen evolution reactions significantly decreased and a mixed inhibition effect was obtained. Surface studies were done by contact angle test, atomic force microscopy (AFM) and scanning electron microscopy (SEM). Results revealed that the steel surface damage as a result of HCl solution attack significantly decreased by addition of 800 ppm LB.E. In addition, deposition of a highly hydrophobic film composed of organic compounds of inhibitors on mild steel surface was demonstrated by contact angle test results. The excellent corrosion inhibition effect of LB.E on mild steel in HCl solution is related to the adsorption of active inhibitive compounds such as caryophyllene, germacrene, citral, luteolin, chlorogenic acid and rosmarinic acid on the anodic/cathodic places of mild steel surface. Furthermore, the theoretical results derived from Monte Carlo, molecular dynamics and quantum mechanics techniques evidenced the inhibitors adsorption onto steel substrate through donor-acceptor interactions. (C) 2018 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:本研究涉及1M HCl溶液中的温和钢腐蚀抑制,保护具有不同浓度的柠檬强化提取物。电化学和理论方法用于接近这一目标。通过UV可见分析,傅里叶变换红外(光谱)(FT-IR)和拉曼光谱,检查柠檬色提取物(LB.E)中存在的活性组分中的官能团的类型。根据电化学阻抗光谱(EIS)测试结果,在含有800ppm Lb.e的溶液中获得了约95%的最大抑制效率。电位动力学偏振试验结果表明,在LB的存在下,阳极钢溶解和阴极氢进化反应的速率显着降低,并且获得了混合抑制效果。表面研究通过接触角测试,原子力显微镜(AFM)和扫描电子显微镜(SEM)进行。结果表明,由于HCl溶液侵蚀的钢表面损伤通过添加800ppm Lb.e显着降低。另外,通过接触角测试结果证明了由温和钢表面上的抑制剂的有机化合物组成的高度疏水膜的沉积。 LB.E在HCl溶液中的低耐钢的优异腐蚀抑制作用与活性抑制化合物如亚氰基,芳丙烯,柠檬酸,阳极/阴极钢表面的阳极/阴极位置上的吸附性抑制化合物如亚氰基烯酮,芳丙烯,柠檬酸酸等吸附有关。此外,源自蒙特卡罗,分子动力学和量子力学技术的理论结果证明了通过供体 - 受体相互作用的抑制剂吸附到钢基材上。 (c)2018台湾化工工程师研究所。 elsevier b.v出版。保留所有权利。

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