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首页> 外文期刊>Journal of Molecular Liquids >Highly efficient and eco-friendly acid corrosion inhibitor for mild steel: Experimental and theoretical study
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Highly efficient and eco-friendly acid corrosion inhibitor for mild steel: Experimental and theoretical study

机译:轻度钢的高效和生态辅助腐蚀抑制剂:实验和理论研究

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摘要

Murraya koenigii Linn (Curry leaves) was established as an eco-friendly acid corrosion inhibitor (ECI) for mild steel (MS) in 5 M HCl by experimental and theoretical techniques. The weight loss, polarization, and impedance spectroscopy techniques were used to find corrosion rate and inhibition efficiency. The theoretical study includes DFT and molecular dynamic simulation (MDS) investigation. The different theoretical parameters were investigated to find the nature of interaction and mechanism of inhibition provided by the ECI. Frequency calculation was performed to obtain theoretical IR spectra. SEM, metallurgical microscopy, DFT, Langmuir, and Frumkin adsorption isotherm studies confirm the physiochemisorption of ECI on MS. Increase in charge transfer resistance supports physio-chemisorption of ECI on MS. A very high negative value of interaction energy, i.e., -185.23 kcal/mol and significant adsorption energy (8.76 kJ/mol) further supports strong physio-chemisorption of ECI. No pits and cracks were observed in presence of ECI. A maximum of 98.13% inhibition efficiency was achieved in 5 M HCl at 4 g/L of ECI. The biochemical and chemical oxygen demand of wastewater were found within an acceptable limit. (C) 2021 Elsevier B.V. All rights reserved.
机译:通过实验和理论研究,将咖喱叶(Murraya koenigii Linn)作为一种环保型酸性缓蚀剂(ECI)应用于低碳钢(MS)在5 M HCl中的缓蚀。使用失重、极化和阻抗谱技术来确定腐蚀速率和缓蚀效率。理论研究包括DFT和分子动力学模拟(MDS)研究。研究了不同的理论参数,以发现ECI提供的相互作用性质和抑制机制。进行频率计算以获得理论红外光谱。SEM、金相显微镜、DFT、Langmuir和Frumkin吸附等温线研究证实了ECI在MS上的物理化学吸附。电荷转移阻力的增加支持ECI在MS上的物理化学吸附。相互作用能的非常高负值,即-185.23 kcal/mol和显著的吸附能(8.76 kJ/mol)进一步支持ECI的强物理化学吸附。在存在ECI的情况下,未观察到凹坑和裂纹。在浓度为4g/L的5 M HCl中,ECI的抑制效率最高可达98.13%。废水的生化需氧量和化学需氧量均在可接受的范围内。(c)2021爱思唯尔B.V.保留所有权利。

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