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Green corrosion inhibition and adsorption characteristics of Luffa cylindrica leaf extract on mild steel in hydrochloric acid environment

机译:盐酸环境下丝瓜叶片提取物对低碳钢的绿色缓蚀和吸附特性

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摘要

The corrosion inhibition of Leaf Extract (LCLE) was investigated using gravimetric, depth of attack and surface analysis techniques. Effect of inhibitor concentrations (0.50–1.00 g/l), temperatures (30–60 °C) and immersion time (4–12 h) was studied on the Inhibition Efficiency (IE) of the extract on Mild Steel (MS) immersed in a 0.5 M HCl solution. The constituents of the proposed inhibitor were identified by using a GC-MS. The media solutions and adsorbed film on MS were characterized using FTIR Spectrophotometer. SEM microgram and surface tester were applied for studying surface morphology and depth of attack profile. The optimum IE of 87.89% was obtained. The LCLE adsorption on MS followed Langmuir isotherm and pseudo-second-order adsorption kinetics. Activation energy (28.71 kJ/mol), entropy (- 0.15 kJ/mol. K), average enthalpy (-28.00 kJ/mol) and Gibbs free energy (-11.43 kJ/mol) obtained at optimum condition indicate exothermic process and physical adsorption mechanism. The result obtained in this study compared well with many reported green inhibitors for MS corrosion.
机译:使用重量分析法,浸蚀深度法和表面分析技术研究了叶提取物(LCLE)的缓蚀性能。研究了抑制剂浓度(0.50–1.00 g / l),温度(30–60°C)和浸没时间(4–12 h)对浸出液对浸入低碳钢(MS)的抑制效率(IE)的影响。 0.5 M HCl溶液。通过使用GC-MS鉴定了拟议抑制剂的成分。使用FTIR分光光度计对介质溶液和MS上的吸附膜进行表征。 SEM显微图和表面测试仪用于研究表面形态和侵蚀深度。获得了87.89%的最佳IE。 LCLE在MS上的吸附遵循Langmuir等温线和拟二级反应动力学。在最佳条件下获得的活化能(28.71 kJ / mol),熵(-0.15 kJ / mol.K),平均焓(-28.00 kJ / mol)和吉布斯自由能(-11.43 kJ / mol)表明放热过程和物理吸附机制。在这项研究中获得的结果与许多报道的MS缓蚀剂绿色缓蚀剂进行了比较。

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