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Inhibition of Al corrosion in 0.5MHCl solution by Areca flower extract

机译:ARECA花提取物抑制0.5MHCl溶液中的抗腐蚀

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The corrosion inhibition property of Areca flower extract species on the Al surface in acid (0.5MHCl) medium was tested by weight loss, Tafel plot, impedance, scanning electron microscopy and atomic force microscopy techniques. The influence of different concentrations of Areca flower extract, 0.5MHCl solution temperature and aluminum immersion (contact) time was also evaluated. Parameters such as Ea, ΔH?, ΔS?, Kadsand ΔG°adswere calculated by the gravimetric (weight loss) technique. Results of mass loss technique indicated that, the Areca flower extract molecules are strongly adsorbed at Al- 0.5MHCl solution interface and follows the law of the Langmuir adsorption model. Tafel curves show that, the Areca flower extract molecules effectively adsorbed on the active Al sites by replacing the H2O molecules and strongly interact with cathodic and anodic sites impeding the dissolution reaction by mixed mode. Hence, Al metal is protected. Electrochemical impedance results indicate that, area of a semicircle (Nyquist plots) in the presence of the Areca flower extract is high compared to the bare system. The variation in the surface topography of aluminum was analyzed through scanning electron microscopy and atomic force microscopy techniques. Further, AFM results show that, surface roughness values in the protected Al system are low compared to the unprotected Al system.
机译:通过重量损失,Tafel图,阻抗,扫描电子显微镜和原子力显微镜技术测试酸(0.5MHCl)培养基中Al表面上Al表面上的腐蚀抑制性能。还评价了不同浓度的ARECA花提取物,0.5MHCL溶液温度和铝浸泡(接触)时间的影响。通过重量(重量损耗)技术计算的ea,Δhα,Δ,Δsα,kadsandΔg°adswere。大规模损失技术的结果表明,ARECA花提取物分子在Al-0.5MHCl溶液界面中强烈吸附,遵循朗米尔吸附模型的定律。 Tafel曲线表明,通过更换H2O分子并用混合模式强烈地与阻抗溶出反应的阴极和阳极点相互作用,有效地吸附在活性Al位点上的ARECA花提取物。因此,保护​​Al金属。电化学阻抗结果表明,与裸系统相比,半圆形(奈奎斯特图)的面积高。通过扫描电子显微镜和原子力显微镜技术分析铝表面形貌的变化。此外,AFM结果表明,与未受保护的AL系统相比,受保护的AL系统中的表面粗糙度值低。

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