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Inhibitory action of Albizia zygia gum on mild steel corrosion in acid medium

机译:Albizia zygia胶对酸性介质中低碳钢腐蚀的抑制作用

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The corrosion and inhibition behaviours of mild steel in sulphuric acid in the presence of Albizia zygia gum (AZ) have been studied using the weight loss, gasometric, Fourier transforminfrared (FTIR) and thermometric techniques. The temperature studies reflect that the percentage of inhibition efficiency is decreased with rise in temperature and that indicates the mechanism of physical adsorption. The calculated values of activation energy (Ea) also support the physisorption process. The thermodynamic parameters such as heat of adsorption (Qads) and free energy of adsorption (ΔGads) are suggested that the adsorption of inhibitor on the mild steel surface is exothermic and followed by spontaneous process. The adsorption of the inhibitor on mild steel surface involves the formation of multimolecular layer through C-H bending vibrations due to alkenes at 703.08 and 933.58.01 cm-1, C-O stretches due to carboxylic acid, ester, ether and alcohol at 1084.03 and 1150.58 cm-1, C-O stretch due to ketone /aldehyde/carboxylic acid at 1826.65 cm-1, C-H aliphatic stretch at 2820.99 cm-1 and C-H stretch at 3026.41.79 cm-1, which support physical adsorption. The observed results indicate that A. zygia gum could serve as an effective inhibitor on mild steel in sulphuric acid.
机译:使用失重,气相法,傅立叶变换红外(FTIR)和测温技术研究了Albizia zygia胶(AZ)存在下低碳钢在硫酸中的腐蚀和缓蚀行为。温度研究表明,抑制效率的百分比随着温度的升高而降低,这表明了物理吸附的机理。活化能(Ea)的计算值也支持物理吸附过程。吸附热(Qads)和吸附自由能(ΔGads)等热力学参数表明缓蚀剂在低碳钢表面的吸附是放热的,并随后发生自发过程。缓蚀剂在低碳钢表面的吸附涉及由于烯烃在703.08和933.58.01 cm-1处的CH弯曲振动而形成的多分子层,在1084.03和1150.58 cm-处的羧酸,酯,醚和醇引起的CO拉伸。如图1所示,由于酮/醛/羧酸在1826.65cm-1处的CO拉伸,在2820.99cm-1处的CH脂族拉伸和在3026.41.79cm-1处的CH拉伸,这支持了物理吸附。观察结果表明,A。zygia胶可以作为硫酸中低碳钢的有效抑制剂。

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