Experimental and theoretical investigations of the corrosion protection of mild steel by methanolic Triumfetta rhomboidea J. leaf extract

Bamidele E. Agbaffa , Emmanuel F. Olasehinde , Matthew A. Adebayo , Ebun-Oluwa P. Oladele , Adebola I. Akinjokun , Idowu J. Esho
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Abstract

Triumfetta rhomboidea leaf extract (TRLE) was used as a natural and benign corrosion inhibitor of mild steel (MS) in HCl (1 mol/L) by gravimetric, electrochemical and theoretical techniques. Identification of the major compounds in TRLE was conducted on a Gas Chromatography-Mass Spectrophotometer (GC-MS). Theoretical calculations were done and the relationship between the experimental inhibition efficiencies and quantum chemical parameters were obtained. The parameters of thermodynamic equations (Kads; Ea; ΔGadso; ΔSadso; ΔHadso) were calculated and explained. The potential of inhibition of TRLE increased as the concentration of the TRLE increased but reduced with temperature increase. The adsorption of TRLE on the MS surface followed the Langmuir isotherm model. It was revealed that corrosion inhibition may be due to the spontaneous physical adsorption of the TRLE molecules on the surface of the MS. The respective polarisation and impedance data indicated that TRLE is a mixed-type inhibitor and the inhibition mechanism is due to charge-transfer. Scanning electron microscopy-energy dispersive X-ray analytical methods confirmed that TRLE protected the surface of MS and reduced the dissolution of the MS in the acidic solution. The GC-MS data revealed that octadecanoic acid and 9-actadecenoic acid were the most abundant compounds in TRLE and thus, were selected for quantum and molecular dynamics simulation. The theoretical predictions were in good agreement with experimental results.
甲醇三棱叶提取物对低碳钢的防腐性能试验与理论研究
采用重量法、电化学法和理论分析等方法,研究了三叶叶提取物(TRLE)在盐酸(1 mol/L)中对低碳钢(MS)的天然良性缓蚀剂。采用气相色谱-质谱联用仪(GC-MS)对其主要成分进行了鉴定。进行了理论计算,得到了实验抑制效率与量子化学参数的关系。热力学方程参数(Kads;Ea;ΔGadso;ΔSadso;ΔHadso)的计算和解释。TRLE的抑制电位随TRLE浓度的增加而增加,但随温度的升高而降低。TRLE在质谱表面的吸附符合Langmuir等温模型。结果表明,缓蚀作用可能是由于TRLE分子在ms表面的自发物理吸附,极化和阻抗数据表明,TRLE是一种混合型缓蚀剂,缓蚀机制是由于电荷转移。扫描电镜-能量色散x射线分析方法证实,TRLE保护了质谱表面,减少了质谱在酸性溶液中的溶解。GC-MS数据显示,在TRLE中,十八烷酸和9-二十五烯酸是最丰富的化合物,因此,我们选择了量子和分子动力学模拟。理论预测与实验结果非常吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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