Assessing bioorganic gum performance as a corrosion inhibitor in phosphoric acid medium: Electrochemical and computational analysis

Sathiyapriya T., M. Dhayalan, Jagadeeswari R., Rathika Govindasamy, Mohammed Riyaz S. U., Moonis Ali Khan, M. Sillanpää
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Abstract

The present investigation was aimed at exploring the anticorrosive behavior of bio‐organic Auraucaria heterophylla gum exudate (AHGE) on mild steel (MS) corrosion in 1 M phosphoric acid solution by weight loss technique, electrochemical studies, and computational analysis. Additionally, the performance was analyzed by morphological and quantum chemical analyses. The weight loss data revealed that AHGE showed 80% of inhibition efficiency at 303 K temperature. Inhibitor adsorption on MS was in line with Langmuir and Tempkin adsorption isotherms. Potentiodynamic studies showed that the investigated AHGE performed as a mixed‐type inhibitor. Electrochemical parameters like charge transfer resistance, double‐layer capacitance, and inhibition efficiency were determined and presented. Results obtained through computational analysis, scanning electron microscopy/energy dispersive X‐ray analysis, and atomic force microscopy studies were well supported by the inhibitive potential of AHGE.
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评估生物有机胶在磷酸介质中作为缓蚀剂的性能:电化学和计算分析
采用失重法、电化学研究和计算分析等方法,研究了生物有机异叶金auraucaria heterophylla gum渗出液(AHGE)在1m磷酸溶液中对低碳钢(MS)的腐蚀行为。此外,通过形态学和量子化学分析对其性能进行了分析。失重数据显示,在303 K温度下,AHGE的缓蚀率为80%。抑制剂在质谱上的吸附符合Langmuir和Tempkin等温线。电位动力学研究表明,所研究的AHGE表现为混合型抑制剂。测定并给出了电荷转移电阻、双层电容和抑制效率等电化学参数。通过计算分析、扫描电镜/能量色散X射线分析和原子力显微镜研究得到的结果得到了AHGE抑制潜力的很好支持。
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