Analysis of Variance and Surface Response Temperature Interaction on Adsorption Behaviour of Copper in Alkaline Medium
Keywords:
Copper, Fishbone ash, Corrosion, Inhibitor, AdsorptionAbstract
Copper's susceptibility to chloride-induced deterioration has increased research interest in sustainable corrosion inhibitors. Using electrochemical techniques (potentiodynamic polarisation, open-circuit potential) at temperatures (30–60°C) and concentrations (0.2–0.8 g), this study investigates fishbone ash as a green inhibitor for copper in 0.5 M NaCl. At 30°C/0.8g, the results show mixed-type inhibition behaviour with an efficiency of 98.6% (corrosion rate reduction: 195.96 to 2.69 μm/yr). Temkin adsorption study showed physisorption dominance (ΔG°ads = -10.47 to -12.23 kJ/mol) and high surface interaction (Kads = 1.1475–1.4931 mol⁻¹). optimum performance was found at 53.37°C with 0.49g inhibitor through statistical optimisation using response surface methods, resulting in a predicted corrosion rate of 1.59 μm/yr (99.3% reduction compared to control). With optimal conditions allowing for >98% corrosion suppression, these results confirm fishbone ash's efficacy as an environmentally beneficial inhibitor.
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