Lekan Taofeek Popoola, S. A. Al‐Ghamdi, Usman Taura, Yuli Panca Asmara, Abdulrhman M. Alsharari, Adnan Sulaiman Almasoudi, Fahad M. Aldosari, Nacer Badi
Adoption of product innovation via development of coatings from solid wastes can boost the socio-economic development of a nation and facilitate climate action by reducing over-reliance on petroleum-based polymers. In this study, corrosion of A36 steel in 1 M HCl solution was protected using epoxy coatings enhanced with FeSO 4 /FeCl 3 and silane-functionalised rice husk nanosilica. Inhibition efficiencies of synthesised organic epoxy coatings were evaluated using weight loss and electrochemical methods. At optimum conditions (100 °C, 3 days, 6 wt% and 120 rpm), the enhanced epoxy coating exhibited inhibition efficiency of 98.71%. The corrosion potential ( E corr ) and corrosion current density ( I corr ) reduced from −0.6 V to −0.44 V; and 1.11 μA/cm 2 to 0.46 μA/cm 2 , respectively, while the inhibition efficiency increased from 97.64% to 99.02% when the enhancer concentration was increased from 2 wt% to 6 wt%. Impedance spectra revealed an increase in the capacitive arc radius with increasing the enhancer concentration. The value of R ct for the blank, epoxy and enhanced epoxy was observed to be 28.86 ± 0.29 Ωcm 2 , 44.88 ± 1.81 Ωcm 2 and 129.55 ± 3.35 Ωcm 2 , respectively. As the epoxy was enhanced further, ε EIS increased from 35.70% to 77.72% while C dl increased from 0.006 to 2.185 µF cm −2 .