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- W4282915320 abstract "The influential mechanism of O 2 on the corrosion of N80 carbon steel under dynamic supercritical CO 2 conditions was explored by mass loss and electrochemical tests, and surface analysis. It is demonstrated that the introduction of O 2 inhibits the corrosion of steel. The developed water chemistry model confirms that the decrease in the corrosive species concentration by introducing O 2 is not responsible for the inhibition to steel corrosion. The corrosion inhibition of O 2 is implemented by promoting the formation of protective FeCO 3 film in the initial period owing to the diffusion barrier effect of the formed outer ferric hydroxide/oxide film. • A water chemistry model in the supercritical_CO 2 -O 2 containing formation water was developed. • The introduction of O 2 in the supercritical_CO 2 environment inhibit the corrosion of N80 carbon steel. • The decrease in corrosive species concentration after inducing O 2 is not responsible for the inhibited corrosion of steel. • Diffusion barrier effect of outer Fe hydroxide/oxide layer in presence of O 2 facilitates the formation of protective FeCO 3 . • The formation of protective FeCO 3 accounts for the corrosion inhibition of steel in supercritical_CO 2 -O 2 environments." @default.
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- W4282915320 date "2022-08-01" @default.
- W4282915320 modified "2023-10-18" @default.
- W4282915320 title "Unveiling the influential mechanism of O2 on the corrosion of N80 carbon steel under dynamic supercritical CO2 conditions" @default.
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- W4282915320 doi "https://doi.org/10.1016/j.corsci.2022.110436" @default.
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