Effect of C5H11NO2S on Reinforcing-Steel Corrosion in Concrete Immersed in Industrial/Microbial Simulating-Environment

Author:

Okeniyi Joshua Olusegun,Abioye Abiodun Oyekola,Adikpewun Zechariah Chiwonsoko,Otesanya Adeola Abigail,Eleshin Michael Damilola,Gabriel Olanrewaju Oyewale,Adeoye Oluyori

Publisher

Springer International Publishing

Reference51 articles.

1. Okeniyi, J. O., Omotosho, O. A., Popoola, A. P. I., & Loto, C. A. (2016). Phyllanthus muellerianus and C6H15NO3 synergistic effects on 0.5 M H2SO4-immersed steel-reinforced concrete: implication for clean corrosion-protection of wind energy structures in industrial environment. In: AIP Conference Proceedings (Vol. 1758, No. 030031, pp. 1–8). AIP Publishing. doi: 10.1063/1.4959427 .

2. Ismail, M., Raja, P. B., & Salawu, A. A. (2015). Developing deeper understanding of green inhibitors for corrosion of reinforcing steel in concrete. In: H. L. Lim (Ed.), Handbook of research on recent developments in materials science and corrosion engineering education (pp. 118–146). Hershey, PA: IGI Global.

3. Fei, F. L., Hu, J., Wei, J. X., Yu, Q. J., Chen, Z. S. (2014). Corrosion performance of steel reinforcement in simulated concrete pore solutions in the presence of imidazoline quaternary ammonium salt corrosion inhibitor. Construction and Building Materials, 70, 43–53.

4. Okeniyi, J. O., Ambrose, I. J., Oladele, I. O., Loto, C. A., & Popoola, A. P. I. (2013). Electrochemical performance of sodium dichromate partial replacement models by triethanolamine admixtures on steel-rebar corrosion in concretes. International Journal of Electrochemical Science, 8, 10758–10771.

5. Mesquita, T. J., Chauveau, E., Mantel, M., Kinsman, N., Roche, V., & Nogueira, R. P. (2012). Lean duplex stainless steels—The role of molybdenum in pitting corrosion of concrete reinforcement studied with industrial and laboratory castings. Materials Chemistry and Physics, 132, 967–972.

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