References

  1. Md. Saiful Islam, K. Otani, M. Sakairi, Corrosion inhibition effects of metal cations on SUS304 in 0.5 M Cl aqueous solution, Corros. Sci., 140 (2018) 8–17.
  2. P.D. Krell, S. Li, H. Cong, Synergistic effect of temperature and HCl concentration on the degradation of AISI 410 stainless steel, Corros. Sci., 122 (2017) 41–52.
  3. K.S.R. Muthu Kumar, P. Vijian, J.S. Solomon, L. John Berchmans, Corrosion studies on stainless steel-304 in brackish environment, Int. J. Emerg. Technol. Adv. Eng., 2 (2012) 178–182.
  4. S. Hastuty, A. Nishikata, T. Tsuru, Pitting corrosion of type 430 stainless steel under chloride solution droplet, Corros. Sci., 52 (2010) 2035–2043.
  5. M. Behpour, S.M. Ghoreishi, M.K. Kashani, N. Soltani, Inhibition of 304 stainless steel corrosion in acidic solution by Ferulagumosa (galbanum) extract, Mater. Corros., 60(11) (2009) 895–898.
  6. I. Ahamad, M.A. Quraishi, Mebendazole: New and efficient corrosion inhibitor for mild steel in acid medium, Corros. Sci., 52 (2010) 651–656.
  7. B.P. Bewlay, M.R. Jackson, J.-C. Zhao, P.R. Subramanian, A review of very-high-temperature Nb-silicide–based composites, Metal. Mater. Trans., A, 34 (2003) 2043–2052.
  8. M. El Azhar, B. Mernari, M. Traisnel, F. Bentiss, M. Lagrenée, Corrosion inhibition of mild steel by the new class of inhibitors [2,5-bis(n-pyridyl)-1,3,4-thiadiazoles] in acidic media, J. Corros. Sci., 43 (2001) 2229–2238.
  9. J. Zhang, J. Tian, H.Y. Wang, L. Zhang, Synthesis and evaluation of lignosulphonate Mannich base as eco-friendly corrosion inhibitors, Asian J. Chem., 26(22) (2014) 7643–7646.
  10. K.J. Laider, Chemical Kinetics, McGraw-Hill, 1965.
  11. B.M. Mistry, S. Jauhari, Synthesis and evaluation of some quinoline Schiff bases as a corrosion inhibitor for mild steel in 1 N HCl, J. Dispersion Sci. Technol., 86(3) (2013) 1758–1768.
  12. T. Szauer, A. Brand, Adsorption of oleates of various amines on iron in acidic solution, Electrochim. Acta, 26 (1981) 1253–1256.
  13. M. Bouklah, B. Hammouti, Thermodynamic characterization of steel corrosion for the corrosion inhibition of steel in sulphuric acid solutions by Artemisia, Portugal. Electrochim. Acta, 24 (2006) 457–468.
  14. A. Laqhaili et al, Effect of Lavandula stoechas oil on welded material corrosion in 5.5M H3PO4 solution, J. Chem. Pharm. Res., 5(12) (2013) 1297–1306.
  15. M. Scendo, The effect of purine on the corrosion of copper in chloride solutions, Corrosion Sci., 49(2) (2007) 373–390.
  16. F.B. Growcock, R.J. Jasinski, Time-resolved impedance spectroscopy of mild steel in concentrated hydrochloric acid, J. Electrochem. Soc. 136(8) (1989) 2310–2314.
  17. H. Lgaz, O. Benali, R. Salghi, S. Jodehh et al., Pyridinium derivatives as corrosion inhibitors for mild steel in 1 M HCl: Electrochemical, surface and quantum chemical studies, Der Pharma Chemica, 8(2) (2016) 172–190.
  18. J. Flis, T. Zakroczymski, Impedance study of reinforcing steel in simulated pore solution with tannin, J. Electrochem. Soc. 143 (1996) 2458–2464.
  19. M. Abdeli, N.P. Ahmadi, R.A. Khosroshahi, Influence of bis-(2-benzothiazolyl)-disulfide on corrosion inhibition of mild steel in hydrochloric acid media, J. Solid State Electrochem., 15 (2011) 1867–1873.
  20. B.B. Seo, Z. Jahed, M.J. Burek, T.Y. Tsui, Influence of grain size on the strength size dependence exhibited by sub-micron scale nickel structures with complex cross-sectional geometries, Mater Sci. Eng., A 596 (2014) 275–284.
  21. P. Muthukrishnan, K. Saravana Kumar, B. Jeyaprabha, P. Prakash, Anticorrosive activity of kigeliapinnata leaves extract on mild steel in acidic media, Metall. Mater. Trans., A 45(10) (2014) 4510–4524.
  22. E.E. Oguzie, Corrosion inhibition of aluminium in acidic and alkaline media by Sansevieriatrifasciata extract, Corrosion Sci., 49(3) (2007) 1527–1539.
  23. V. Srivastava, M.M. Singh, Corrosion inhibition of mild steel in acidic medium by poly (aniline-co-o-toluidine) doped with p-toluene sulphonic acid, 40(12) (2010) 2135–2143.
  24. B. Anand, Effect formazan of benzaldehyde as corrosion inhibitor on preventing the mild steel corrosion in acidic medium, Chem. Sci. Trans., 2(4) (2013) 1126–1135.
  25. S.A. Ali, H.A. Al-Muallem, S.U. Rahman, M.T. Saeed, Bi-isoxazolidines: A new class of corrosion inhibitors of mil, Corros. Sci., (2008) 50 3070–3077.