137
Views
9
CrossRef citations to date
0
Altmetric
Original Articles

Comparative behavior study of steel corrosion inhibition kinetics by three phosphate inhibitors with mass loss measurements

&
Pages 48-66 | Received 05 Mar 2019, Accepted 21 Aug 2019, Published online: 13 Sep 2019

References

  • Kashyap A, Jensen FM, Klinghoffer O, et al. Cost effective enhancement durability of concrete structures by intelligent use of stainless steel reinforcement, conference of corrosion and rehabilitation of reinforced concrete structures. Florida. 1998;8:11.
  • Wombacher F, Maeder U, Marazzani B. Aminoalcohol based mixed corrosion inhibitors. Cem Concr Comp. 2004;26(3):209–216.
  • De Schutter G, Luo L. Effect of corrosion inhibiting admixtures on concrete properties. Const Build Mater. 2004;18(7):483–489.
  • Douche-Portanguen A, Prince W, Lutz T, et al. Detection or quantitative analysis of a corrosion inhibitor, the sodium monofluorophosphate, in concrete. Cem Concr Compos. 2005;27:679–687.
  • Fedrizzi L, Azzolini F, Bonora P. The use of migrating corrosion inhibitors to repair motorways, concrete structures contaminated by chlorides. Cem Concr Res. 2005;35(3):551–561.
  • Martinez S, Mansfeld-Hukovic MA. Nonlinear kinetic model introduced for the corrosion inhibitive properties of some organic inhibitors. J Appl Electrochem. 2003;33:1137–1142.
  • Taleb H, AbouZour M. Corrosion inhibition of mild steel using fig leaves extract in hydrochloric acid solution. Intl J Electrochem Sci. 2011;6:6442–6455.
  • Tang Y, Miao Y, Zuo Y, et al. Corrosion behavior of steel in simulated concrete pore solutions treated with calcium silicate hydrates. Const Build Mater. 2012;30:252–256.
  • Nageh KA, Elsaye AA. Electrochemical and stress corrosion cracking behavior of 67Cu–33Zn alloy in aqueous electrolytes containing chloride and nitrite ions: effect of disodium hydrogen phosphate (DSHP). Mater Sci Eng. 2009;156:84–89.
  • Soylev TA, Richardson MG. Corrosion inhibitors for steel in concrete: state-of-the art report. Const Build Mater. 2008;22:609–622.
  • Kashyap A. Effects of water chemistry, temperature, gaseous cavitation & phosphate inhibitors on concrete corrosion [master on science]. Virginia, USA; 2008.
  • Sail L. Etude de la performance d’inhibiteurs de corrosion à base de phosphate pour les constructions en béton armé [Doctorattheisis]. Tlemcen, Algérie; 2013.
  • Page CL, Vennesland O. Pore solution compositions and chloride binding capacity of silica fume cement paste. Mat Constr. 1983;16:19–25.
  • Smart NR, Scott PM, Procter R. Repassivation kinetics and stress corrosion of mild steel in phosphate solutions. Corr Sci. 1990;30(8–9):877–901.
  • Ghods P, Isgor OB, Mcrae B, et al. The effect of concrete pore solution composition on the quality of passive oxide films on black steel reinforcement. Cem Concr Comp. 2009;31(1):2–11.
  • Sail L, Ghomari F, Bezzar A, et al. Mass loss for assessment of the inhibitory efficiency of products to basis of phosphate. Canad J Envir Constr Civ Engin. 2011;5:111–117.
  • Benali O, Larabi L, Traisme M, et al. Electrochimical, theorical and XPS studies of 2-mercapto-1- methylimidazole adsorption on carbon steel in1M HClO4. App Surf Sci. 2007;253:6130–6139.
  • Andrade C, Alonso C, with contributions from Gulikers J. Test methods for on-site corrosion rate measurement of steel reinforcement in concrete by means of the polarization resistance method. Mat Struct. 2004;37(9):623–643.
  • Rakanta E, Zafeiropoulou T, Batis G. Corrosion protection of steel with DMEA-based organic inhibitor. Constr Build Mater. 2013;44:507–513.
  • Sail L, Benbrahim A, Mekami M. Analytical kinetic study of steel corrosion inhibition by Na3PO4in synthetic concrete solutions. Int J Chem Kinet. 2019;51(2):123–130.
  • Duprat M, Bonnel A, Dabosi F. Les monofluorophosphates de zinc et de potassium en tant qu'inhibiteurs de la corrosion d'un acier au carbone en solution de NaCl à 3%. J Appl Electrochem. 1983;13:317–323.
  • Khenadeki A. Etude théorique et expérimentale de l’effet d’inhibition de la corrosion d’un acier au carbone par les dérivées de base de Schiff en milieu acide chlorhydrique [Magister on chemistry]. Algeria: University of Tlemcen; 2013.
  • Lu Z, Qiu Y, Guo X. Effect of pH value on the adsorption behavior and inhibition mechanism of Dodecylamine on carbon steel. Acta Phys Chim Sin. 2008;24(2):243–249.
  • Khouikhi F. Etude de l’efficacité de deux inhibiteurs de corrosion dans les milieux multiphasiques (Eau, huile et gaz) [Magister on chemistry]. Boumerdes (Algeria): University M’Hamed Bougara; 2007.
  • ElSayed MS, Erasmus RM, Comins JD. Corrosion of copper in aerated acidic pickling solutions and its inhibition by 3-amino-1,2,4-triazole-5-thiol. J Colloid and Interf Sci. 2007;306:96–104.
  • Hamdaoui O, Ouchefoun M, Zerdaoui M. Inhibition de la corrosion d’un acier au carbone par le Kemazur 1620. Revue des sciences de l’eau. 2000;13(1):47–54.
  • Simões AM, Fernandes J. Studying phosphate corrosion inhibition at the cut edge of coil coated galvanized steel using the SVET and EIS. Prog Org Coat. 2010;34:219–224.
  • Mennucci MM, Banczek EP, Rodrigues PRP, et al. Evaluation of benzotriazole as corrosion inhibitor for carbon steel in simulated pore solution. Composites. 2009;31:418–424.
  • Saremi M, Mahallati E. A study on chloride-induced depassivation of mild steel in simulated concrete pore solution. Cem Concr Res. 2002;32(12):1915–1921.
  • Laamari R, Benzakour J, Berekhis F, et al. Etude de l’inhibition de la corrosion du fer en milieu sulfurique 1M par l’acide hexa éthylène diamine tétra méthyle phosphonique. Les Technologies de Laboratoire. 2010;5:18–25.
  • Pujol Lesueur VN. Etude du mécanisme d’action du monofluorophosphate de sodium comme inhibiteur de la corrosion des armatures métalliques dans le béton [Doctorattheisis]. Paris (France): University of Pierre et Marie Curie; 2004.
  • Dhouibi L, Triki E, Salta M, et al. Studies on corrosion inhibition of steel reinforcement by phosphate and nitrite. Mat Struct. 2003;36(8):530–540.
  • Zimmermann D, Muñoz AG, Schule JW. Formation of Zn–Ni alloys in thephosphating of Zn layers. Surf Coat Tech. 2005;197:260–269.
  • Simescu F. Elaboration des revêtements de phosphates de zinc sur armature à béton. Etude de leur comportement à la corrosion en milieu neutre et alcalin [Doctorat theisis]. National Institute of Applied Sciences of Lyon, France; 2008.
  • Alonso C, Castellote M, Andrade C. Chloride threshold dependence of pitting potential of reinforcements. Electro Acta. 2002;47(21):3469–3481.
  • Saraswathy V, Song H-W. Improving the durability of concrete by using inhibitors. Build Environ. 2007;42(1):464–472.
  • Gao H, Li Q, Chen FN, et al. Study of the corrosion inhibition effect of sodium silicate on AZ91D magnesium alloy. Corr Sci. 2011;53(4):1401–1407.
  • Hernandez S, Vera JR. A statistical approach for studying CO2 corrosion inhibition of carbon steel, using electrochemical impedance spectroscopy, Corrosion conference. San Diego; 1998.
  • Nebbar M. Etude de la tenue à la corrosion de l’acier N80 et évaluation de l’efficacité d’un inhibiteur de corrosion [chemistry Magister]. Algeria: University of Biskra; 2010.
  • Olav Gartland P. Choosing the right positions for corrosion monitoring on oil and gas pipelines, Corr Ocean USA, Nace, Houston; 1998. p. 83.
  • Etteyeb N, Dhouibi L, Takenouti H, et al. Corrosion inhibition of carbon steel in alkaline chloride media by Na3PO4. Electro Acta. 2007;52(27):7506–7512.
  • Touhami F, Aouniti A, Abed Y, Hammouti B, et al. Corrosion inhibition of armco iron in 1 M HCl media by new bipyrazolic derivatives. Corr Sci. 2000;42:929–940.
  • Awad HS, Turgoose S. Influence of hardness salts on the effectiveness of zinc-1 hydroxyethylidene 1,1 diphosphonic acid (HEDP) mixtures in inhibiting the corrosion of mild steel in neutral oxygen-containing solutions. Corr. 2004;60(12):1168–1179.
  • Faustin M. Etude de l’effet des alcaloïdes sur la corrosion de l’acier C38 en milieu acide chlorhydrique 1M: Application à Aspidosperma album et Geissospermumlaeve. Cayenne: [Doctorat theisis]. UniversityAntilles et de la Guyane; 2013.
  • Okeniyi JO. C10H18N2Na2O10 inhibition and adsorption mechanism on concrete steelreinforcement corrosion in corrosive environments. J Assoc Arab Universities Basic Appl Sci. 2014;20:39–48.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.