206
Views
28
CrossRef citations to date
0
Altmetric
Original Articles

The Oil from Mentha rotundifolia as Green Inhibitor of Carbon Steel Corrosion in Hydrochloric Acid

, , , , &

References

  • Abboud, Y., Abourriche, A., Tanane, O., Hammouti, B., Saffaj, T., Ainane, T., Berrada, M., Charrouf, M., and Bennamara, A. (2009). Corrosion inhibition of carbon steel in acidic media by Bifurcaria bifurcata extract, Chem. Eng. Comm., 196, 788–800.
  • Abdallah, M., Al Karanee, S. O., and Abdel Fattah, A. A. (2009). Inhibition of the corrosion of nickel and its alloys by natural clove oil, Chem. Eng. Comm., 196, 1406–1416.
  • Abdallah, M., Al Karanee, S. O., and Abdel Fattah, A. A. (2010). Inhibition of acid and pitting corrosion of nickel using natural black cumin, Chem. Eng. Comm., 197, 1446–1454.
  • Abd El-Maksoud, S. A., and Fouda, A. S. (2005). Some pyridine derivatives as corrosion inhibitors for carbon steel in acidic medium, Mater. Chem. Phys., 93, 84–90.
  • Abdulwahab, M., Kasim, A., Fayomi, O. S. I., Asuke, F., and Popoola, A. P. I. (2012). Inhibitive effect of Arachis hypogeae on the corrosion of mild steel in sulphuric acid solution, Mater. J. Environ. Sci., 3, 1177–1182.
  • Adams, R. M., Fleming, R. A., Chang, C. C., McCarl, B. A., and Rosenzweig, C. (1995). A reassessment of the economic effects of global climate change on U.S. agriculture, Climatic Change, 30, 147–167.
  • Akalezi, C. O., Enenebaku, C. K., and Oguzie, E. E. (2013). Inhibition of acid corrosion of mild steel by biomass extract from the Petersianthus macrocarpus plant, Mater. J. Environ. Sci., 4, 217–226.
  • Badiea, A. M., and Mohana, K. N. (2009). Corrosion mechanism of low-carbon steel in industrial water and adsorption thermodynamics in the presence of some plant extracts, J. Mater. Eng. Perform., 18, 1264–1271.
  • Becke, A. D. J. (1992). Density-functional thermochemistry, I: The effect of the exchange-only gradient correction, Chem. Phys., 96, 2155–2160.
  • Becke, A. D. J. (1993). A new mixing of Hartree–Fock and local density-functional theories, Chem. Phys., 98, 1372–1377.
  • Benabdellah, M.; Aouniti, A.; Dafali, A.; Hammouti, B.; Benkaddour, M.; Yahyi, A.; and Ettouhami, A. (2006). Investigation of the inhibitive effect of triphenyltin 2-thiophene carboxylate on corrosion of steel in 2 M H3PO4 solutions, Appl. Surf. Sci., 252, 8341–8347.
  • Blajiev, O., and Hubin, A. (2004). Inhibition of copper corrosion in chloride solutions by amino-mercapto-thiadiazol and methyl-mercapto-thiadiazol: an impedance spectroscopy and a quantum-chemical investigation, Electrochim. Acta., 49, 2761–2770.
  • Cao, O. (1996). On electrochemical techniques for interface inhibitor, Corrosion Sci., 38, 2073–2082.
  • Chetouani, A., Medjahed, K., Benabadji, K. E., Hammouti, B., Kertit, S., and Mansri, A. (2003). Poly (4-vinypyridine isopentyl bromide) as inhibitor for corrosion of pure iron in molar sulphuric acid, Prog. Org. Coat., 46, 312–316.
  • Dahmani, M., Et-Touhami, A., Al-Deyab, S. S., Hammouti, B., and Bouyanzer, A. (2010). Corrosion inhibition of C38 steel in 1 M HCl: A comparative study of black pepper extract and its isolated piperine, Int. J. Electrochem. Sci., 5, 1060–1069.
  • Ebenso, E. E., Kabanda, M. M., Arslan, T., Saracoglu, M., Kandemirli, F., Murulana, L. C., Singh, A. K., Shukla, S. K., Hammouti, B., Khaled, K. F., Quraishi, M. A., Obot, I. B., and Eddy, N. O. (2012). Quantum chemical investigations on quinoline derivatives as effective corrosion inhibitors for mild steel in acidic medium, Int. J. Electrochem. Sci., 7, 5643–5676.
  • Elayyachy, M., El Idrissi, A., and Hammouti, B. (2006). New thio-compounds as corrosion inhibitor for steel in 1 M HCl, Corros. Sci., 48, 2470–2479.
  • Frisch, M. J., Trucks, G. W., Schlegel, H. B., Scuseria, G. E., Robb, M. A., Cheeseman, J. R., Scalmani, G., Barone, V., Mennucci, B., Petersson, G. A., Nakatsuji, H., Caricato, M., Hratchian, X., Li, H. P., Izmaylov, A. F., Bloino, J., Zheng, G., Sonnenberg, J. L., Hada, M., Ehara, M., Toyota, K., Fukuda, R., Hasegawa, J., Ishida, M., Nakajima, T., Honda, Y., Kitao, O., Nakai, H., Vreven, T., Montgomery, J. A., Peralta, Jr., J. E., Ogliaro, F., Bearpark, M., Heyd, J. J., Brothers, E., Kudin, K. N., Staroverov, V. N., Kobayashi, R., Normand, J., Raghavachari, K., Rendell, A., Burant, J. C., Iyengar, S. S., Tomasi, J., Cossi, M., Rega, N., Millam, J. M., Klene, M., Knox, J. E., Cross, J. B., Bakken, V., Adamo, C., Jaramillo, J., Gomperts, R., Stratmann, R. E., Yazyev, O., Austin, A. J., Cammi, R., Pomelli, C., Ochterski, J. W., Martin, R. L., Morokuma, K., Zakrzewski, V. G., Voth, G. A., Salvador, P., Dannenberg, J. J., Dapprich, S., Daniels, A. D., Farkas, Ö., Foresman, J. B., Ortiz, J. V., Cioslowski, J., and Fox, D. J. (2009). Gaussian 09, Revision D.01, Gaussian, Inc., http://www.gaussian.com/g_tech/g_ur/m_citation.htm (last accessed date: 18 March 2015).
  • Halambek, J., Berković, K., Vorkapić-Furač, J., and Laurus Nobilis, L. (2013). Oil as green corrosion inhibitor for aluminium and AA5754 aluminium alloy in 3% NaCl solution, Mater. Chem. Phys., 137, 788–795.
  • Hoptop, H., and Lineberger, W. C. (1985). Binding energies in atomic negative ions: II, J. Phys. Chem. Ref. Data., 14, 731–750.
  • Ji, G., Shukla, S. K., Ebenso, E. E., and Prakash, R. (2013a). Argemone mexicana leaf extract for inhibition of mild steel corrosion in sulfuric acid solutions, Int. J. Electrochem. Sci., 8, 10878–10889.
  • Ji, G., Dwivedi, P., Sundaram, S., and Prakash, R. (2013b). Inhibitive effect of chlorophytum borivilianum root extract on mild steel corrosion in HCl and H2SO4 solutions, Ind. Eng. Chem. Res., 52, 10673–10681.
  • Khadraoui, A., Khelifa, A., Hamitouche, H., Mehdaoui, R. (2014a). Inhibitive effect by extract of Mentha rotundifolia leaves on the corrosion of steel in 1 M HCl solution, Res. Chem. Intermed., 40, 961–972.
  • Khadraoui, A., Khelifa, A., Boutoumi, H., Hamitouche, H., Mehdaoui, R., Hammouti, B., and Al-Deyab, S. S. (2014b). Adsorption and inhibitive properties of Ruta chalepensis L. oil as a green inhibitor of steel in 1 M hydrochloric acid medium, Int. J. Electrochem. Sci., 9, 3334–3348.
  • Khadraoui, A., Khelifa, A., Boutoumi, H., and Hammouti, B. (2014c). Mentha pulegium extract as a natural product for the inhibition of corrosion. Part I: Electrochemical studies, Nat. prod. Res., 28, 1206–1209.
  • Khadraoui, A., Khelifa, A., Touafri, L., Hamitouche, H., and Mehdaoui, R. (2013a). Acid extract of Mentha pulegium as a potential inhibitor for corrosion of 2024 aluminum alloy in 1 M HCl solution, J. Mater. Environ. Sci., 4, 663–670.
  • Khadraoui, A., and Khelifa, A. (2013b). Ethanolic extract of Ruta chalepensis as an eco-friendly inhibitor of acid corrosion of steel, Res. Chem. Intermed., 39, 3937–3948.
  • Lee, C., Yang, W., and Parr, R. G. (1988). Development of the Colle–Salvetti correlation-energy formula into a functional of the electron density, Phys. Rev. B., 37, 785–789.
  • Obot, I. B., and Obi-Egbedi, N. O. (2009). Ginseng root: A new efficient and effective eco-friendly corrosion inhibitor for aluminium alloy of type AA 1060 in hydrochloric acid solution, Int. J. Electrochem. Sci., 4, 1277–1288.
  • Oguzie, E. E. (2006). Adsorption and corrosion inhibitive properties of Azadirachta indica in acid solutions, Pigments Resin Technol., 35, 334–340.
  • Popova, A. (2007). Temperature effect on mild steel corrosion in acid media in presence of azoles, Corrosion Sci., 49, 2144–2158.
  • Quraishi, M. A., and Jamal, D. (2002). Inhibition of mild steel corrosion in the presence of fatty acid triazoles, J. Appl. Electrochem., 32, 425–430.
  • Quraishi, M. A., and Sardar, R. (2003). Hector bases—A new class of heterocyclic corrosion inhibitors for mild steel in acid solutions, J. Appl. Electrochem., 33, 1163–1168.
  • Roberge, P. R. (1999). Handbook of Corrosion Engineering, McGraw-Hill, New York, NY.
  • Sajendran, S., Sumithra, P., Shyamaladevi, B., and Jeyasundari, J. (2009). Corrosion inhibition by spirulina, Zastita Materijala., 50, 223–226.
  • Umoren, S. A., Ogbobe, O., Ebenso, E. E., and Ekpe, U. J. (2006). Effect of halide ions on the corrosion inhibition of mild steel in acidic medium using polyvinyl alcohol, Pigment Resin Technol., 35, 284–292.
  • Yurt, A., Bereket, G., Rivrak, A., Balaban, A., and Erk, B. (2005). Effect of Schiff bases containing pyridyl group as corrosion inhibitors for low carbon steel in 0.1 M HCl, J. Appl. Electrochem, 35, 1025–1032.

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.