[1] D. Daoud, T. Douadi, S. Issaadi, S. Chafaa, Adsorption and corrosion inhibition of new synthesized thiophene Schiff base on mild steel X52 in HCl and H2SO4 solutions, Corros. Sci. 79(2014) 50. [2] M. Deyab, Effect of cationic surfactant and inorganic anions on the electrochemical behavior of carbon steel in formation water, Corros. Sci. 49(2007) 2315. [3] M. Deyab, S. Keera, Cyclic voltammetric studies of carbon steel corrosion in chlorideformation water solution and effect of some inorganic salts, Egypt. J. Pet. 21(2012) 31. [4] C.P. Kumar, K. Mohana, Corrosion inhibition efficiency and adsorption characteristics of some Schiff bases at mild steel/hydrochloric acid interface, J. Taiwan Inst. Chem. Eng. 45(2014) 1031. [5] A.Manivel, S. Ramkumar, J.J.Wu, A.M. Asiri, S. Anandan, Exploration of (S)-4, 5, 6, 7-tetrahydrobenzo[d] thiazole-2, 6-diamine as feasible corrosion inhibitor for mild steel in acidic media, J. Environ. Chem. Eng. 2(2014) 463. [6] B. Xu, W. Yang, Y. Liu, X. Yin, W. Gong, Y. Chen, Experimental and theoretical evaluation of two pyridinecarboxaldehyde thiosemicarbazone compounds as corrosion inhibitors for mild steel in hydrochloric acid solution, Corros. Sci. 78(2014) 260. [7] M. Hegazya, A. El-Etre, K. Berry, Novel inhibitors for carbon steel pipelines corrosion during acidizing of oil and gas wells, J. Bas. Environ. Sci. 2(2015) 36. [8] L. Bammou, M. Belkhaouda, R. Salghi, O. Benali, A. Zarrouk, H. Zarrok, B. Hammouti, Corrosion inhibition of steel in sulfuric acidic solution by the Chenopodium Ambrosioides Extracts, J. Assoc. Arab Univ. Bas. Appl. Sci. 16(2014) 83. [9] N. El Hamdani, R. Fdil, M. Tourabi, C. Jama, F. Bentiss, Alkaloids extract of Retama monosperma (L.) Boiss. seeds used as novel eco-friendly inhibitor for carbon steel corrosion in 1 M HCl solution:Electrochemical and surface studies, Appl. Surf. Sci. 357(Part A) (2015) 1294. [10] A.Y. El-Etre, Khillah extract as inhibitor for acid corrosion of SX 316 steel, Appl. Surf. Sci. 252(2006) 8521. [11] A.Y. El-Etre, Inhibition of acid corrosion of carbon steel using aqueous extract of olive leaves, J. Colloid Interface Sci. 314(2007) 578. [12] A.Y. El-Etre, Inhibition of C-steel corrosion in acidic solution using the aqueous extract of zallouh root, Mater. Chem. Phys. 108(2008) 278. [13] M. Sobhi, H. El-Noamany, A. El-Etre, Inhibition of Carbon Steel corrosion in Acid mediumin by Eruca sativa Extract, J. Bas. Environ. Sci. 2(2015) 9. [14] A. El-Etre, H. Megahed, S. Refaat, Carbon steel corrosion in HCl in the presence of aqueous extract of Melissa Officinalis, J. Bas. Environ. Sci. 2(2015) 52. [15] M.C. Carpinella, C.G. Ferrayoli, S.M. Palacios, Antifungal synergistic effect of scopoletin, a hydroxycoumarin isolated fromMelia azedarach L. fruits, Journal of agricultural and food chemistry. 53(2005) 2922. [16] A.V. Khan, Q.U. Ahmed, M.R. Mir, I. Shukla, A.A. Khan, Antibacterial efficacy of the seed extracts of Melia azedarach against some hospital isolated human pathogenic bacterial strains, Asian Pac. J. Trop. Biomed. 1(2011) 452. [17] C. XiaoTao, T. GuiZhen, C. ZhanLi, Y. QingQiang, Study on chemical constituents of the seed of Melia azedarach L. Food Drug 11(2009) 30. [18] R.M. Cornell, U. Schwertmann, The iron oxides:structure, properties, reactions, occurrences and uses, John Wiley & Sons, 2006. [19] E.A. Flores, O. Olivares, N.V. Likhanova, M.A. Domيnguez-Aguilar, N. Nava, D. Guzman-Lucero, M. Corrales, Sodium phthalamates as corrosion inhibitors for carbon steel in aqueous hydrochloric acid solution, Corros. Sci. 53(2011) 3899. [20] A. Khamis, M. Saleh, M. Awad, Synergistic inhibitor effect of cetylpyridinium chloride and other halides on the corrosion of mild steel in 0.5 M H2SO4, Corros. Sci. 66(2013) 343. [21] R. Fuchs-Godec, V. Doleček, A effect of sodium dodecylsulfate on the corrosion of copper in sulphuric acid media, Colloids Surf. A Physicochem. Eng. Asp. 244(2004) 73. [22] X. Li, S. Deng, H. Fu, G.Mu, Inhibition effect of 6-benzylaminopurine on the corrosion of cold rolled steel in H2SO4 solution, Corros. Sci. 51(2009) 620. [23] P.B. Raja, A.K. Qureshi, A.A. Rahim, H. Osman, K. Awang, Neolamarckia cadamba alkaloids as eco-friendly corrosion inhibitors for mild steel in 1M HCl media, Corros. Sci. 69(2013) 292. [24] H.-R. Yu, S. Cho, M.-J. Jung, Y.-S. Lee, Electrochemical and structural characteristics of activated carbon-based electrodes modified via phosphoric acid, Microporous Mesoporous Mater. 172(2013) 131. [25] M. Behpour, S. Ghoreishi, N. Mohammadi, N. Soltani, M. Salavati-Niasari, Investigation of some Schiff base compounds containing disulfide bond as HCl corrosion inhibitors for mild steel, Corros. Sci. 52(2010) 4046. [26] N.A. Negm, N.G. Kandile, E.A. Badr, M.A. Mohammed, Gravimetric and electrochemical evaluation of environmentally friendly nonionic corrosion inhibitors for carbon steel in 1M HCl, Corros. Sci. 65(2012) 94. [27] F. Zhang, Y. Tang, Z. Cao, W. Jing, Z. Wu, Y. Chen, Performance and theoretical study on corrosion inhibition of 2-(4-pyridyl)-benzimidazole for mild steel in hydrochloric acid, Corros. Sci. 61(2012) 1. [28] F. Bentiss, M. Lagrenee, M. Traisnel, J. Hornez, The corrosion inhibition of mild steel in acidic media by a new triazole derivative, Corros. Sci. 41(1999) 789. [29] D. Schweinsberg, V. Ashworth, The inhibition of the corrosion of pure iron in 0.5 M sulphuric acid by n-alkyl quaternary ammonium iodides, Corros. Sci. 28(1988) 539. [30] G. Banerjee, S. Malhotra, Contribution to adsorption of aromatic amines on mild steel surface from HCl solutions by impedance, UV, and Raman spectroscopy, Corrosion 48(1992) 10. [31] F. Bentiss, M. Traisnel, M. Lagrenee, The substituted 1, 3, 4-oxadiazoles:a new class of corrosion inhibitors of mild steel in acidic media, Corros. Sci. 42(2000) 127. [32] M. Lebrini, M. Lagrenée, M. Traisnel, L. Gengembre, H. Vezin, F. Bentiss, Enhanced corrosion resistance of mild steel in normal sulfuric acid medium by 2,5-bis(nthienyl)-1,3,4-thiadiazoles:Electrochemical, X-ray photoelectron spectroscopy and theoretical studies, Appl. Surf. Sci. 253(2007) 9267. [33] J.M. Bockris, B. Yang, The mechanism of corrosion inhibition of iron in acid solution by acetylenic alcohols, J. Electrochem. Soc. 138(1991) 2237. |