Surface Interaction and Corrosion Inhibition of Mild Steel in Hydrochloric Acid Using Pyoverdine, an Eco-Friendly Bio-molecule
Tóm tắt
Từ khóa
Tài liệu tham khảo
Niu L, Zhang H, Wei FH, Wu SX, Cao XL, Liu PP (2005) Corrosion inhibition of iron in acidic solutions by alkyl quaternary ammonium halides: correlation between inhibition efficiency and molecular structure. Appl Surf Sci 252:1634–1642
Zhao J, Chen G (2012) The synergistic inhibition effect of oleic-based imidazoline and sodium benzoate on mild steel corrosion in a CO2-saturated brine solution. Electrochim Acta 69:247–255
Umoren SA, Ogbobe O, Igwe IO, Ebenso EE (2008) Inhibition of mild steel corrosion in acidic medium using synthetic and naturally occurring polymers and synergistic halide additives. Corros Sci 50:1998–2006
Mohsenifar F, Jafari H, Sayin K (2016) Investigation of thermodynamic parameters for steel corrosion in acidic solution in the presence of N,N′-bis(phloroacetophenone)-1,2 propanediamine. J Bio Tribo Corros 2:1. doi: 10.1007/s40735-015-0031
Ma HY, Chen SH, Yin BS, Zhao SY, Liu XQ (2003) Impedance spectroscopic study of corrosion inhibition of copper by surfactants in the acidic solutions. Corros Sci 45:867–882
Anupama KK, Shainy KM, Joseph A (2016) Excellent anticorrosion behavior of ruta graveolens extract (RGE) for mild steel in hydrochloric acid: electro analytical studies on the effect of time temperature and inhibitor concentration. J Bio Tribo Corros. doi: 10.1007/s40735-016-0032-5
Stupnišek-Lisac E, Berković-Salajster K, Vorkapić-Furac J (1988) An investigation of the efficiency of several organic descaling inhibitors. Corros Sci 28:1189–1202
Radojčić I, Berković K, Kovač S, Vorkapić-Furac J (2008) Natural honey and black radish juice as tin corrosion inhibitors. Corros Sci 50:1498–1504
Meyer JM (2000) Pyoverdines: pigments, siderophores and potential taxonomic markers of fluorescent Pseudomonas species. Arch Microbiol 174:135–142
McWhirter MJ, Philip JB, Iain L Lamont, AJ McQuillan (2003) Siderophore-mediated covalent bonding to metal (oxide) surfaces during biofilm initiation by Pseudomona saeruginosa bacteria. Langmuir 19:3575–3537
El-Etre AY (1998) Natural honey as corrosion inhibitor for metals and alloys. I copper in neutral aqueous solution. Corros Sci 40:1845–1850
El-Etre AY, Abdallah M (2000) Natural honey as corrosion inhibitor for metals and alloys II C-steel in high saline water. Corros Sci 42:731–738
Yee YJ (2004) Green inhibitors for corrosion control: a study on the inhibitive effects of extracts of honey and Rosmarinus officinalis L. (Rosemary) Thesis University of Manchester Institute of Science and Technology
Radojčić I, Berković K, Kovač S, Vorkapić-Furac J (2008) Natural honey and black radish juice as tin corrosion inhibitors. Corros Sci 50:1498–1504
Upritchard HG, Yang J, Bremer PJ, Lamont IL, McQuillan AJ (2007) Adsorption to metal oxides of the Pseudomonas aeruginosa siderophore pyoverdine and implications for bacterial biofilm formation on metals. Langmuir 23:7189–7195
Lopper JE, Buyer JS (1991) siderophores in microbial interactions on plant surfaces. Mol Plant Microbe Interact 4:5–13
Prive F, Combes S, Caquil L, Farizon Y, Enjalbert F, Troegeler-Meynadier A (2010) Temperature and duration of sunflower oil affect ruminal biohydrogenation of linolic acid in vitro. J Diary Sci 93:711–722
Unni KN, Priji P, Geoffroy VA, Doble M, Benjamin S (2014) Pseudomonas aeruginosa BUP2—a novel strain isolated from Malabari Goat Produces Type 2 Pyoverdine. Adv Biosci Biotechnol 5:874–885
Lamont IL, Beare PA, Ochsner U, Vasil AI, Vasil ML (2002) Siderophore-mediated signalling regulates virulence factor production in pseudomonas aeruginosa. Proc Natl Acad Sci USA 99:7072–7077
Wendenbaum S, Demange P, Dell A, Meyer JM, Abdullah MA (1983) The structure of pyoverdine Pa the siderophore of Pseudomonas aeruginosa. Tetrahedron Lett 44:4877–4880
Jiang W, Saxena A, Song B, Ward BB, Beveridge TJ, Myneni SCB (2004) Elucidation of functional groups on gram-positive and gram-negative bacterial surfaces using infrared spectroscopy. Langmuir 20:11433–11442
Lopez DA, Simison SN, de Sanchez SR (2003) The influence of steel microstructure on CO2corrosion EIS studies on the inhibition efficiency of benzimidazole. Electrochim Acta 48:845–854
Laibinis PE, White sides GM (1992) Self-assembled monolayers of n-alkanethiolates on copper are barrier films that protect the metal against oxidation by air. J Am Chem Soc 114:9022–9027
Quan Z, Chen W, Zhao S, Ma H (2001) Self-assembled monolayers of Schiff bases on copper surfaces. Corros Sci 57:195–201
Zhao J, Chen G (2012) The synergistic inhibition effect of oleic-based imidazoline and sodium benzoate on mild steel corrosion in a CO2-saturated brine solution. Electrochim Acta 69:247–255
Ozcan M, Dehri I (2004) Electrochemical and quantum chemical studies of some sulphur-containing organic compounds as inhibitors for the acid corrosion of mild steel. Prog Org Coat 51:181–187
Doner A, Kardas G (2011) N-Aminorhodamine as an effective corrosion inhibitor for mild steel in 0.5 M H2SO4. Corros Sci 53:4223–4232
MoradM S (2007) Effect of Sulfur-containing amino acids on the corrosion of mild steel in Sufide- polluted sulfuric acid solutions. J Appl Electrochem 37:1191–1200
Li W, He Q, Zhang S, Pei C, Hou B (2008) Some new Triazole derivatives as inhibitors for mild steel corrosion in acidic medium. J Appl Electrochem 38:289–295
Pavithra MK, Venkatesha TV, Punith Kumar MK, Tondan HC (2012) Inhibition of mild steel corrosion by Rabeprazole sulfide. Corros Sci 60:104–111
Che W, Luo HQ, Li NB (2011) Inhibition effects of 2,5-dimercapto-1,3,4-thiadiazole on the corrosion of mild steel in sulphuric acid solution. Corros Sci 53:3356–3365
Benedetti AV, Sumodjo PTA, Nobe K, Cabot PL, Proud WG (1995) Electrochemical studies of copper, copper-aluminium and copper-aluminium-silver alloys: impedance results in 0.5 M NaCl. Electrochim Acta 40:2657–2668
Oguzie EE, Okolue BN, Ebenso EE, Onuoha GN, Onuchukwu AI (2004) Evaluation of the inhibitory effect of methylene blue dye on the corrosion of aluminium in hydrochloric acid. Mater Chem Phys 87:394–401
Ikeda O, Goto F, Tamura H (1981) Adsorption behaviour of N-containing heterocycles at a mercury/water interface. Bull Chem Soc Jpn 54:3146–3151
El Nemr A, Moneer AA, Khaled A, El Sikaily A, El-Sai GF (2014) Modeling of synergistic halide additives’ effect on the corrosion of aluminum in basic solution containing dye. Mater Chem Phys 144:139–154
Dhar HP, Conway BE, Joshi KM (1973) on the form of adsorption isotherms for substitutional adsorption of molecules of different sizes. Electrochim Acta 18:789–798
El-Sayed M Sherif (2006) Effects of 2-amino-5-(ethylthio)-1,3,4-thiadiazole on copper corrosion as a corrosion inhibitor in 3% NaCl solutions. Appl Surf Sci 252:8615–8619
Bastidas JM, Pinilla P, Cano E, Polo JL, Mignel S (2003) Copper corrosion inhibitor by triphenylmethane derivatives in Sulphuric acid media. Corros Sci 45:427–449
Mistry BM, Patel NS, Sahoo SK, Jauhari S (2012) Experimental and quantum chemical studies on corrosion inhibition performance of quinoline derivatives for MS in 1 M HCl. Bull Mater Sci 35:459–469
Mistry BM, Jauhari S (2015) Studies on the inhibitive effect of (Z)-4-chloro-N-((2-chloroquinolin-3-yl)methylene)aniline Schiff baseon the corrosion of mild steel in 1 N HCl solution. Res Chem Intermed 41:6289–6307