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Original Articles

Influence of the maturity of Musa paradisica peels on mild steel corrosion in sulfuric acid

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Pages 1418-1438 | Received 21 Mar 2021, Accepted 16 Aug 2021, Published online: 30 Aug 2021

References

  • Fontana MG. Corrosion engineering, Second Edition1968.
  • Fawcett WR, Kovacova Z, Motheo AJ, et al. Application of the AC admittance technique to double layer studies on polycrystalline gold electrodes. J Electroanal Chem. 1992;326(1–2):91–103.
  • Bentiss F, Lebrini M, Lagrenee M. Thermodynamic characterization of metal dissolution and inhibitor adsorption processes in mild steel/2,5-bis(n-thienyl)-1,3,4-thiadiazoles/hydrochloric acid system. Corros Sci. 2005;47(12):2915–2931.
  • Srivastava M, Tiwari P, Srivastava SK, et al. Electrochemical investigation of irbesartan drug molecules as an inhibitor of mild steel corrosion in 1 M HCl and 0.5 M H2SO4 solutions. J Moleq Liq. 2017;236:184–197.
  • Singh AK, Ji G, Prakash R, et al. Cephamycin; a novel corrosion inhibitor for mild steel corrosion in HCl acid solution. Int J Electrochem Sci. 2013;8:9442–9448.
  • Elayyachy M, El Idrissi A, Hammouti B. New thio compounds as corrosion inhibitors for steel in 1 M HCl. Corros Sci. 2006;48(9):2470–2479.
  • Singh P, Ansari KR, Quireshi MA. Corrosion inhibition of mild steel using novel bis Schiff’s bases as corrosion inhibitors: electrochemical and surface measurement. Measurement. 2016;86:114–124.
  • Ouchrif A, Zegmout M, Hammouti B, et al. New synthesized diamine derivatives as corrosion inhibitors of steel in 0.5 M H2SO4. Prog. Org. Coat. 2005;53(4):292–296.
  • Sin HLY, Rahim AA, Gan CY, et al. Aquilaria Sub-intergra leaves extracts as ssustainable mild steel corrosion inhibitors in HCl. Measurement. 2017;109:334–345.
  • Ji G, Dwivedi P, Sundaram S, et al. Inhibitive effect of chlorophytum borivilianum root extract on mild steel corrosion in HCl and H2SO4 solutions. Ind Eng Chem Res. 2013;52(31):10673–10681.
  • Ji G, Dwivedi P, Sundaram S, et al. Aqueous extract of argemone mexicana roots for effective protection of mild steel in an HCl environment. Res Chem Intermed. 2016;42(2):439–459.
  • Dehghani A, Bahlakeh G, Ramezanzadeh B, et al. Aloysia citrodora leaves extract corrosion retardation effect on mild-steel in acidic solution: molecular/atomic scales and electrochemical explorations. J Mol Liq. 2020;310:113221.
  • Dehghani A, Bahlakeh G, Ramezanzadeh B, et al. Potential role of a novel green eco-friendly inhibitior in corrosion inhibition of mild steel in HCL solution: detailed macro/micro-scale experimental and computational explorations. Cons Build Mat. 2020;245:118464.
  • Shahini MH, Ramezanzadeh M, Bahlakeh G, et al. Superior inhibition action of the mish gush (MG) leaves extract toward mild steel corrosion in HCl solution: theoretical and electrochemical studies. J Mol Liq. 2021;332:115876.
  • Umoren SA, Gasem ZM, Obot IB. Natural products for material protection: Inhibition of mild steel corrosion by date palm seed extracts in acidic media. Ind Eng Chem Res. 2013;52(42):14855–14865.
  • El-Etre AY. Natural honey as corrosion inhibitor for metals and alloys. Copper in neutral aqueous solution. Corros Sci. 1998;40(11):1845–1850.
  • Ashokkumar K, Elayabalan S, Shobana VG, et al. M. pandiyan, nutritional value of cultivars of banana (Musa spp.) and its future prospects. J Pharma Phytochem. 2018;7:2972–2977.
  • Sundaram S, Anjum S, Dwivedi P, et al. Antioxidant activity and protective effect of banana peel against oxidative hemolysis of human erythrocyte at different stages of ripening. Appl Biochem Biotechnol. 2011;164(7):1192–1206.
  • Kanazawa K, Sakakibara H. High content of dopamine, a strong antioxidant, in Cavendish banana. J Agric Food Chem. 2000;48(3):844–848.
  • Ji G, Anjum S, Sundaram S, et al. Musa paradisica peel extract as green corrosion inhibitor for mild steel in HCl solution. Corros Sci. 2015;90:107–117.
  • Tambun R, Christamore E, Pakpahan YF, et al. Banana peel utilization as the green corrosion inhibitor of iron in NaCl medium. IOP Conf Ser Mater Sci Eng. 2018;420:012059.
  • Erwansyah E, Mudjari S, Indriani L, et al. The effect of banana peel extract (Musa paradisiaca) in inhibiting the corrosion rate of orthodontic wire and stainless steel bracket. Int J Adv Sci Tech. 2020;29:7355–7361.
  • El-Etre AY. Inhibition of aluminum corrosion using opuntia extract. Corros Sci. 2003;45(11):2485–2495.
  • Velázquez-González MA, Rodriguez JGG, Cisneros MGV, et al. Use of Rosmarinus officinalis as green corrosion inhibitor for carbon steel in acid medium. AJAC. 2014;05(02):55–64.
  • Tiwari P, Srivastava M, Mishra R, et al. Economic use of waste musa paradisica peels for effective control of mild steel loss in aggressive acid solutions. J Environ Chem Eng. 2018;6(4):4773–4783.
  • Miketova P, Schram K, Whitney J, et al. Tandem mass spectrometry studies of green tea catechins. Identification of three minor components in the polyphenolic extract of green tea. J Mass Spectrom. 2000;35(7):860–869.
  • Nguyen TBT, Ketsa S, Van Doorn WG. Relationship between browning and antioxidant activity of polyphenol oxidase and phenylalanine ammonia lyase in banana peel during low temperature storage. Postharv Bio Tech. 2003;30(2):187–193.
  • Wang SY, Jiao HJ. Changes in oxygen-scavenging systems and membrane lipid peroxidation during maturation and ripening in blackberry. J Agric Food Chem. 2001;49(3):1612–1619.
  • Pal S, Lgaz H, Tiwari P, et al. Experimental and theoretical investigation of aqueous and methanolic extracts of prunus dulcis peels as green corrosion inhibitors of mild steel in aggressive chloride media. J Mol Liq. 2019;276:347–361.
  • Martinez S, Stern I. Thermodynamic characterization of metal dissolution and inhibitor adsorption processes in the low carbon steel/mimosa tannin/sulfuric acid system. Appl Surf Sci. 2002;199(1–4):83–89.
  • Mu GN, Li X, Li F. Synergistic inhibition between ophenanthroline and chloride ion on cold rolled steel corrosion in phosphoric acid. Mater Chem Phys. 2004;86(1):59–68.
  • Li X, Deng S, Fu H. Inhibition of the corrosion of steel in HCl, H2SO4 solutions by bamboo leaf extract. Corros Sci. 2012;62:163–175.
  • Ashassi-Sorkhabi H, Shaabani B, Seifzadeh D. Corrosion inhibition of mild steel by some Schiff base compounds in hydrochloric acid. Appl Surf Sci. 2005;239(2):154–164.
  • Lashgari M, Malek AM. Fundamental studies of aluminium corrosion in acidic and basic environments: theoretical predictions and experimental observations. Electrochem Acta. 2010;55(18):5253–5257.
  • Sahin M, Bilgic S, Yilmaz H. The inhibition effects of some cyclic nitrogen compounds on the corrosion of the steel in NaCl mediums. Appl Surf Sci. 2002;195:1–4.
  • Ateya B, El-Anadouli BE, El-Nizamy FM. The adsorption of thiourea on mild steel. Corros Sci. 1984;24(6):509–515.
  • Ji G, Macıa L, Allaert FB, et al. Odd random phase electrochemical impedance spectroscopy to study the corrosion behavior of hot dip Zn and Zn-alloy coated steel wires in sodium chloride solution. J Electrochem Soc. 2018;165(5):C246–C257.
  • Solomon MM, Umoren SA, Udosoro II, et al. Inhibitive and adsorption behavior of carboxymethyl cellulose on mild steel corrosion in sulphuric acid solution. Corros Sci. 2010;52(4):1317–1325.
  • Umoren SA, Li Y, Wang FH. Influence of iron microstructure on the performance of polyacrylic acid as corrosion inhibitor in sulphuric acid solution. Corros Sci. 2011;53(5):1778–1785.
  • Bentiss F, Traisnel V, Lagrenee M. The substituted 1, 3 4-Oxadiazoles: a new class of corrosion inhibitors of mild steel in acidic media. Corros Sci. 2000;42(1):127–146.
  • Raja PB, Qureshi AK, Rahim AA, et al. Neolamarckia cadamba alkaloids as eco-friendly corrosion inhibitors for mild steel in 1 M HCl media. Corros Sci. 2013;69:292–301.
  • Hassan HH. Perchlorate and oxygen reduction during Zn corrosion in neutral medium. Electrochim Acta. 2006;51(26):5966–5972.
  • Rammelt U, Reinhard G. The influence of surface roughness on the impedance data for iron electrodes in acid solutions. Corros Sci. 1987;27(4):373–382.
  • Pang J, Briceno A, Chander S. A study of pyrite/solution interface by impedance spectroscopy. J Electrochem Soc. 1990;137(11):3447–3455.
  • Srivastava M, Tiwari P, Srivastava SK, et al. Low cost aqueous extract of Pisum sativum peels for inhibition of mild steel corrosion. J Mol Liq. 2018;254:357–368.
  • Ferreira ES, Giacomelli C, Giacomelli FC, et al. Evaluation of inhibitor effect of L-ascorbic acid on the corrosion of mild steel. Mater Chem Phys. 2004;83(1):129–134.
  • Li W, He Q, Zhang S, et al. Some new triazole derivatives as inhibitors for mild steel corrosion in acidic medium. J Appl Electrochem. 2008;38(3):289–295.
  • Tiwari M, Gupta VK, Singh RA, et al. Donor-π-acceptor-type configured, dimethylamino-based organic push-pull chromophores for effective reduction of mild steel corrosion loss in 1 M HCl. ACS Omega. 2018;3(4):4081–4093.
  • Lagrenee M, Mernari B, Chaibi N, et al. Investigation of the inhibitive effect of substituted oxadiazoles on the corrosion of mild steel in HCl medium. Corros Sci. 2001;43(5):951–962.
  • Hossain N, Asaduzzaman Chowdhury M, Kchaou M. An overview of green corrosion inhibitors for sustainable and environment friendly industrial development. J Adhe Sci Tech. 2021;35(7):673–690.
  • Zhang X, Jiang WF, Wang HL, et al. Adsorption and inhibitive properties of apigenin derivatives as eco-friendly corrosion inhibitors for brass in nitric acid solution. J Adhe Sci Tech. 2019;33(7):736–760.
  • Lahbib H, Ben Hassen S, Gerengi H, et al. Corrosion inhibition performance of dwarf palm and cynara cardunculus leaves extract for St37 steel in 15% H2SO4: a comparative study. J Adhe Sci Tech. 2021;35(7):691–722.
  • Lebrini M, Lagrenee M, Vezin H, et al. Electrochemical and quantum chemical studies of new thiadiazole derivatives adsorption on mild steel in normal hydrochloric acid medium. Corros Sci. 2005;47(2):485–505.
  • Pal S, Ji G, Lgaz H, et al. Lemon seeds as green coating material for mitigation of mild steel corrosion in acid media: molecular dynamics simulations, quantum chemical calculations and electrochemical studies. J Moleq Liq. 2020;316:113797.
  • Dewar MJ, Thiel W. Ground states of molecules. 38. The MNDO method. Approximations and parameters. J Am Chem Soc. 1977;99(15):4899–4907.
  • Chidiebere MA, Ogukwe CE, Oguzie KL, et al. Corrosion inhibition and adsorption behavior of punica granatum on mild steel in acidic environments: experimental and theoretical studies. Ind Eng Chem Res. 2012;51(2):668–677.
  • Belghiti ME, Echihi S, Mahsoune A, et al. Piperine derivatives as green corrosion inhibitors on iron surface; DFT, Monte Carlo dynamics study and complexation modes. J. Moleq. Liq. 2018;261:62–75.
  • Sanaei Z, Ramezanzadeh M, Bahlakeh G, et al. Use of rosa canina fruit extract as a green corrosion inhibitor for mild steel in 1 M HCl solution: a complementary experimental, molecular dynamics and quantum mechanics investigation. J Ind Eng Chem. 2019;69:18–31.
  • Abiola OK, James AO. The effect of aloe vera extract on corrosion and kinetics of corrosion process of zinc in HCl solution. Corros Sci. 2010;52(2):661–664.
  • Kamal C, Sethuraman MG. Caulerpin-A bis-andole alkaloid as a green inhibitor for the corrosion of mild steel in 1 M HCl solution from the marine alga Caulerpa racemosa. Ind Eng Chem Res. 2012;51(31):10399–10407.
  • Ji G, Shukla SK, Dwivedi P, et al. Green capsicum annuum fruit extract for inhibition of mild steel corrosion in hydrochloric acid solution. Int J Electrochem Sci. 2012;7:12146–12158.
  • Krishnegowda PM, Venkatesha VT, Krishnegowda PKM, et al. Acalypha torta leaf extract as green corrosion inhibitor for mild steel in hydrochloric acid solution. Ind Eng Chem Res. 2013;52(2):722–728.
  • Gunasekaran G, Chauhan LR. Eco frindly inhibitor for corrosion inhibition of mild steel in phosphoric acid medium. Electrochim. Acta. 2004;49(25):4387–4395.
  • Bozorg M, Farahani TS, Ziarani GM, et al. Myrtus communis as green inhibitor of copper corrosion in sulfuric acid. Ind Eng Chem Res. 2014;53(11):4295–4303.
  • Alibakhshi E, Ramezanzadeh M, Bahlakeh G, et al. Glycyrrhiza glabra leaves extract as a green corrosion inhibitor for mild steel in 1 M hydrochloric acid solution, experimental molecular dynamics, Monte Carlo and quantum mechanics study. J Moleq Liq. 2018;255:185–198.
  • Asfia MP, Rezaei M, Bahlakeh G. Corrosion prevention of AISI 304 stainless steel in hydrochloric acid medium using garlic extract as a green corrosion inhibitor: electrochemical and theoretical studies. J Moleq Liq. 2020;315:113679.

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