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Original Articles

Anticorrosive potential of essential oil extracted from the leaves of Calamintha plant for mild steel in 1 M HCl medium

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Pages 1191-1214 | Received 22 Jan 2022, Accepted 01 Apr 2022, Published online: 15 Apr 2022

References

  • Benzai A, Derridj F, Mouadili O, et al. Anti-corrosive properties and quantum chemical studies of (benzoxazol) derivatives on mild steel in HCl (1 M). Portugaliae Electrochimica Acta. 2021;39:135–135.
  • Zuo X, Li W, Luo W, et al. Research of lilium brownii leaves extract as a commendable and green inhibitor for X70 steel corrosion in hydrochloric acid. J Mol Liq. 2021;321:114914.
  • Dehghani A, Bahlakeh G, Ramezanzadeh B, et al. Integrated modeling and electrochemical study of myrobalan extract for mild steel corrosion retardation in acidizing media. J Mol Liq. 2020;298:112046.
  • Prabakaran M, Kim S-H, Kalaiselvi K, et al. Highly efficient Ligularia fischeri green extract for the protection against corrosion of mild steel in acidic medium: electrochemical and spectroscopic investigations. J Taiwan Inst Chem Eng. 2016;59:553–562.
  • Mechbal N, Belghiti ME, Benzbiria N, et al. Correlation between corrosion inhibition efficiency in sulfuric acid medium and the molecular structures of two newly eco-friendly pyrazole derivatives on iron oxide surface. J Mol Liq. 2021;331:115656.
  • Arrousse N, Salim R, Kaddouri Y, et al. The inhibition behavior of two pyrimidine-pyrazole derivatives against corrosion in hydrochloric solution: experimental, surface analysis and in silico approach studies. Arabian J Chem. 2020;13(7):5949–5965.
  • Hattak AE, Izzaouihda S, Rouifi Z, et al. Anti-corrosion performance of pyran-2-one derivatives for mild steel in acidic medium: electrochemical and theoretical study. Chem Data Collect. 2021;32:100655.
  • Raja PB, Sethuraman MG. Natural products as corrosion inhibitor for metals in corrosive media — a review. Mater Lett. 2008;62(1):113–116.
  • Bouklah M, Hammouti B. Thermodynamic characterisation of steel corrosion for the corrosion inhibition of steel in sulphuric acid solutions by artemisia. Portugaliae Electrochimica Acta. 2006;24:457–468.
  • Hussin MH, Kassim MJ. The corrosion inhibition and adsorption behavior of Uncaria gambir extract on mild steel in 1M HCl. Mater Chem Phys. 2011;125(3):461–468.
  • Ahmed RK. Alchemilla vulgaris extract as green inhibitor of copper corrosion in hydrochloric acid. Int J Electrochem Sci. 2019;14:10657–10669.
  • Abiola OK, Tobun Y. Cocos nucifera L. water as green corrosion inhibitor for acid corrosion of aluminium in HCl solution. Chin Chem Lett. 2010;21(12):1449–1452.
  • Deng S, Li X. Inhibition by Jasminum Nudiflorum Lindl. leaves extract of the corrosion of aluminium in HCl solution. Corros Sci. 2012;64:253–262.
  • Garai S, Garai S, Jaisankar P, et al. A comprehensive study on crude methanolic extract of Artemisia pallens (Asteraceae) and its active component as effective corrosion inhibitors of mild steel in acid solution. Corros Sci. 2012;60:193–204.
  • El-miziani I, Sara H, Essahli M, et al. Inhibition of lead corrosion in 0.1 M Na2CO3 by artemisia oil. Portugaliae Electrochimica Acta. 2016;33:305–316.
  • Mobin M, Basik M, Aslam J. Pineapple stem extract (bromelain) as an environmental friendly novel corrosion inhibitor for low carbon steel in 1 M HCl. Measurement. 2019;134:595–605.
  • Bensouda Z, Driouch M, Belakhmima RA, et al. Thymus Sahraouian essential oil as corrosion eco-friendly inhibitor for mild steel in a molar hydrochloric acid solution. Portugaliae Electrochimica Acta. 2018;36:339–364.
  • Bhardwaj N, Sharma P, Guo L, et al. Molecular dynamic simulation and quantum chemical calculation of phytochemicals present in beta vulgaris and electrochemical behaviour of beta vulgaris peel extract as green corrosion inhibitor for stainless steel (SS-410) in acidic medium. Colloids Surf A. 2022;632:127707.
  • Moradi A, Ranjbar Z, Guo L, et al. DFT calculations, molecular simulations, and electrochemical investigations of nature-inspired phytochemical attributes of achillea millefolium plants for the construction of effective zinc-based organic anti-corrosion layer on carbon steel. J Taiwan Inst Chem Eng. 2021;129:273–288.
  • Granella SJ, Bechlin TR, Christ D, et al. An approach to recent applications of Moringa oleifera in the agricultural and biofuel industries. S Afr J Bot. 2021;137:110–116.
  • Abbasi AM, Khan MA, Ahmad M, et al. Ethnopharmacological application of medicinal plants to cure skin diseases and in folk cosmetics among the tribal communities of North-West frontier province, Pakistan. J Ethnopharmacol. 2010;128(2):322–335.
  • Oguzie EE, Onuchukwu AI, Okafor PC, et al. Corrosion inhibition and adsorption behaviour of Ocimum basilicum extract on aluminium | emerald insight. Pigment Resin Technol. 2006;35(2):63–70.
  • Li L, Zhang X, Lei J, et al. Adsorption and corrosion inhibition of Osmanthus fragran leaves extract on carbon steel. Corros Sci. 2012;63:82–90.
  • Manssouri M, Laghchimi A, Ansari A, et al. Effect of Santolina pectinata (Lag.) essential oil to protect against the corrosion of mild steel in 1.0 M HCl: experimental and quantum chemical studies. Mediterr J Chem. 2020;10(3):253–268.
  • Tan B, Zhang S, Qiang Y, et al. A combined experimental and theoretical study of the inhibition effect of three disulfide-based flavouring agents for copper corrosion in 0.5 M sulfuric acid. J Colloid Interface Sci. 2018;526:268–280.
  • Hattabi LE, Guenbour AA, Ballaouchou A, et al. Electrochemical studies of Carum carvi plant as corrosion inhibitor for mild steel in 1M HCl solution. Moroccan J Chem. 2016;4:4–875.
  • Boumhara K, Tabyaoui M, Jama C, et al. Artemisia mesatlantica essential oil as green inhibitor for carbon steel corrosion in 1M HCl solution: electrochemical and XPS investigations. J Ind Eng Chem. 2015;29:146–155.
  • Idouhli R, Koumya Y, Khadiri M, et al. Inhibitory effect of Senecio anteuphorbium as green corrosion inhibitor for S300 steel. Int J Ind Chem. 2019;10(2):133–143.
  • Manssouri M, Znini M, Lakbaibi Z, et al. Experimental and computational studies of perillaldehyde isolated from Ammodaucus leucotrichus essential oil as a green corrosion inhibitor for mild steel in 1.0 M HCl. Chem. Pap. 2021;75(3):1103–1114.
  • Derfouf H, Harek Y, Larabi L, et al. Corrosion inhibition activity of carbon steel in 1.0 M hydrochloric acid medium using Hammada scoparia extract: gravimetric and electrochemical study. J Adhes Sci Technol. 2019;33(8):808–833.
  • Haldhar R, Prasad D. Corrosion resistance and surface protective performance of waste material of eucalyptus globulus for low carbon steel. J Bio Tribo Corros. 2020;6(2):48.
  • Jayakumar S, Nandakumar T, Vadivel M, et al. Corrosion inhibition of mild steel in 1 M HCl using Tamarindus indica extract: electrochemical, surface and spectroscopic studies. J Adhes Sci Technol. 2020;34(7):713–743.
  •   BTK,  JC,  AP. Corrosion inhibition of mild steel in hydrochloric acid by leaves extract of Tephrosia purpurea. J Adhes Sci Technol. 2020;34:2424–2447.
  • Chung I-M, Malathy R, Kim S-H, et al. Ecofriendly green inhibitor from Hemerocallis fulva against aluminum corrosion in sulphuric acid medium. J Adhes Sci Technol. 2020;34(14):1483–1506.
  • Loto RT, Mbah EH, Ugada JI. Corrosion inhibition effect of citrus sinensis essential oil extract on plain carbon steel in dilute acid media. S Afr J Chem Eng. 2021;35:159–164.
  • Chraka A, Raissouni I, Ben Seddik N, et al. Croweacin and Ammi visnaga (L.) lam essential oil derivatives as green corrosion inhibitors for brass in 3% NaCl medium: quantum mechanics investigation and molecular dynamics simulation approaches. Mediterr J Chem. 2020;10(4):378.
  • Tezcan F, Yerlikaya G, Mahmood A, et al. A novel thiophene schiff base as an efficient corrosion inhibitor for mild steel in 1.0 M HCl: electrochemical and quantum chemical studies. J Mol Liq. 2018;269:398–406.
  • Frisch M, Trucks GW, Schlegel HB, et al. Ga. Petersson, Gaussian 09, revision d. 01., Wallingford (CT): Gaussian, Inc.; 2009.
  • Dassault SystHmes BIOVIA, Materials Studio, Version 8.0.100.21, San Diego: Dassault SystHmes; 2014.
  • Sun H, Ren P, Fried JR. The COMPASS force field: parameterization and validation for phosphazenes. Comput Theor Polym Sci. 1998;8(1–2):229–246.
  • Jeeja Rani AT, Thomas A, Joseph A. Inhibition of mild steel corrosion in HCl using aqueous and alcoholic extracts of crotalaria pallida – a combination of experimental, simulation and theoretical studies. J Mol Liq. 2021;334:116515.
  • Khadraoui A, Khelifa A, Hamitouche H, et al. Inhibitive effect by extract of Mentha rotundifolia leaves on the corrosion of steel in 1 M HCl solution. Res Chem Intermed. 2014;40(3):961–972.
  • Zhang B, He C, Wang C, et al. Synergistic corrosion inhibition of environment-friendly inhibitors on the corrosion of carbon steel in soft water. Corros Sci. 2015;94:6–20.
  • Kouache A, Khelifa A, Boutoumi H, et al. Experimental and theoretical studies of Inula viscosa extract as a novel eco-friendly corrosion inhibitor for carbon steel in 1 M HCl. J Adhes Sci Technol. 2021:1–29.
  • 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 Adhes Sci Technol. 2021;35(7):691–722.
  • Shahini MH, Keramatinia M, Ramezanzadeh M, et al. Combined atomic-scale/DFT-theoretical simulations & electrochemical assessments of the chamomile flower extract as a green corrosion inhibitor for mild steel in HCl solution. J Mol Liq. 2021;342:117570.
  • Singh P, Quraishi MA, Ebenso EE. Microwave assisted green synthesis of bis-phenol polymer containing piperazine as a corrosion inhibitor for mild steel in 1M HCl. Int J Electrochem Sci. 2013;8:13.
  • Szauer T, Brandt A. Adsorption of oleates of various amines on iron in acidic solution. Electrochim Acta. 1981;26(9):1253–1256.
  • Zarrok H, Zarrouk A, Hammouti B, et al. Corrosion control of carbon steel in phosphoric acid by purpald – weight loss, electrochemical and XPS studies. Corros Sci. 2012;64:243–252.
  • Dehri İ, Özcan M. The effect of temperature on the corrosion of mild steel in acidic media in the presence of some sulphur-containing organic compounds. Mater Chem Phys. 2006;98(2-3):316–323.
  • Popova A. Temperature effect on mild steel corrosion in acid media in presence of azoles. Corros Sci. 2007;49(5):2144–2158.
  • Hamdani NE, Fdil R, Tourabi M, et al. 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. 2015;357:1294–1305.
  • Gowraraju ND, Jagadeesan S, Ayyasamy K, et al. Adsorption characteristics of iota-carrageenan and inulin biopolymers as potential corrosion inhibitors at mild steel/sulphuric acid interface. J Mol Liq. 2017;232:9–19.
  • Herrag L, Hammouti B, Elkadiri S, et al. Adsorption properties and inhibition of mild steel corrosion in hydrochloric solution by some newly synthesized diamine derivatives: experimental and theoretical investigations. Corros Sci. 2010;52(9):3042–3051.
  • Banerjee S, Srivastava V, Singh MM. Chemically modified natural polysaccharide as green corrosion inhibitor for mild steel in acidic medium. Corros Sci. 2012;59:35–41.
  • Verma C, Quraishi MA, Singh A. 2-Amino-5-nitro-4,6-diarylcyclohex-1-ene-1,3,3-tricarbonitriles as new and effective corrosion inhibitors for mild steel in 1M HCl: experimental and theoretical studies. J Mol Liq. 2015;212:804–812.
  • Singh RN, Kumar A, Tiwari RK, et al. A combined experimental and theoretical (DFT and AIM) studies on synthesis, molecular structure, spectroscopic properties and multiple interactions analysis in a novel ethyl-4-[2-(thiocarbamoyl)hydrazinylidene]-3,5-dimethyl-1H-pyrrole-2-carboxylate and its dimer. Spectrochim Acta A Mol Biomol Spectrosc. 2013;112:182–190.
  • Yousif E, Salih N, Salimon J. Improvement of the photostabilization of PVC films in the presence of 2N-salicylidene-5-(substituted)-1,3, 4-thiadiazole. J Appl Polym Sci. 2011;120(4):2207–2214.
  • Zerga B, Sfaira M, Rais Z, et al. Lavender oil as an ecofriendly inhibitor for mild steel in 1 M HCl. Mater Tech. 2009;97(5):297–305.
  • Wu Y, Guo L, She Y. Insight on the corrosion inhibition performance of Psidium Guajava Linn leaves extract. J Mol Liq. 2022;346:117858.
  • Lee J-H, Kim S-H, Kim W, et al. A research on the estimation method for the SOC of the lithium batteries using AC impedance. Trans Kor Inst Power Electron. 2009;14:457–465.
  • Chauhan DS, Madhan Kumar A, Quraishi MA. Hexamethylenediamine functionalized glucose as a new and environmentally benign corrosion inhibitor for copper. Chem Eng Res Des. 2019;150:99–115.
  • Salarvand Z, Amirnasr M, Talebian M, et al. Enhanced corrosion resistance of mild steel in 1M HCl solution by trace amount of 2-phenyl-benzothiazole derivatives: experimental, quantum chemical calculations and molecular dynamics (MD) simulation studies. Corros Sci. 2017;114:133–145.
  • Fernine Y, Salim R, Arrousse N, et al. Anti-corrosion performance of Ocimum basilicum seed extract as environmental friendly inhibitors for mild steel in HCl solution: evaluations of electrochemical, EDX, DFT and Monte Carlo. J Mol Liq. 2022;355:118867.
  • Chung I-M, Kim S-H, Hemapriya V, et al. Inhibition behavior of Tragia involucrata L. phenolic compounds against acidic medium corrosion in low carbon steel surface. Chin J Chem Eng. 2019;27(3):717–725.
  • Haldhar R., Prasad D, Saxena A. Myristica fragrans extract as an eco-friendly corrosion inhibitor for mild steel in 0.5 M H2SO4 solution. J Environ Chem Eng. 2018;6(2):2290–2301.

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