Powiadomienia systemowe
- Sesja wygasła!
- Sesja wygasła!
- Sesja wygasła!
Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
The paper presents the results from a study on the possibility to use citric acid as an ecological inhibitor of corrosion in aluminum alloy EN AW-2024 in 0.5 М solution of H2SO4. The study has been carried out by using electrochemical techniques, such as open circuit potential and chronoamperometry. The results reveal that the presence of citric acid in the studied acid medium reduces the corrosion degree of the EN AW-2024 aluminum alloy. The inhibition efficiency increases together with increasing the concentration of the citric acid. The study shows that the citric acid can be used as an ecological inhibitor to fight corrosion in a solution of H2SO4.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
307--311
Opis fizyczny
Bibliogr. 31 poz., rys., tab.
Twórcy
autor
- Department of Mathematics, Physics, Chemistry, Faculty of Mechanical Engineering, Technical University of Sofia, Branch Plovdiv, Bulgaria
Bibliografia
- 1. Revie R., Uhlig H. 2008. Corrosion and Corrosion Control; in: Introduction to Corrosion Science and Engineering. John Wiley & Sons Inc., New Jersey.
- 2. Roberge R. 2012. Handbook of Corrosion Engineering. McGraw-Hill Education, New York.
- 3. McCafferty E. 2010. Introduction to Corrosion Science. Springer Science & Business Media, LLC, New York.
- 4. Popov B.N. 2015. Corrosion inhibitors, in: B.N. Popov (Ed.), Corossion Engineering, Principles and Solved Problems, Elsevier, Amsterdam, 581–597.
- 5. Gharbi O., Thomas S., Smith C., Birbilis N. 2018. Chromate replacement: what does the future hold? Materials Degradation,12, 1–8.
- 6. Al-Juaid S. 2007. Mono azo dyes compounds as corrosion inhibitors for dissolution of aluminium in sodium hydroxide solutions. Portugaliae Electrochimica Acta, 25(3), 363–373.
- 7. Qafsaoui W., Kendig M., Perrot H, Takenouti H. 2015. Effect of 1-pyrrolidine dithiocarbamate on the galvanic coupling resistance of inter-metallics – aluminum matrix during corrosion of AA 2024–T3 in a dilute NaCl. Corrosion Science, 92, 245–255.
- 8. Kalaivani R., Arasu P., Rajendran S. 2013. Inhibition performance on the surface of aluminium in alkaline medium. International Journal of ChemTech Research, 5(4), 1714–1723.
- 9. Arenas M., Bethencourt M., Botana F., Damborenea J., Marcos M. 2001. Inhibition of 5083 aluminium alloy and galvanized steel by lanthanide salts. Corrosion Science, 43, 157–170.
- 10. Bethencourt M., Botana F., Calvino J., M. Marcos, Rodriguez-Chacon M. 1998. Lanthanide compounds as environmentally-friendly corrosion inhibitors of aluminium alloys. Corrosion Science, 40, 1803–1819.
- 11. De Damborenea J., Conde A., Arenas M. 2014. 3 - Corrosion inhibition with rare earth metal compounds in aqueous solutions Rare Earth-Based Corrosion Inhibitors, Woodhead Publishing, 84–116.
- 12. Salghi R., Hammouti B., Kertit S., Bazzi L. 1997. Some amino acid compounds as non-toxic inhibitors for the corrosion of aluminium 6063 alloy in deaerated carbonate solution. Bulletin Electrochemistry, 13, 399–404.
- 13. JmiaiA., El Ibrahimi B., Oukhrib R., El Issami S., Bazzi L., Hilali M. 2017. Chitosan as an eco-friendly inhibitor for copper corrosion in acidic medium: protocol and characterization. Cellulose, 24, 3843–3867.
- 14. Malik M., Hashim M., Nabi F., Al-Thabaiti S., Khan Z. 2011. Anti-corrosion ability of surfactants. International Journal of Electrochemical Science, 6, 1927–1948.
- 15. Oukhrib R., El Ibrahimi B., Bourzi H., El Mouaden K., Jmiai A., El Issami S., Bammou L., Bazzi L. 2017. Quantum chemical calculations and corrosion inhibition efficiency of biopolymer “chitosan” on copper surface in 3% NaCl. Journal of Materials and Environmental Science, 8, 195–208.
- 16. Verma C., Ebenso E., Bahadur I., Quraishi M. 2018. An overview on plant extracts as environmentally sustainable and green corrosion inhibitors for metals and alloys in aggressive corrosive media. Journal Molecular Liquids, 266, 577–590.
- 17. Deyab M. 2016. Corrosion inhibition of aluminum in biodiesel by ethanol extracts of Rosemary leaves. Journal of the Taiwan Institute of Chemical Engineers, 58, 536–541.
- 18. Wisdom J., Kelechi D., Ugochukwu J. 2018. Green Inhibitor for Corrosion of Aluminium Alloy AA 8011A in Acidic Environment. International Research Journal of Engineering and Technology, 5(2), 121–124.
- 19. Onukwuli O., Omotioma M., Obiora-Okafo I. 2020. Thermometric and Gravimetric Analyses of Aluminum Corrosion Control in a HCl Medium, Using Ricinus Communis Extract. Portugaliae Electrochimica Acta, 38(1), 19–28.
- 20. Sharma S., Sharma Y. 2019. Cordia Dichotoma as Corrosion Inhibitor for Aluminum Alloy (AA6063) in Hydrochloric Acid. Portugaliae Electrochimica Acta, 37(1), 1–22.
- 21. El-Azaly A. 2019. Influence of Soybean (Glycine Max) Plant Extract on Corrosion of Aluminum in 1M HCl. International Journal of Electrochemical Science, 14, 2714–2731.
- 22. Wysocka J., Krakowiak S., Jacek Ryl J., Darowicki K. 2016. Citric acid as corrosion inhibitor for aluminium alloys in aqueous alkaline environments. Conference: 7th Kurt-Schwabe-Symposium At: University of Applied Sciences Mittweida, Germany.
- 23. Ibrahimi B., Jmiai A., Bazzi L., Issami S. 2020. Amino acids and their derivatives as corrosion inhibitors for metals and alloys. Arabian Journal of Chemistry, 13, 740–771.
- 24. Müller B. 2004. Citric acid as corrosion inhibitor for aluminium pigment. Corrosion Science, 46, 159–167.
- 25. Brito P., Sequeira C. 2013. Organic Inhibitors of the Anode Self-Corrosion in Aluminum-Air Batteries. Journal of Fuel Cell Science and Technology, 11(1), 011880.
- 26. Wysocka J., Krakowiak S., Ryl J. 2017. Evaluation of citric acid corrosion inhibition efficiency and passivation kinetics for aluminium alloys in alkaline media by means of dynamic impedance monitoring. Electrochimica Acta, 258, 1463–1475.
- 27. Yurt А., Bereket G., Ogretir C. 2005. Quantum chemical studies on inhibition effect of amino acids and hydroxy carboxylic acids on pitting corrosion of aluminium alloy 7075 in NaCl solution. Journal of Molecular Structure THEOCHEM, 725(1), 215–221.
- 28. Solmaz R., Kardaş G.,Yazıcı B., Erbil M. 2008. Citric acid as natural corrosion inhibitor for aluminium protection. Corrosion Engineering, Science and Technology, 43(2), 186–191.
- 29. Hidber P., Graule T., Gauckler L. 1996. Citric Acid-A Dispersant for Aqueous Alumina Suspensions. Journal of the American Ceramic Society, 79, 1857–1867.
- 30. Katoh M. 1968. Influence of chelating agent (citric acid) and F− on corrosion of Al. Corrosion Sciense, 8, 423–431.
- 31. Powell A., Heath S. 1996. X-ray structural analysis of biologically relevant aluminium (III) complexes. Coordination Chemistry Reviews, 149, 59–80.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-7dc80c11-ed28-4fd1-91d4-0111a698e3ec
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.