Protective efficacy of omeprazole against hydrogen sulfide corrosion of carbon steel
https://doi.org/10.31615/j.corros.prot.2022.106.4-4
Abstract
Expired drugs have been studied as corrosion inhibitors for metals in various environments for more than 10 years. Their similar use is due to the structure of molecules containing unsaturated bonds, aromatic rings and heteroatoms, such as O, N, S, etc., as well as conventional organic inhibitors. In this work, the inhibitory effect of expired drug Omeprazole against carbon steel corrosion in a NACE model stratum water containing 400 mg/L hydrogen sulfide was investigated. The concentration of omeprazole varied within 10…60 mg/L. The studies were carried out by gravimetry, potentiodynamic polarization and impedance spectroscopy methods. The inhibitory properties of omeprazole in the studied medium are estimated as average with a protective effect of 75…80% at the maximum concentration studied. The inhibitor causes a slowdown in both electrode reactions. The adsorption of omeprazole on the steel surface is described by the Langmuir isotherm. The calculated value of the free energy of adsorption (-29 kJ/mol) indicates the chemisorption of the inhibitor.
About the Authors
L. E. TsygankovaRussian Federation
Liudmila E. Tsygankova, Doctor of Chemistry, Professor,
Head of Department of Chemistry
33, Internatsyonalnaya st., Tambov
V. A. Bryksina
Russian Federation
Viktoriya A. Bryksina, postgraduate student
33, Internatsyonalnaya st., Tambov
O. V. Alekhina
Russian Federation
Olga V. Alekhina, PhD in Chemistry, associate professor
33, Internatsyonalnaya st., Tambov
N. V. Shel
Russian Federation
Natalia V. Shel, Doctor of Chemistry, Professor of «Chemistry and Chemical Technology» Department
106, Sovetskaya st., Tambov
References
1. Pathak, R. K., Mishra, P. (2016). Drugs as Corrosion Inhibitors: A Review. Intern. J. Sci. Res. 5, 671- 677. www.ijsr.net
2. Verma, C., Chauhan, D. S. & Quraishi, M. A. (2017). Drugs as environmentally benign corrosion inhibitors for ferrous and nonferrous materials in acid environment: An overview. J. Mater. Environ. Sci., 8(11), 4040-4051. http:// www.jmaterenvironsci.com/
3. Bharatiya, U., Gal, P., Agrawal, A., Shah, M., Sircar, A. (2019). Effect of Corrosion on Crude Oil and Natural Gas Pipeline with Emphasis on Prevention by Ecofriendly Corrosion Inhibitors: A Comprehensive Review. J. Bio- Tribo-Corros., 5(35), 1-12. https://doi.org/10.1007/s40735-019-0225-9
4. Ngobiri, N. C., Oguzie, E. E., Oforka, N. C. & Akarantam O. (2019). Comparative study on the inhibitive effect of Sulfadoxine– Pyrimethamine and an industrial inhibitor on the corrosion of pipeline steel in petroleum pipeline water. Arab. J. Chem., 12, 1024-1034. http://dx.doi.org/10.1016/j.arabjc.2015.04.004
5. Eid, S. (2021). Expired Desloratidine Drug as Inhibitor for Corrosion of Carbon Steel Pipeline in Hydrochloric acid Solution. Int. J. Electrochem. Sci. 16, 150852. doi: 10.20964/2021.01.27
6. Berisha, A. (2022). An experimental and theoretical investigation of the efficacy of Pano- toprazole as a corrosion inhibitor for mild steel in acidic medium. Electrochem., 3(1), 28-41. https://doi.org/10.3390/electrochem3010002]
7. Hamdouni, Y. E., Bouhlal, F., Kouri, H. and others. (2020). Use of Omeprazole as Inhibitor for C38 Steel Corrosion in 1,0 M H3PO4 Medium. J Fail. Anal. and Preven. https://doi.org/10.1007/s11668-020-00862-5
8. Tsygankova, L. E., Bryksina, V. A., Uryadnikov, A. A. & Abramov, A. E. (2022). Protective efficiency of expired drug against acid corrosion of carbon steel. Int. J. Corros. Scale Inhib. 11(2), 564-576. doi: 10.17675/2305-6894-2022-11-2-7
9. Kichenko, S. B. and Kichenko, А. B. (2005). Estimation of the complex efficiency of corrosion inhibitors, Theory and Practice of Corrosion Protection, (3), 24-28 (in Russian).
10. Tsygankova, L. E., Alshikha, N., Kostyakova, A. A. (2019). Study of the inhibition of hydrogen sulfide corrosion of steel in synthetic stratum water using the complex method. Theory and Practice of Corrosion Protection, 24(3), 14-21. doi:10.31615/j.corros. prot.2019.93.3-2
11. Damaskin, B. B., Petriy ,O. A. & Batrakov, V. V. (1968). Adsorption of organic compounds on electrodes. Moscow, Nauka (in Russian).
Review
For citations:
Tsygankova L.E., Bryksina V.A., Alekhina O.V., Shel N.V. Protective efficacy of omeprazole against hydrogen sulfide corrosion of carbon steel. Theory and Practice of Corrosion Protection. 2022;27(4):36-44. (In Russ.) https://doi.org/10.31615/j.corros.prot.2022.106.4-4