Experimental and Computational Chemistry Investigations of Tartaric acid as a Green Corrosion Inhibitor for API 5L X 52 Carbon Steel in 0.5 M HCl
Keywords:
API 5L X 52 carbon steel, corrosion, inhibition, tartaric acid, experimental and computational chemistry investigationsAbstract
Uduak Bassey Essien, Magdalene E. Ikpi and Alexander I Ikeuba and Nsikak Bassey Essien
Investigation of suitable corrosion inhibitor for API 5L X 52 carbon steel in 0.5 M HCl, is of significant industrial importance because of the role of the metal in several sectors. Tartaric acid was tested as a corrosion inhibitor for the metals using weight loss, potentiodynaic polarization and electrochemical impedance methods. The tested compound displayed maximum inhibition efficiency of 85%, which showed a strong dependency on concentration, temperature and time. Spontaneous and exothermic physical adsorption of the inhibitor on the metal surface was ascertained as the mechanism of inhibition. Isotherms established by the Langmuir and Freundlich assumptions fitted the adsorption process Information from computational chemistry calculations indicated significant roles of the frontier molecular orbitals towards the inhibition of the metal corrosion. Also, the sites for electrophilic, nucleophilic and radical attacks were observed to be within the carboxyl functional groups.
Downloads
Published
Issue
Section
How to Cite
Most read articles by the same author(s)
- Nsikak Bassey Essien, Chukwu Obaji Daniel, Raphael Mmenyene Paul, Synthesis and characterization of Silicon Oxide Nanoparticles using Plantain Peel as a Precursor , Communication In Physical Sciences: Vol. 11 No. 1 (2024): VOLUME 11 ISSUE 1
- Nsikak Bassey Essien, Rice Husk as Precursor for Silicon Oxide Nanoparticles: Synthesis and Characterization , Communication In Physical Sciences: Vol. 11 No. 4 (2024): VOLUME 11 ISSUE 4
- Vivian Ifeoma Okonkwo, Gloria Chika Udeokpote, Uduak Bassey Essien, Ethanol Extract of Curcuma longa as a green corrosion inhibitor for carbon steel in solution of HCl , Communication In Physical Sciences: Vol. 8 No. 4 (2022): VOLUME 8 ISSUE 4
Similar Articles
- Ovie Benedict Enivwenae, Determination of pH and Hydroquinone Concentration in Selected Bleaching Creams Used By Some Students Of Delta State University Abraka , Communication In Physical Sciences: Vol. 11 No. 2 (2024): VOLUME 11 ISSUE 2
- Chinwendu Olive Ozoeze, Okenwa Uchenna Igwe, Isolation and Characterizations of a Pentacyclic Glycoside from Methanolic Fraction of Allium sativum (Purple Garlic) Bulbs , Communication In Physical Sciences: Vol. 12 No. 3 (2025): VOLUME 12 ISSUE 3
- Okenwa Uchenna Igwe, Ugochukwu Clinton Akwada, Phytochemical Composition and Antioxidant Activity Screening of Extracts from the Leaf of Emilia coccinea (SIMS) G.don , Communication In Physical Sciences: Vol. 8 No. 3 (2022): VOLUME 8 ISSUE 3
- Maxwell O. Akpu, Nnanna A. Lebe, Nwamaka I. Akpu, Lattice Instability in metallic elements: A Review , Communication In Physical Sciences: Vol. 12 No. 2 (2025): VOLUME 12 ISSUE 2
- Olumuyiwa O. Akintola , Investigation of the Safe Location for Private Electric Power Generators Servicing Residential Buildings in Nigeria , Communication In Physical Sciences: Vol. 9 No. 4 (2023): VOLUME 9 ISSUE 4
- Mercy Uwem Useh, Electrochemical Remediation of Soil Contaminants Using Conductive Polymer Electrodes , Communication In Physical Sciences: Vol. 12 No. 8 (2025): VOLUME 12 ISSUE 8
- Usoro M. Etesin, Hydrochemical study of shallow ground water in Ikot Abasi Coastal Aquifer , Communication In Physical Sciences: Vol. 7 No. 3 (2021): VOLUME 7 ISSUE 3
- P. M. Ejikeme, Decorative Wood Varnishes from Limed-Cashew Nut Shell Liquid Product , Communication In Physical Sciences: Vol. 1 No. 1 (2010): VOLUME 1 ISSUE 1
- Ahmad Rufai Bala, Abdullahi Sahal , Phytochemical Screening and Anti-microbial Properties of Herbal Medicines used for Treatment of Typhoid and Bacterial/Viral Infection in Kaduna State , Communication In Physical Sciences: Vol. 11 No. 1 (2024): VOLUME 11 ISSUE 1
- Kayode Sanusi, Computational Study of the Reaction Mechanism for the Formation of 4,5-Diaminophthalonitrile from 4,5-Dibromo-1,2-Diaminobenzene and Copper Cyanide , Communication In Physical Sciences: Vol. 11 No. 4 (2024): VOLUME 11 ISSUE 4
You may also start an advanced similarity search for this article.



