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SELECTED BIS-THIADIAZOLE: SYNTHESIS AND CORROSION INHIBITION STUDIES ON MILD STEEL IN HCL ENVIRONMENT

Abbas Z. Salman, Qusay A. Jawad, Khalid S. Ridah, Lina M. Shaker and Ahmed A. Al-Amiery
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Abbas Z. Salman: Energy and Renewable Energies Technology Center, University of Technology, Industrial Street, Baghdad 10066, Iraq
Qusay A. Jawad: Energy and Renewable Energies Technology Center, University of Technology, Industrial Street, Baghdad 10066, Iraq
Khalid S. Ridah: Energy and Renewable Energies Technology Center, University of Technology, Industrial Street, Baghdad 10066, Iraq
Lina M. Shaker: Energy and Renewable Energies Technology Center, University of Technology, Industrial Street, Baghdad 10066, Iraq
Ahmed A. Al-Amiery: Energy and Renewable Energies Technology Center, University of Technology, Industrial Street, Baghdad 10066, Iraq

Surface Review and Letters (SRL), 2020, vol. 27, issue 12, 1-5

Abstract: The inhibition effect of synthesized corrosion inhibitor namely 5,5′-(1,4-phenylene)bis(N-phenyl-1,3,4-thiadiazol-2-amine) (PBPA) on the corrosion of mild steel in 1-M hydrochloric acid environment are examined by gravimetric techniques at various temperature (303–343 K). The synthesized inhibitor concentrations are 0.1–0.5mM. The inhibition efficiency increased with the increase of the inhibitor concentration. The inhibition efficiency reached 94% at the highest studied concentration of 0.5mM for 5h of immersion time and 303K. Moreover, the inhibition efficiency decreased with the temperature increase. The adsorption of tested inhibitor molecules on the surface of mild steel follows the Langmuir adsorption isotherm. The studied inhibitor molecules showed excellent inhibition since PBPA molecules have nitrogen and sulfur atoms in addition to phenyl and thiadiazol rings which were linked together in conjugation system.

Keywords: Mild steel; PBPA adsorption isotherm; gravimetric; inhibitor (search for similar items in EconPapers)
Date: 2020
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DOI: 10.1142/S0218625X20500146

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