Electrochemical Investigation on the Acid Corrosion Control of Mild Steel using Biopolymer as an Inhibitor

The present work highlights the results of the application of a green inhibitor for material conservation. The anticorrosive performance of the pectin bio-polymer was established for the corrosion control of mild steel in a 1 M phosphoric acid medium. Electrochemical measurements such as potentiodynamic polarization (PDP) and electrochemical impedance spectroscopy (EIS) studies were adopted for the corrosion inhibition studies. The studies were carried out by varying the concentrations of pectin in the temperature range from 303 K to 318 K. Conditions were optimized to get maximum inhibition efficiency. The surface morphology study was done by scanning electron microscope (SEM), and elemental mapping was done using energy dispersive X-ray (EDX) studies to confirm the adsorption and interaction of the inhibitor with the material. Studies showed an increase in the inhibition efficiency with an increase in the concentration of pectin and also in the temperature. Maximum inhibition efficiency of 70% was achieved by the addition of 800 ppm of inhibitor. Pectin acted as a mixed type inhibitor by bringing down both cathodic and anodic reactions. Kinetic and thermodynamic parameters revealed chemical adsorption of pectin onto the mild steel surface.

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Main Authors: Sushmitha,Y., Rao,Padmalatha
Format: Digital revista
Language:English
Published: Sociedade Portuguesa de Electroquímica 2020
Online Access:http://scielo.pt/scielo.php?script=sci_arttext&pid=S0872-19042020000300002
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spelling oai:scielo:S0872-190420200003000022020-03-23Electrochemical Investigation on the Acid Corrosion Control of Mild Steel using Biopolymer as an InhibitorSushmitha,Y.Rao,Padmalatha mild steel pectin green inhibitor electrochemical measurements surface analysis The present work highlights the results of the application of a green inhibitor for material conservation. The anticorrosive performance of the pectin bio-polymer was established for the corrosion control of mild steel in a 1 M phosphoric acid medium. Electrochemical measurements such as potentiodynamic polarization (PDP) and electrochemical impedance spectroscopy (EIS) studies were adopted for the corrosion inhibition studies. The studies were carried out by varying the concentrations of pectin in the temperature range from 303 K to 318 K. Conditions were optimized to get maximum inhibition efficiency. The surface morphology study was done by scanning electron microscope (SEM), and elemental mapping was done using energy dispersive X-ray (EDX) studies to confirm the adsorption and interaction of the inhibitor with the material. Studies showed an increase in the inhibition efficiency with an increase in the concentration of pectin and also in the temperature. Maximum inhibition efficiency of 70% was achieved by the addition of 800 ppm of inhibitor. Pectin acted as a mixed type inhibitor by bringing down both cathodic and anodic reactions. Kinetic and thermodynamic parameters revealed chemical adsorption of pectin onto the mild steel surface.info:eu-repo/semantics/openAccessSociedade Portuguesa de ElectroquímicaPortugaliae Electrochimica Acta v.38 n.3 20202020-06-01info:eu-repo/semantics/articletext/htmlhttp://scielo.pt/scielo.php?script=sci_arttext&pid=S0872-19042020000300002en10.4152/pea.202003149
institution SCIELO
collection OJS
country Portugal
countrycode PT
component Revista
access En linea
databasecode rev-scielo-pt
tag revista
region Europa del Sur
libraryname SciELO
language English
format Digital
author Sushmitha,Y.
Rao,Padmalatha
spellingShingle Sushmitha,Y.
Rao,Padmalatha
Electrochemical Investigation on the Acid Corrosion Control of Mild Steel using Biopolymer as an Inhibitor
author_facet Sushmitha,Y.
Rao,Padmalatha
author_sort Sushmitha,Y.
title Electrochemical Investigation on the Acid Corrosion Control of Mild Steel using Biopolymer as an Inhibitor
title_short Electrochemical Investigation on the Acid Corrosion Control of Mild Steel using Biopolymer as an Inhibitor
title_full Electrochemical Investigation on the Acid Corrosion Control of Mild Steel using Biopolymer as an Inhibitor
title_fullStr Electrochemical Investigation on the Acid Corrosion Control of Mild Steel using Biopolymer as an Inhibitor
title_full_unstemmed Electrochemical Investigation on the Acid Corrosion Control of Mild Steel using Biopolymer as an Inhibitor
title_sort electrochemical investigation on the acid corrosion control of mild steel using biopolymer as an inhibitor
description The present work highlights the results of the application of a green inhibitor for material conservation. The anticorrosive performance of the pectin bio-polymer was established for the corrosion control of mild steel in a 1 M phosphoric acid medium. Electrochemical measurements such as potentiodynamic polarization (PDP) and electrochemical impedance spectroscopy (EIS) studies were adopted for the corrosion inhibition studies. The studies were carried out by varying the concentrations of pectin in the temperature range from 303 K to 318 K. Conditions were optimized to get maximum inhibition efficiency. The surface morphology study was done by scanning electron microscope (SEM), and elemental mapping was done using energy dispersive X-ray (EDX) studies to confirm the adsorption and interaction of the inhibitor with the material. Studies showed an increase in the inhibition efficiency with an increase in the concentration of pectin and also in the temperature. Maximum inhibition efficiency of 70% was achieved by the addition of 800 ppm of inhibitor. Pectin acted as a mixed type inhibitor by bringing down both cathodic and anodic reactions. Kinetic and thermodynamic parameters revealed chemical adsorption of pectin onto the mild steel surface.
publisher Sociedade Portuguesa de Electroquímica
publishDate 2020
url http://scielo.pt/scielo.php?script=sci_arttext&pid=S0872-19042020000300002
work_keys_str_mv AT sushmithay electrochemicalinvestigationontheacidcorrosioncontrolofmildsteelusingbiopolymerasaninhibitor
AT raopadmalatha electrochemicalinvestigationontheacidcorrosioncontrolofmildsteelusingbiopolymerasaninhibitor
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