Lawsonia Inermis as green inhibitor for corrosion protection of aluminium alloy

Corrosion behaviour of aluminium alloy inhibited by henna was investigated by using weight loss analysis, Fourier Transform Infrared (FTIR), electrochemical impedance spectroscopy (EIS) and potendiodynamic polarization study. Lawsonia inermis or also known as henna was extracted by using ethyl aceta...

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Main Authors: W.B., Wan Nik, F., Zulkifli, R.., Rosliza, Rahman, Md. Mokhlesur
Format: Article
Language:English
Published: http://www.ijmer.com/index.html 2012
Subjects:
Online Access:http://irep.iium.edu.my/15274/1/IJMER_LAWSONIA_INERMIS-2012.pdf
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author W.B., Wan Nik
F., Zulkifli
R.., Rosliza
Rahman, Md. Mokhlesur
author_facet W.B., Wan Nik
F., Zulkifli
R.., Rosliza
Rahman, Md. Mokhlesur
author_sort W.B., Wan Nik
collection IIUM
description Corrosion behaviour of aluminium alloy inhibited by henna was investigated by using weight loss analysis, Fourier Transform Infrared (FTIR), electrochemical impedance spectroscopy (EIS) and potendiodynamic polarization study. Lawsonia inermis or also known as henna was extracted by using ethyl acetate and methanol. The result from these characterization shows that henna extracted in ethyl acetate exhibits better inhibition towards corrosion. The value for charge transfer resistance, (Rct) decreases as a result of increasing in the degree of protection of AA5083. Double layer capacitance, (Cdl) decrease indicates that a layer was form indicating the formation of a surface film. This reflects the inhibitor does retard the corrosion rate. Both solvent extract Lawsone component which is the main constituent of Lawsonia Inermis and both also were able to inhibit AA5083 in this experiment.
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spelling oai:generic.eprints.org:152742012-02-23T01:06:57Z http://irep.iium.edu.my/15274/ Lawsonia Inermis as green inhibitor for corrosion protection of aluminium alloy W.B., Wan Nik F., Zulkifli R.., Rosliza Rahman, Md. Mokhlesur QD Chemistry Corrosion behaviour of aluminium alloy inhibited by henna was investigated by using weight loss analysis, Fourier Transform Infrared (FTIR), electrochemical impedance spectroscopy (EIS) and potendiodynamic polarization study. Lawsonia inermis or also known as henna was extracted by using ethyl acetate and methanol. The result from these characterization shows that henna extracted in ethyl acetate exhibits better inhibition towards corrosion. The value for charge transfer resistance, (Rct) decreases as a result of increasing in the degree of protection of AA5083. Double layer capacitance, (Cdl) decrease indicates that a layer was form indicating the formation of a surface film. This reflects the inhibitor does retard the corrosion rate. Both solvent extract Lawsone component which is the main constituent of Lawsonia Inermis and both also were able to inhibit AA5083 in this experiment. http://www.ijmer.com/index.html 2012-01 Article PeerReviewed application/pdf en http://irep.iium.edu.my/15274/1/IJMER_LAWSONIA_INERMIS-2012.pdf W.B., Wan Nik and F., Zulkifli and R.., Rosliza and Rahman, Md. Mokhlesur (2012) Lawsonia Inermis as green inhibitor for corrosion protection of aluminium alloy. International Journal of Modern Engineering Research (IJMER), 1 (2). pp. 723-728. ISSN 2249-6645 http://www.ijmer.com http://www.ijmer.com
spellingShingle QD Chemistry
W.B., Wan Nik
F., Zulkifli
R.., Rosliza
Rahman, Md. Mokhlesur
Lawsonia Inermis as green inhibitor for corrosion protection of aluminium alloy
title Lawsonia Inermis as green inhibitor for corrosion protection of aluminium alloy
title_full Lawsonia Inermis as green inhibitor for corrosion protection of aluminium alloy
title_fullStr Lawsonia Inermis as green inhibitor for corrosion protection of aluminium alloy
title_full_unstemmed Lawsonia Inermis as green inhibitor for corrosion protection of aluminium alloy
title_short Lawsonia Inermis as green inhibitor for corrosion protection of aluminium alloy
title_sort lawsonia inermis as green inhibitor for corrosion protection of aluminium alloy
topic QD Chemistry
url http://irep.iium.edu.my/15274/1/IJMER_LAWSONIA_INERMIS-2012.pdf
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