Synthesis of Polymeric Chelating Ligands from Sago Starch for Metal Removal from Electroplating Wastewater

Polymeric chelating ligands containing hydroxamic acid and amidoxime ligands were synthesized from poly(methyl acrylate-co-acrylonitrile) grafted sago starch. Batch adsorption was performed to identify the binding property of metal ions. Maximum sorption capacity of copper is 2.80 mmol g-1, however,...

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Main Authors: Lutfor, M. R., M. M., Yusoff, Muhammad Nor Fazli, Abd Malek
Format: Article
Language:English
Published: Council of Scientific and Industrial Research 2014
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/8117/
http://umpir.ump.edu.my/id/eprint/8117/1/Paper_5.pdf
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author Lutfor, M. R.
M. M., Yusoff
Muhammad Nor Fazli, Abd Malek
author_facet Lutfor, M. R.
M. M., Yusoff
Muhammad Nor Fazli, Abd Malek
author_sort Lutfor, M. R.
building UMP Institutional Repository
collection Online Access
description Polymeric chelating ligands containing hydroxamic acid and amidoxime ligands were synthesized from poly(methyl acrylate-co-acrylonitrile) grafted sago starch. Batch adsorption was performed to identify the binding property of metal ions. Maximum sorption capacity of copper is 2.80 mmol g-1, however, other transition metals has good sorption capacity with this legends. The rate of exchange of some metals was fast, i.e. t½  6 minutes (average). Three types of wastewater containing chromium, zinc, nickel, copper, and iron were used in this study. The metal recovery is found to be high, and more than 99% of the metals could be removed from the metal plating wastewater. Polymeric chelating ligands could be used to remove the metals from wastewater.
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spelling ump-81172018-02-06T07:47:58Z http://umpir.ump.edu.my/id/eprint/8117/ Synthesis of Polymeric Chelating Ligands from Sago Starch for Metal Removal from Electroplating Wastewater Lutfor, M. R. M. M., Yusoff Muhammad Nor Fazli, Abd Malek QD Chemistry Polymeric chelating ligands containing hydroxamic acid and amidoxime ligands were synthesized from poly(methyl acrylate-co-acrylonitrile) grafted sago starch. Batch adsorption was performed to identify the binding property of metal ions. Maximum sorption capacity of copper is 2.80 mmol g-1, however, other transition metals has good sorption capacity with this legends. The rate of exchange of some metals was fast, i.e. t½  6 minutes (average). Three types of wastewater containing chromium, zinc, nickel, copper, and iron were used in this study. The metal recovery is found to be high, and more than 99% of the metals could be removed from the metal plating wastewater. Polymeric chelating ligands could be used to remove the metals from wastewater. Council of Scientific and Industrial Research 2014-05-31 Article PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/8117/1/Paper_5.pdf Lutfor, M. R. and M. M., Yusoff and Muhammad Nor Fazli, Abd Malek (2014) Synthesis of Polymeric Chelating Ligands from Sago Starch for Metal Removal from Electroplating Wastewater. Indian Journal of Chemical Technology, 21. pp. 30-37. (Published) http://nopr.niscair.res.in/handle/123456789/55
spellingShingle QD Chemistry
Lutfor, M. R.
M. M., Yusoff
Muhammad Nor Fazli, Abd Malek
Synthesis of Polymeric Chelating Ligands from Sago Starch for Metal Removal from Electroplating Wastewater
title Synthesis of Polymeric Chelating Ligands from Sago Starch for Metal Removal from Electroplating Wastewater
title_full Synthesis of Polymeric Chelating Ligands from Sago Starch for Metal Removal from Electroplating Wastewater
title_fullStr Synthesis of Polymeric Chelating Ligands from Sago Starch for Metal Removal from Electroplating Wastewater
title_full_unstemmed Synthesis of Polymeric Chelating Ligands from Sago Starch for Metal Removal from Electroplating Wastewater
title_short Synthesis of Polymeric Chelating Ligands from Sago Starch for Metal Removal from Electroplating Wastewater
title_sort synthesis of polymeric chelating ligands from sago starch for metal removal from electroplating wastewater
topic QD Chemistry
url http://umpir.ump.edu.my/id/eprint/8117/
http://umpir.ump.edu.my/id/eprint/8117/
http://umpir.ump.edu.my/id/eprint/8117/1/Paper_5.pdf