Synthesis and Characterization of Poly(Hydroxamic Acid) and Poly(Amidoxime) Chelating Resins from Polymer Grafted Sago Starch

The graft copolymerization of methyl acrylate (MA) onto sago starch was performed by free radical initiating process in which ceric ammonium nitrate (CAN) was used as an initiator. It was found that the optimum yield of grafting, grafting efficiency and rate of graft polymerization were all depen...

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Main Author: Rahman, Md. Lutfor
Format: Thesis
Language:English
English
Published: 1999
Subjects:
Online Access:http://psasir.upm.edu.my/id/eprint/9474/
http://psasir.upm.edu.my/id/eprint/9474/1/FSAS_1999_21_A.pdf
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author Rahman, Md. Lutfor
author_facet Rahman, Md. Lutfor
author_sort Rahman, Md. Lutfor
building UPM Institutional Repository
collection Online Access
description The graft copolymerization of methyl acrylate (MA) onto sago starch was performed by free radical initiating process in which ceric ammonium nitrate (CAN) was used as an initiator. It was found that the optimum yield of grafting, grafting efficiency and rate of graft polymerization were all dependent upon the concentration of CAN, MA, sago starch (AGU) and mineral acid (H2S04) as well as reaction temperature and period. A new equation rate of polymerization was derived from the proposed reaction mechanism. A new kinetic model for graft fraction was proposed and the validity of the model was tested by the plot of l/(l-GF)ll2 as a function of sago starch concentration and reciprocal monomer (MA) concentration. The required straight line and ordinate intercept unity was obtained and the predicted kinetic model was satisfactory supported by the experimental results until a certain limit of monomer (MA) concentration. A chelating polymeric resin containing hydroxamic acid was synthesized from poly(methyl acrylate) (PMA) grafted sago starch. The binding capacity of the poly(hydroxamic acid) resin with copper is high and other metal ions also show significant binding capacity. This chelating resin has the advantage of faster rate of equilibrium and negligible affinity for alkali metal ions. The sorption capacities of metal ions were pH dependent and its selectivity towards these metal ions is in the following order: Cu2+ > Fe3+ > Cr3+ > Ni2+ > Co2+ > Zn2+ > Cd2+ > As3+> Pb2+. These paration of Cu2+ from Co2+ and Cd2+, and Fe3+ from Co2+ and Cd2+ were carried out by column technique.
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institution Universiti Putra Malaysia
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language English
English
last_indexed 2025-11-15T07:38:45Z
publishDate 1999
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spelling upm-94742024-03-06T03:23:32Z http://psasir.upm.edu.my/id/eprint/9474/ Synthesis and Characterization of Poly(Hydroxamic Acid) and Poly(Amidoxime) Chelating Resins from Polymer Grafted Sago Starch Rahman, Md. Lutfor The graft copolymerization of methyl acrylate (MA) onto sago starch was performed by free radical initiating process in which ceric ammonium nitrate (CAN) was used as an initiator. It was found that the optimum yield of grafting, grafting efficiency and rate of graft polymerization were all dependent upon the concentration of CAN, MA, sago starch (AGU) and mineral acid (H2S04) as well as reaction temperature and period. A new equation rate of polymerization was derived from the proposed reaction mechanism. A new kinetic model for graft fraction was proposed and the validity of the model was tested by the plot of l/(l-GF)ll2 as a function of sago starch concentration and reciprocal monomer (MA) concentration. The required straight line and ordinate intercept unity was obtained and the predicted kinetic model was satisfactory supported by the experimental results until a certain limit of monomer (MA) concentration. A chelating polymeric resin containing hydroxamic acid was synthesized from poly(methyl acrylate) (PMA) grafted sago starch. The binding capacity of the poly(hydroxamic acid) resin with copper is high and other metal ions also show significant binding capacity. This chelating resin has the advantage of faster rate of equilibrium and negligible affinity for alkali metal ions. The sorption capacities of metal ions were pH dependent and its selectivity towards these metal ions is in the following order: Cu2+ > Fe3+ > Cr3+ > Ni2+ > Co2+ > Zn2+ > Cd2+ > As3+> Pb2+. These paration of Cu2+ from Co2+ and Cd2+, and Fe3+ from Co2+ and Cd2+ were carried out by column technique. 1999-12 Thesis NonPeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/9474/1/FSAS_1999_21_A.pdf Rahman, Md. Lutfor (1999) Synthesis and Characterization of Poly(Hydroxamic Acid) and Poly(Amidoxime) Chelating Resins from Polymer Grafted Sago Starch. Doctoral thesis, Universiti Putra Malaysia. Graft copolymers Methyl acrylate. Polymerization. English
spellingShingle Graft copolymers
Methyl acrylate.
Polymerization.
Rahman, Md. Lutfor
Synthesis and Characterization of Poly(Hydroxamic Acid) and Poly(Amidoxime) Chelating Resins from Polymer Grafted Sago Starch
title Synthesis and Characterization of Poly(Hydroxamic Acid) and Poly(Amidoxime) Chelating Resins from Polymer Grafted Sago Starch
title_full Synthesis and Characterization of Poly(Hydroxamic Acid) and Poly(Amidoxime) Chelating Resins from Polymer Grafted Sago Starch
title_fullStr Synthesis and Characterization of Poly(Hydroxamic Acid) and Poly(Amidoxime) Chelating Resins from Polymer Grafted Sago Starch
title_full_unstemmed Synthesis and Characterization of Poly(Hydroxamic Acid) and Poly(Amidoxime) Chelating Resins from Polymer Grafted Sago Starch
title_short Synthesis and Characterization of Poly(Hydroxamic Acid) and Poly(Amidoxime) Chelating Resins from Polymer Grafted Sago Starch
title_sort synthesis and characterization of poly(hydroxamic acid) and poly(amidoxime) chelating resins from polymer grafted sago starch
topic Graft copolymers
Methyl acrylate.
Polymerization.
url http://psasir.upm.edu.my/id/eprint/9474/
http://psasir.upm.edu.my/id/eprint/9474/1/FSAS_1999_21_A.pdf