Synthesis and characterization of poly(hydroxyethyl methacrylate- N-methacryloyl-( l)-glutamic acid) copolymer beads for removal of lead ions
N-methacryloyl-( l)-glutamic acid (MAGA) was synthesized using methacryloyl chloride and l-glutamic acid methyl ester as a metal-complexing ligand and/or comonomer. MAGA was characterized by FTIR and NMR. Spherical beads with an average diameter of 150–200 μm were obtained by suspension polymerizati...
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Published in | Materials Science & Engineering C Vol. 25; no. 4; pp. 448 - 454 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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Elsevier B.V
01.06.2005
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Abstract | N-methacryloyl-(
l)-glutamic acid (MAGA) was synthesized using methacryloyl chloride and
l-glutamic acid methyl ester as a metal-complexing ligand and/or comonomer. MAGA was characterized by FTIR and NMR. Spherical beads with an average diameter of 150–200 μm were obtained by suspension polymerization of MAGA and 2-hydroxyethyl methacrylate (HEMA) performed in an aqueous dispersion medium. Poly(HEMA-MAGA) beads were characterized by swelling studies, surface area measurements and elemental analysis. Poly(HEMA-MAGA) beads have a specific surface area of 56.7 m
2/g. Poly(HEMA-MAGA) beads were used in the removal studies of Pb
2+ ions. Adsorption equilibrium was achieved in about 60 min. The adsorption of Pb
2+ ions onto PHEMA beads was negligible (0.38 mg/g). The MAGA incorporation into the polymer structure significantly increased the lead adsorption capacity (348 mg/g). The adsorption of Pb
2+ ions increased with increasing pH and reached a plateau value at around pH 5.0. Competitive adsorption of heavy metal ions from synthetic wastewater was also studied. The adsorption capacities are 42.5 mg/g for Pb
2+, 26.8 mg/g for Hg
2+ and 17.6 mg/g for Cd
2+ at 0.5 mmol/l metal concentration. Consecutive adsorption and elution operations showed the feasibility of repeated use for poly(HEMA-MAGA) chelating beads. |
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AbstractList | N-methacryloyl-(l)-glutamic acid (MAGA) was synthesized using methacryloyl chloride and l-glutamic acid methyl ester as a metal-complexing ligand and/or comonomer. MAGA was characterized by FTIR and NMR. Spherical beads with an average diameter of 150-200 mu m were obtained by suspension polymerization of MAGA and 2-hydroxyethyl methacrylate (HEMA) performed in an aqueous dispersion medium. Poly(HEMA-MAGA) beads were characterized by swelling studies, surface area measurements and elemental analysis. Poly(HEMA-MAGA) beads have a specific surface area of 56.7 m super(2)/g. Poly(HEMA-MAGA) beads were used in the removal studies of Pb super(2+) ions. Adsorption equilibrium was achieved in about 60 min. The adsorption of Pb super(2+) ions onto PHEMA beads was negligible (0.38 mg/g). The MAGA incorporation into the polymer structure significantly increased the lead adsorption capacity (348 mg/g). The adsorption of Pb super(2+) ions increased with increasing pH and reached a plateau value at around pH 5.0. Competitive adsorption of heavy metal ions from synthetic wastewater was also studied. The adsorption capacities are 42.5 mg/g for Pb super(2+), 26.8 mg/g for Hg super(2+) and 17.6 mg/g for Cd super(2+) at 0.5 mmol/l metal concentration. Consecutive adsorption and elution operations showed the feasibility of repeated use for poly(HEMA-MAGA) chelating beads. N-methacryloyl-( l)-glutamic acid (MAGA) was synthesized using methacryloyl chloride and l-glutamic acid methyl ester as a metal-complexing ligand and/or comonomer. MAGA was characterized by FTIR and NMR. Spherical beads with an average diameter of 150–200 μm were obtained by suspension polymerization of MAGA and 2-hydroxyethyl methacrylate (HEMA) performed in an aqueous dispersion medium. Poly(HEMA-MAGA) beads were characterized by swelling studies, surface area measurements and elemental analysis. Poly(HEMA-MAGA) beads have a specific surface area of 56.7 m 2/g. Poly(HEMA-MAGA) beads were used in the removal studies of Pb 2+ ions. Adsorption equilibrium was achieved in about 60 min. The adsorption of Pb 2+ ions onto PHEMA beads was negligible (0.38 mg/g). The MAGA incorporation into the polymer structure significantly increased the lead adsorption capacity (348 mg/g). The adsorption of Pb 2+ ions increased with increasing pH and reached a plateau value at around pH 5.0. Competitive adsorption of heavy metal ions from synthetic wastewater was also studied. The adsorption capacities are 42.5 mg/g for Pb 2+, 26.8 mg/g for Hg 2+ and 17.6 mg/g for Cd 2+ at 0.5 mmol/l metal concentration. Consecutive adsorption and elution operations showed the feasibility of repeated use for poly(HEMA-MAGA) chelating beads. |
Author | Garipcan, Bora Denizli, Adil Karabakan, Abdülkerim Senöz, Hülya |
Author_xml | – sequence: 1 givenname: Adil surname: Denizli fullname: Denizli, Adil email: denizli@hacettepe.edu.tr – sequence: 2 givenname: Bora surname: Garipcan fullname: Garipcan, Bora – sequence: 3 givenname: Abdülkerim surname: Karabakan fullname: Karabakan, Abdülkerim – sequence: 4 givenname: Hülya surname: Senöz fullname: Senöz, Hülya |
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Keywords | Metal-chelating beads Lead removal Glutamic acid |
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Snippet | N-methacryloyl-(
l)-glutamic acid (MAGA) was synthesized using methacryloyl chloride and
l-glutamic acid methyl ester as a metal-complexing ligand and/or... N-methacryloyl-(l)-glutamic acid (MAGA) was synthesized using methacryloyl chloride and l-glutamic acid methyl ester as a metal-complexing ligand and/or... |
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StartPage | 448 |
SubjectTerms | Glutamic acid Lead removal Metal-chelating beads |
Title | Synthesis and characterization of poly(hydroxyethyl methacrylate- N-methacryloyl-( l)-glutamic acid) copolymer beads for removal of lead ions |
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