Preparation and characterisation of a poly(acrylamidoglycolic acid-coacrylamide) hydrogel for selective binding of Cu2+ and application to diffusive gradients in thin films measurements

被引:79
作者
Li, W [1 ]
Zhao, H [1 ]
Teasdale, PR [1 ]
John, R [1 ]
机构
[1] Griffith Univ, Sch Environm & Appl Sci, Gold Coast, Qld 9726, Australia
关键词
poly(acrylamidoglycolic acid-co-acrylamide); copper binding; diffusive gradients in thin films;
D O I
10.1016/S0032-3861(02)00309-9
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
A poly(acrylamidoglycolic acid-co-acrylamide) [poly(AAGA-co-AAm)] hydrogel was prepared by copolymerising 2-acrylamidoglycolic acid (AAGA) with acrylamide (AAm). The copolymer hydrogel composition and structure was characterised by FTIR spectroscopy and elemental microanalysis and found to contain 3.5 AAGA monomer units for each AAm monomer unit. This was similar to the monomer ratios used in the synthesis. The metal ion binding properties of the hydrogel were characterised for a range of metal ions (Cu, Cd, K+, Na+, Mg2+ and Ca2+) under varying conditions of pH, ionic strength, metal concentration and time. The hydrogel was shown to bind Cu2+ and Cd2+ strongly under non-competitive binding conditions, with binding capacities of 5.3 and 5.1 mumol cm(-2), respectively. The binding capacity of each metal decreased, under competitive binding conditions (with a range of metal ions present at 17.8 muN), to 1.3 and 0.17 mumol cm(-2), respectively, indicating stronger selectivity for Cu2+. The metal ions were readily recovered (>94%) by eluting with 2 M nitric acid solution for 24 h. The binding capacities for Cu2+ and Cd2+ were also found to decrease with increasing ionic strength and at pH values <5. The copolymer was found to have an equilibrium swelling ratio (q(w)) of over 500 at a maxima of pH 5.4 and at low ionic strengths. Finally, the copolymer hydrogel was tested as a binding phase with the diffusive gradients in thin films technique. A linear mass vs. time relationship was observed for Cu2+ in synthetic Windermere water with a recovery of approximately 100%. (C) 2002 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:4803 / 4809
页数:7
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