Adsorption of heavy metal ions onto dithizone-anchored poly (EGDMA-HEMA) microbeads

The dithizone-anchored poly (EGDMA-HEMA) microbeads were prepared for the removal of heavy metal ions (i.e. cadmium, mercury, chromium and lead) from aqueous media containing different amounts of these ions (25–500 ppm) and at different pH values (2.0–8.0). The maximum adsorptions of heavy metal ion...

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Veröffentlicht in:Talanta (Oxford) 1998-08, Vol.46 (5), p.1205-1213
Hauptverfasser: Salih, B, Denizli, A, Kavaklı, C, Say, R, Pişkin, E
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Sprache:eng
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Zusammenfassung:The dithizone-anchored poly (EGDMA-HEMA) microbeads were prepared for the removal of heavy metal ions (i.e. cadmium, mercury, chromium and lead) from aqueous media containing different amounts of these ions (25–500 ppm) and at different pH values (2.0–8.0). The maximum adsorptions of heavy metal ions onto the dithizone-anchored microbeads from their solutions was 18.3, Cd(II); 43.1, Hg(II); 62.2, Cr(III) and 155.2 mg g −1 for Pb(II). Competition between heavy metal ions (in the case of adsorption from mixture) yielded adsorption capacities of 9.7, Cd(II); 28.7, Hg(II); 17.6, Cr(III) and 38.3 mg g −1 for Pb(II). The same affinity order was observed under non-competitive and competitive adsorption, i.e. Cr(III)>Pb(II)>Hg(II)>Cd(II). The adsorption of heavy metal ions increased with increasing pH and reached a plateaue value at around pH 5.0. Heavy metal ion adsorption from artificial wastewater was also studied. The adsorption capacities are 4.3, Cd(II); 13.2, Hg(II); 7.2, Cr(III) and 16.4 mg g −1 for Pb(II). Desorption of heavy metal ions was achieved using 0.1 M HNO 3. The dithizone-anchored microbeads are suitable for repeated use (for more than five cycles) without noticeable loss of capacity.
ISSN:0039-9140
1873-3573
DOI:10.1016/S0039-9140(97)00362-7