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Bioresour Technol ; 99(6): 2083-6, 2008 Apr.
Article in English | MEDLINE | ID: mdl-17611104

ABSTRACT

Coir pith was chemically modified for the adsorption of cobalt(II) ions from aqueous solution. Chemical modification was done by esterification using succinic anhydride followed by activation with NaHCO(3) in order to improve the adsorption of Co(II). Adsorptive removal of Co(II) from aqueous solution onto modified coir pith was evaluated in batch studies under varying conditions of agitation time and metal ion concentration to assess the kinetic and equilibrium parameters. A pseudo-second-order kinetic model fitted well for the sorption of Co(II) onto modified coir pith. Sorption kinetics showed that the loading of Co(II) by this material was quite fast under ambient conditions. The Langmuir and Freundlich equilibrium isotherm models provided excellent fits for the adsorption data, with R(2) of 0.99 and 0.98, respectively. After esterification, the maximum Co(II) sorption loading Q(0); was greatly improved. It is evident that chemically modified adsorbent exhibits better Co(II) removal capability than raw adsorbent suggesting that surface modification of the adsorbent generates more adsorption sites on its solid surface for metal adsorption. A complete recovery of the adsorbed metal ions from the spent adsorbent was achieved by using 1.0N HCl.


Subject(s)
Biotechnology/methods , Cellulose/chemistry , Cobalt/chemistry , Lignin/analogs & derivatives , Water Pollutants, Chemical/chemistry , Water Purification/methods , Water/chemistry , Adsorption , Biocompatible Materials/chemistry , Industrial Waste , Kinetics , Lignin/chemistry , Models, Chemical , Surface Properties , Temperature , Time Factors
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