| Literature DB >> 25164955 |
Soumitra Ghorai1, Amit Kumar Sarkar1, Sagar Pal2.
Abstract
This work studied the application of a novel biodegradable nanocomposite based on partially hydrolyzed polyacrylamide grafted xanthan gum and nanosilica (h-XG/SiO2) towards efficient and rapid removal of toxic Pb(2+) ions from aqueous environment. The uptake ability of Pb(2+) using h-XG/SiO2 has been studied in batch adsorption experiments with variation of adsorption parameters. The excellent removal rate (99.54% adsorption within 25min) and superior adsorption capacity (Qmax=1012.15mgg(-1)) of the composite material have been explained on the basis of synergistic and chelating effects of h-XG/SiO2 with Pb(2+) ion through electrostatic interactions. The kinetics, isotherm and thermodynamics studies reveal that Pb(2+) adsorb rapidly on nanocomposite surface, which is in agreement with pseudo-second-order kinetics and Langmuir adsorption isotherm models. In consequence of excellent adsorption as well as regeneration characteristics of nanocomposite, it has been found to be a promising adsorbent towards removal of Pb(2+) ions from battery industry wastewater.Entities:
Keywords: Adsorption; Battery industry effluent; Biodegradable nanocomposite; Xanthan gum
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Year: 2014 PMID: 25164955 DOI: 10.1016/j.biortech.2014.08.010
Source DB: PubMed Journal: Bioresour Technol ISSN: 0960-8524 Impact factor: 9.642