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dc.creatorSmičiklas, Ivana D.
dc.creatorDimović, Slavko
dc.creatorPlećaš, Ilija B.
dc.creatorMitrić, Miodrag
dc.date.accessioned2018-03-01T19:51:30Z
dc.date.available2018-03-01T19:51:30Z
dc.date.issued2006
dc.identifier.issn0043-1354
dc.identifier.urihttps://vinar.vin.bg.ac.rs/handle/123456789/3046
dc.description.abstractA study on the removal of cobalt ions from aqueous solutions by synthetic hydroxyapatite was conducted in batch conditions. The influence of different sorption parameters, such as: initial metal concentration, equilibration time, solution pH and presence of EDTA on the amount of Co2+, sorbed was studied and discussed. The sorption process followed pseudo-second-order kinetics with necessary time of 24h to reach equilibrium. Cobalt uptake was quantitatively evaluated using the Langmuir and Dubinin-Kaganer-Radushkevich (DKR) model. The Langmuir adsorption isotherm constant corresponding to adsorption capacity, Xm, was found to be 20.92 mg/g. Sorption of Co2+, is constant in the initial pH range 4-8, because HAP surface buffers these solutions to the constant final pH value of 5.1. In the presence of EDTA, sorption of Co2+ decreases due to formation of complex with lower sorption affinities. Cobalt desorption depends on the composition of the extracting solution. The desorbed amount of cobalt decreased continuously with increasing pH, and increased with increasing Ca2+ concentration in leaching solution. (c) 2006 Elsevier Ltd. All rights reserved.en
dc.rightsrestrictedAccessen
dc.sourceWater Researchen
dc.subjecthydroxyapatiteen
dc.subjectcobalt removalen
dc.subjectequilibrium isothermen
dc.subjectkineticsen
dc.subjectpHen
dc.subjectdesorptionen
dc.titleRemoval of Co2+ from aqueous solutions by hydroxyapatiteen
dc.typearticleen
dcterms.abstractПлецас, И.; Смициклас Ивана; Димовић Славко; Митрић Миодраг;
dc.citation.volume40
dc.citation.issue12
dc.citation.spage2267
dc.citation.epage2274
dc.identifier.wos000239196200003
dc.identifier.doi10.1016/j.watres.2006.04.031
dc.citation.rankM21a
dc.identifier.pmid16766010
dc.identifier.scopus2-s2.0-33745208489


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