Synthesis of xanthated chitosan beads for fast and efficient recovery of precious ce(Iii) ions from aqueous solutions

Xanthated chitosan (XC) beads, an efficient adsorbent to recover precious rare earth Ce(III) ions were prepared, characterized, and applied in this study. Factors that influence the performance in adsorption of Ce(III), which were pH of the solution, stirring rate, adsorbent dosage, and contact time...

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Published in:Desalination and Water Treatment
Main Author: Hanafiah M.A.K.M.; Ariff N.F.M.; Ibrahim S.; Ngah W.S.W.; Hussain Z.M.
Format: Article
Language:English
Published: Desalination Publications 2020
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85098480024&doi=10.5004%2fdwt.2020.26266&partnerID=40&md5=593ce8d5453f0e7c988d182a8afef31c
id 2-s2.0-85098480024
spelling 2-s2.0-85098480024
Hanafiah M.A.K.M.; Ariff N.F.M.; Ibrahim S.; Ngah W.S.W.; Hussain Z.M.
Synthesis of xanthated chitosan beads for fast and efficient recovery of precious ce(Iii) ions from aqueous solutions
2020
Desalination and Water Treatment
204

10.5004/dwt.2020.26266
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85098480024&doi=10.5004%2fdwt.2020.26266&partnerID=40&md5=593ce8d5453f0e7c988d182a8afef31c
Xanthated chitosan (XC) beads, an efficient adsorbent to recover precious rare earth Ce(III) ions were prepared, characterized, and applied in this study. Factors that influence the performance in adsorption of Ce(III), which were pH of the solution, stirring rate, adsorbent dosage, and contact time, were investigated. Results revealed that the optimum conditions for adsorption of Ce(III) to be at a temperature of 300 K and pH 4, with a dosage of 0.02 g. A rapid adsorption process with only 10 min to achieve equilibrium was observed, regardless of the initial concentrations in Ce(III). Chemisorption was suggested as the rate-limiting step because of the correlation between Ce(III) adsorption process with the pseudo-second-order kinetic model. Langmuir model was found to fit well with the experimental isotherm data, and the maximum adsorption capacity of XC beads was 555.6 mg g–1 at 300 K. Based on the thermodynamic study, the enthalpy and entropy recorded were –6.18 kJ mol–1 and 130.36 J K–1 mol–1, respectively. The nature of adsorption was exothermic as more Ce(III) ions were adsorbed at a lower temperature. Ion exchange, ionic attraction, and complexation were identified as the dominant mechanisms involved in Ce(III) adsorption. © 2020 Desalination Publications. All rights reserved.
Desalination Publications
19443994
English
Article

author Hanafiah M.A.K.M.; Ariff N.F.M.; Ibrahim S.; Ngah W.S.W.; Hussain Z.M.
spellingShingle Hanafiah M.A.K.M.; Ariff N.F.M.; Ibrahim S.; Ngah W.S.W.; Hussain Z.M.
Synthesis of xanthated chitosan beads for fast and efficient recovery of precious ce(Iii) ions from aqueous solutions
author_facet Hanafiah M.A.K.M.; Ariff N.F.M.; Ibrahim S.; Ngah W.S.W.; Hussain Z.M.
author_sort Hanafiah M.A.K.M.; Ariff N.F.M.; Ibrahim S.; Ngah W.S.W.; Hussain Z.M.
title Synthesis of xanthated chitosan beads for fast and efficient recovery of precious ce(Iii) ions from aqueous solutions
title_short Synthesis of xanthated chitosan beads for fast and efficient recovery of precious ce(Iii) ions from aqueous solutions
title_full Synthesis of xanthated chitosan beads for fast and efficient recovery of precious ce(Iii) ions from aqueous solutions
title_fullStr Synthesis of xanthated chitosan beads for fast and efficient recovery of precious ce(Iii) ions from aqueous solutions
title_full_unstemmed Synthesis of xanthated chitosan beads for fast and efficient recovery of precious ce(Iii) ions from aqueous solutions
title_sort Synthesis of xanthated chitosan beads for fast and efficient recovery of precious ce(Iii) ions from aqueous solutions
publishDate 2020
container_title Desalination and Water Treatment
container_volume 204
container_issue
doi_str_mv 10.5004/dwt.2020.26266
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85098480024&doi=10.5004%2fdwt.2020.26266&partnerID=40&md5=593ce8d5453f0e7c988d182a8afef31c
description Xanthated chitosan (XC) beads, an efficient adsorbent to recover precious rare earth Ce(III) ions were prepared, characterized, and applied in this study. Factors that influence the performance in adsorption of Ce(III), which were pH of the solution, stirring rate, adsorbent dosage, and contact time, were investigated. Results revealed that the optimum conditions for adsorption of Ce(III) to be at a temperature of 300 K and pH 4, with a dosage of 0.02 g. A rapid adsorption process with only 10 min to achieve equilibrium was observed, regardless of the initial concentrations in Ce(III). Chemisorption was suggested as the rate-limiting step because of the correlation between Ce(III) adsorption process with the pseudo-second-order kinetic model. Langmuir model was found to fit well with the experimental isotherm data, and the maximum adsorption capacity of XC beads was 555.6 mg g–1 at 300 K. Based on the thermodynamic study, the enthalpy and entropy recorded were –6.18 kJ mol–1 and 130.36 J K–1 mol–1, respectively. The nature of adsorption was exothermic as more Ce(III) ions were adsorbed at a lower temperature. Ion exchange, ionic attraction, and complexation were identified as the dominant mechanisms involved in Ce(III) adsorption. © 2020 Desalination Publications. All rights reserved.
publisher Desalination Publications
issn 19443994
language English
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