Phosphate Adsorption onto Chitosan-Based Hydrogel Microspheres

Phosphate discharges are closely linked to eutrophication, algal and cyanobacterial blooms in natural water bodies. Chitosan hydrogel microspheres (CHMs) were used as an adsorbent to remove phosphate (PO 4 3– ) from aqueous solution. The CHMs were prepared by a sequential methodology consisting of s...

Full description

Bibliographic Details
Main Authors: Jean-Francois Leduc, Roland Leduc, Hubert Cabana
Format: Article
Language:English
Published: Hindawi - SAGE Publishing 2014-07-01
Series:Adsorption Science & Technology
Online Access:https://doi.org/10.1260/0263-6174.32.7.557
id doaj-3579c0fb3ddf4f0681a41c4acdc51a32
record_format Article
spelling doaj-3579c0fb3ddf4f0681a41c4acdc51a322021-04-02T11:44:43ZengHindawi - SAGE PublishingAdsorption Science & Technology0263-61742048-40382014-07-013210.1260/0263-6174.32.7.557Phosphate Adsorption onto Chitosan-Based Hydrogel MicrospheresJean-Francois LeducRoland LeducHubert CabanaPhosphate discharges are closely linked to eutrophication, algal and cyanobacterial blooms in natural water bodies. Chitosan hydrogel microspheres (CHMs) were used as an adsorbent to remove phosphate (PO 4 3– ) from aqueous solution. The CHMs were prepared by a sequential methodology consisting of spraying and gelation processes. The physicochemical properties of the hydrogel microspheres were determined by size and zeta-potential analysis. Batch experiments, to investigate the kinetics of phosphate adsorption onto CHMs, show that equilibrum was reached within 30 minutes. The kinetic model was pseudo-second-order (R 2 > 0.999). The effect of varying operating conditions (initial anions concentration, adsorbent loading, pH and temperature) on the experiments were also studied. According to the Boyd model, the rate of adsorption is controlled by the diffusion in the boundary layer. The Langmuir, Freundlich and Dubinin–Radushkhevic (D–R) adsorption models were applied to describe the equilibrium isotherms, and the data correlated better with the Freundlich model (R 2 = 0.975). The mean free-energy values (obtained from the D–R model) indicate that the adsorption was physical in nature. The values of ΔG and ΔH demonstrated the spontaneous and exothermic nature of the reaction and the negative value of ΔS indicates a decrease in entropy.https://doi.org/10.1260/0263-6174.32.7.557
collection DOAJ
language English
format Article
sources DOAJ
author Jean-Francois Leduc
Roland Leduc
Hubert Cabana
spellingShingle Jean-Francois Leduc
Roland Leduc
Hubert Cabana
Phosphate Adsorption onto Chitosan-Based Hydrogel Microspheres
Adsorption Science & Technology
author_facet Jean-Francois Leduc
Roland Leduc
Hubert Cabana
author_sort Jean-Francois Leduc
title Phosphate Adsorption onto Chitosan-Based Hydrogel Microspheres
title_short Phosphate Adsorption onto Chitosan-Based Hydrogel Microspheres
title_full Phosphate Adsorption onto Chitosan-Based Hydrogel Microspheres
title_fullStr Phosphate Adsorption onto Chitosan-Based Hydrogel Microspheres
title_full_unstemmed Phosphate Adsorption onto Chitosan-Based Hydrogel Microspheres
title_sort phosphate adsorption onto chitosan-based hydrogel microspheres
publisher Hindawi - SAGE Publishing
series Adsorption Science & Technology
issn 0263-6174
2048-4038
publishDate 2014-07-01
description Phosphate discharges are closely linked to eutrophication, algal and cyanobacterial blooms in natural water bodies. Chitosan hydrogel microspheres (CHMs) were used as an adsorbent to remove phosphate (PO 4 3– ) from aqueous solution. The CHMs were prepared by a sequential methodology consisting of spraying and gelation processes. The physicochemical properties of the hydrogel microspheres were determined by size and zeta-potential analysis. Batch experiments, to investigate the kinetics of phosphate adsorption onto CHMs, show that equilibrum was reached within 30 minutes. The kinetic model was pseudo-second-order (R 2 > 0.999). The effect of varying operating conditions (initial anions concentration, adsorbent loading, pH and temperature) on the experiments were also studied. According to the Boyd model, the rate of adsorption is controlled by the diffusion in the boundary layer. The Langmuir, Freundlich and Dubinin–Radushkhevic (D–R) adsorption models were applied to describe the equilibrium isotherms, and the data correlated better with the Freundlich model (R 2 = 0.975). The mean free-energy values (obtained from the D–R model) indicate that the adsorption was physical in nature. The values of ΔG and ΔH demonstrated the spontaneous and exothermic nature of the reaction and the negative value of ΔS indicates a decrease in entropy.
url https://doi.org/10.1260/0263-6174.32.7.557
work_keys_str_mv AT jeanfrancoisleduc phosphateadsorptionontochitosanbasedhydrogelmicrospheres
AT rolandleduc phosphateadsorptionontochitosanbasedhydrogelmicrospheres
AT hubertcabana phosphateadsorptionontochitosanbasedhydrogelmicrospheres
_version_ 1721571553797210112