A Wide Adsorption Range Hybrid Material Based on Chitosan, Activated Carbon and Montmorillonite for Water Treatment

Numerous adsorbent materials are developed and are able to face specific types of pollution, but none of them can manage the whole pollution. The purpose of this work is to develop a novel hybrid adsorbent, based on chitosan (CS) biopolymer, clay minerals and activated carbon (AC), having complement...

Full description

Bibliographic Details
Main Authors: Farida Bouyahmed, Min Cai, Laurence Reinert, Laurent Duclaux, Ratan Kumar Dey, Hicham Ben Youcef, Mohammed Lahcini, Fabrice Muller, Sandrine Delpeux-Ouldriane
Format: Article
Language:English
Published: MDPI AG 2018-06-01
Series:C
Subjects:
Online Access:http://www.mdpi.com/2311-5629/4/2/35
id doaj-cead4295253d4fcc8ea1cc6ae65e0716
record_format Article
spelling doaj-cead4295253d4fcc8ea1cc6ae65e07162020-11-24T21:22:13ZengMDPI AGC2311-56292018-06-01423510.3390/c4020035c4020035A Wide Adsorption Range Hybrid Material Based on Chitosan, Activated Carbon and Montmorillonite for Water TreatmentFarida Bouyahmed0Min Cai1Laurence Reinert2Laurent Duclaux3Ratan Kumar Dey4Hicham Ben Youcef5Mohammed Lahcini6Fabrice Muller7Sandrine Delpeux-Ouldriane8CNRS-ICMN, Université d’Orléans, 45071 Orléans, FranceCNRS-ICMN, Université d’Orléans, 45071 Orléans, FranceLCME, Université Savoie Mont Blanc, 73000 Chambéry, FranceLCME, Université Savoie Mont Blanc, 73000 Chambéry, FranceCentre for Applied Chemistry/Centre for Nanotechnology, Central University of Jharkhand, Brambe, Jharkhand, 835205 Ranchi, IndiaMaterials Science and Nano-engineering Department, Mohammed VI Polytechnic University, 43150 Ben Guerir, MoroccoLaboratory of Organometallic and Macromolecular Chemistry—Composites Materials, Faculty of Sciences and Technologies of Marrakech, CADAI AYYAD University, 40000 Marrakech, MoroccoISTO, CNRS-Université d’Orléans-BRGM, 45071 Orléans, FranceCNRS-ICMN, Université d’Orléans, 45071 Orléans, FranceNumerous adsorbent materials are developed and are able to face specific types of pollution, but none of them can manage the whole pollution. The purpose of this work is to develop a novel hybrid adsorbent, based on chitosan (CS) biopolymer, clay minerals and activated carbon (AC), having complementary adsorption properties and achieving a wide-spectrum water decontamination in a single treatment. Hybrid CS beads, containing dispersed clay and AC, were prepared from dispersions of solid adsorbents in a CS solution and its further coagulation in a basic medium. The porosity and the homogeneity of the hybrid beads were characterized by N2 adsorption at 77 K and Cryo-Scanning Electron Microscopy respectively. The interaction between CS and clay was characterized using X-ray diffraction. Water content and the amount of each adsorbent in the hydrogel beads were determined by thermogravimetric analysis. Such a composite material was still porous and presented a wide adsorption spectrum. As shown by their adsorption kinetics, hydrophobic anionic clofibric acid (CBA) and cationic metoprolol (MTP) were well adsorbed on AC containing beads (21 and 26 mg/g), respectively. Clays containing beads showed interesting adsorption properties towards cationic Zn2+ and MTP. The obtained composite beads were able to adsorb all the pollutant types: Zinc cations, and hydrophobic-charged organic molecules, such as pharmaceutical derivatives (clofibric acid and MTP).http://www.mdpi.com/2311-5629/4/2/35adsorptionbiopolymerclay mineralsactivated carbonzinc cationmetoprololclofibric acidwater treatment
collection DOAJ
language English
format Article
sources DOAJ
author Farida Bouyahmed
Min Cai
Laurence Reinert
Laurent Duclaux
Ratan Kumar Dey
Hicham Ben Youcef
Mohammed Lahcini
Fabrice Muller
Sandrine Delpeux-Ouldriane
spellingShingle Farida Bouyahmed
Min Cai
Laurence Reinert
Laurent Duclaux
Ratan Kumar Dey
Hicham Ben Youcef
Mohammed Lahcini
Fabrice Muller
Sandrine Delpeux-Ouldriane
A Wide Adsorption Range Hybrid Material Based on Chitosan, Activated Carbon and Montmorillonite for Water Treatment
C
adsorption
biopolymer
clay minerals
activated carbon
zinc cation
metoprolol
clofibric acid
water treatment
author_facet Farida Bouyahmed
Min Cai
Laurence Reinert
Laurent Duclaux
Ratan Kumar Dey
Hicham Ben Youcef
Mohammed Lahcini
Fabrice Muller
Sandrine Delpeux-Ouldriane
author_sort Farida Bouyahmed
title A Wide Adsorption Range Hybrid Material Based on Chitosan, Activated Carbon and Montmorillonite for Water Treatment
title_short A Wide Adsorption Range Hybrid Material Based on Chitosan, Activated Carbon and Montmorillonite for Water Treatment
title_full A Wide Adsorption Range Hybrid Material Based on Chitosan, Activated Carbon and Montmorillonite for Water Treatment
title_fullStr A Wide Adsorption Range Hybrid Material Based on Chitosan, Activated Carbon and Montmorillonite for Water Treatment
title_full_unstemmed A Wide Adsorption Range Hybrid Material Based on Chitosan, Activated Carbon and Montmorillonite for Water Treatment
title_sort wide adsorption range hybrid material based on chitosan, activated carbon and montmorillonite for water treatment
publisher MDPI AG
series C
issn 2311-5629
publishDate 2018-06-01
description Numerous adsorbent materials are developed and are able to face specific types of pollution, but none of them can manage the whole pollution. The purpose of this work is to develop a novel hybrid adsorbent, based on chitosan (CS) biopolymer, clay minerals and activated carbon (AC), having complementary adsorption properties and achieving a wide-spectrum water decontamination in a single treatment. Hybrid CS beads, containing dispersed clay and AC, were prepared from dispersions of solid adsorbents in a CS solution and its further coagulation in a basic medium. The porosity and the homogeneity of the hybrid beads were characterized by N2 adsorption at 77 K and Cryo-Scanning Electron Microscopy respectively. The interaction between CS and clay was characterized using X-ray diffraction. Water content and the amount of each adsorbent in the hydrogel beads were determined by thermogravimetric analysis. Such a composite material was still porous and presented a wide adsorption spectrum. As shown by their adsorption kinetics, hydrophobic anionic clofibric acid (CBA) and cationic metoprolol (MTP) were well adsorbed on AC containing beads (21 and 26 mg/g), respectively. Clays containing beads showed interesting adsorption properties towards cationic Zn2+ and MTP. The obtained composite beads were able to adsorb all the pollutant types: Zinc cations, and hydrophobic-charged organic molecules, such as pharmaceutical derivatives (clofibric acid and MTP).
topic adsorption
biopolymer
clay minerals
activated carbon
zinc cation
metoprolol
clofibric acid
water treatment
url http://www.mdpi.com/2311-5629/4/2/35
work_keys_str_mv AT faridabouyahmed awideadsorptionrangehybridmaterialbasedonchitosanactivatedcarbonandmontmorilloniteforwatertreatment
AT mincai awideadsorptionrangehybridmaterialbasedonchitosanactivatedcarbonandmontmorilloniteforwatertreatment
AT laurencereinert awideadsorptionrangehybridmaterialbasedonchitosanactivatedcarbonandmontmorilloniteforwatertreatment
AT laurentduclaux awideadsorptionrangehybridmaterialbasedonchitosanactivatedcarbonandmontmorilloniteforwatertreatment
AT ratankumardey awideadsorptionrangehybridmaterialbasedonchitosanactivatedcarbonandmontmorilloniteforwatertreatment
AT hichambenyoucef awideadsorptionrangehybridmaterialbasedonchitosanactivatedcarbonandmontmorilloniteforwatertreatment
AT mohammedlahcini awideadsorptionrangehybridmaterialbasedonchitosanactivatedcarbonandmontmorilloniteforwatertreatment
AT fabricemuller awideadsorptionrangehybridmaterialbasedonchitosanactivatedcarbonandmontmorilloniteforwatertreatment
AT sandrinedelpeuxouldriane awideadsorptionrangehybridmaterialbasedonchitosanactivatedcarbonandmontmorilloniteforwatertreatment
AT faridabouyahmed wideadsorptionrangehybridmaterialbasedonchitosanactivatedcarbonandmontmorilloniteforwatertreatment
AT mincai wideadsorptionrangehybridmaterialbasedonchitosanactivatedcarbonandmontmorilloniteforwatertreatment
AT laurencereinert wideadsorptionrangehybridmaterialbasedonchitosanactivatedcarbonandmontmorilloniteforwatertreatment
AT laurentduclaux wideadsorptionrangehybridmaterialbasedonchitosanactivatedcarbonandmontmorilloniteforwatertreatment
AT ratankumardey wideadsorptionrangehybridmaterialbasedonchitosanactivatedcarbonandmontmorilloniteforwatertreatment
AT hichambenyoucef wideadsorptionrangehybridmaterialbasedonchitosanactivatedcarbonandmontmorilloniteforwatertreatment
AT mohammedlahcini wideadsorptionrangehybridmaterialbasedonchitosanactivatedcarbonandmontmorilloniteforwatertreatment
AT fabricemuller wideadsorptionrangehybridmaterialbasedonchitosanactivatedcarbonandmontmorilloniteforwatertreatment
AT sandrinedelpeuxouldriane wideadsorptionrangehybridmaterialbasedonchitosanactivatedcarbonandmontmorilloniteforwatertreatment
_version_ 1725996905687678976