Removal Efficiency of Insoluble β-Cyclodextrin Polymer from Water–Soluble Carcinogenic Direct Azo Dyes

Author:

Moulahcene Lamia123,Skiba Mohamed1ORCID,Milon Nicolas1,Fadila Hammache24,Bounoure Frédéric1,Lahiani-Skiba Malika1

Affiliation:

1. Galenic Pharmaceutical Laboratory, Normandie University, UNIROUEN, NorDICInserm U1239, UFR Medicine and Pharmacy, Rouen University, 22 Bd Gambetta, F-76183 Rouen, France

2. Laboratory of Membrane Processes and of Separation and Recovery Techniques, Faculty of Technology, Abderrahmane-Mira University, Route de Targua Ouzemmour, Bejaia DZ-06000, Algeria

3. Departement of Process Engeneering Technology, Institute of Technology, Akli Mohand Oulhadj University of Bouira, Bouira 10000, Algeria

4. Departement of Process Engeneering Technology, Faculty of Applied Science, Akli Mohand Oulhadj University of Bouira, Bouira 10000, Algeria

Abstract

A batch system was applied to study the adsorption of three dyes (methyl violet, eriochrom black T and helianthin) from aqueous solution onto β-cyclodextrin polymer, synthesized by using citric acid as a cross linking agent. This polymer lets to adsorb only methyl violet for this effect, several operator variables was checked only with this kind of dye, the removal efficiently increases with increase in adsorbent amount; elevation of temperature lets also to improve the dye adsorption; ionic strength has not effect on dye adsorption process, for the pH we have remarked a slight decrease in removal efficiently with increasing of pH values. Equilibrium study was investigated by applying three models (Langumir, Frendlich and Temkin), results show that Langumir isotherm is the appropriate model. FTIR spectra show the complex inclusion formation which dominates the adsorption mechanism, confirmed by the absence of characteristic peaks of methyl violet in ß-cyclodextrin after adsorption.

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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