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(Reference retrieved automatically from Web of Science through information on FAPESP grant and its corresponding number as mentioned in the publication by the authors.)

Removal of azo dyes in aqueous solutions using magnetized and chemically modified chitosan beads

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Author(s):
Muedas-Taipe, Golfer [1, 2] ; Maza Mejia, Ily M. [1, 2] ; Santillan, Fatima A. [2] ; Velasquez, Carlos J. [1] ; Asencios, Yvan J. O. [3, 4]
Total Authors: 5
Affiliation:
[1] Univ Lima, Fac Ingn & Arquitectura, Av Javier Prado Este 4600, Lima - Peru
[2] Univ Nacl Ingn, Fac Ciencias, Lab Invest Electroquim Aplicada, Av Tupac Amaru 210, Lima - Peru
[3] Fed Univ ABC UFABC, Ctr Nat Sci & Humanities, Av Estados 5001, BR-09210580 Santo Andre, SP - Brazil
[4] Fed Univ Sao Paulo UNIFESP, Inst Marine Sci, Rua Maria Maximo 168, BR-11030100 Santos, SP - Brazil
Total Affiliations: 4
Document type: Journal article
Source: Materials Chemistry and Physics; v. 256, DEC 1 2020.
Web of Science Citations: 0
Abstract

Azo dyes in wastewater coming from textile industry are detrimental, toxic, and affect the human health; therefore efficient wastewater treatments are needed. To contribute to the solution to this problem, in this paper materials based on chitosan beads are studied. Magnetized chitosan beads (MC), MC coated with tetraethyl orthosilicate TEOS (TMC) and MC modified with TEOS and ethylenediamine (ETMC) were synthesized and tested as adsorbents for the removal of two azo dyes: Cibacron Brilliant Yellow 3G-P (CBY) and Cibacron Brilliant Red 3B-A (CBR) in aqueous solutions. The materials were characterized by FTIR, VSM, Raman, SEM, EDX, TGA and XRD. During the adsorption of CBY and CBR dyes in aqueous solutions using the MC, TMC and ETMC beads, it was found that the maximum adsorption capacity (Q(m), mg.g(-1)) of the chitosan beads occurred at pH 2 for both azo dyes. The equilibrium experiments for adsorption of CBY fitted well with the Langmuir isotherm model, whereas the CBR adsorption fitted well with Freundlich isotherm model. The maximum adsorption capacity of the ETMC beads was 179.45 mg.g(-1) for CBY, and 377.60 mg.g(-1) for CBR. The adsorption kinetic data of CBY and CBR using the MC, TMC and ETMC beads were better adjusted by the pseudo-second-order kinetic model. The results of the competitive adsorption test for a binary mixture (ratio = 1:1 of CBY:CBR in the mixture) indicated that the ETMC beads recorded the best removal efficiency of the CBY dye (99.1%). Our results indicate, the ETMC material is a promising adsorbent for optimal removal of azo dyes in aqueous solutions. (AU)

FAPESP's process: 14/24940-5 - Development of solid-catalysts based on semiconductor oxides for the hydrogen production from water splitting
Grantee:Yvan Jesus Olortiga Asencios
Support Opportunities: Regular Research Grants