Investigation on adsorption capacity of TiO2-P25 nanoparticles in the removal of a mono-azo dye from aqueous solution: A comprehensive isotherm analysis

In this work TiO2-P25 nanoparticles with high surface area have been used as adsorbent for the removal of C.I Acid Red 27 (AR27), as an organic contaminant from aqueous solution. Characteristics of phases and crystallite size of TiO2-P25 nanoparticles were achieved from XRD and the surface...

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Main Authors: Behnajady Mohammad A., Yavari Shahrzad, Modirshahla Nasser
Format: Article
Language:English
Published: Association of the Chemical Engineers of Serbia 2014-01-01
Series:Chemical Industry and Chemical Engineering Quarterly
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/1451-9372/2014/1451-93721200105B.pdf
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spelling doaj-d3d3f51d411c41da97fba9aa0d7172052020-11-24T20:57:11ZengAssociation of the Chemical Engineers of SerbiaChemical Industry and Chemical Engineering Quarterly1451-93722217-74342014-01-012019710710.2298/CICEQ120610105B1451-93721200105BInvestigation on adsorption capacity of TiO2-P25 nanoparticles in the removal of a mono-azo dye from aqueous solution: A comprehensive isotherm analysisBehnajady Mohammad A.0Yavari Shahrzad1Modirshahla Nasser2Department of Chemistry, Faculty of Science, Tabriz Branch, Islamic Azad University, Tabriz, I.R. IranDepartment of Chemistry, Faculty of Science, Tabriz Branch, Islamic Azad University, Tabriz, I.R. IranDepartment of Chemistry, Faculty of Science, Tabriz Branch, Islamic Azad University, Tabriz, I.R. IranIn this work TiO2-P25 nanoparticles with high surface area have been used as adsorbent for the removal of C.I Acid Red 27 (AR27), as an organic contaminant from aqueous solution. Characteristics of phases and crystallite size of TiO2-P25 nanoparticles were achieved from XRD and the surface area and pore size distribution were obtained from BET and BJH techniques. TiO2-P25 nanoparticles with almost 80% anatase and 20% rutile phases, the average crystallite size of 18 nm, have specific surface area of 56.82 m2 g-1. The effect of various parameters like initial AR27 concentration, pH, contact time and adsorbent dosage has been carried out in order to find desired adsorption conditions. The desired pH for adsorption of AR27 onto TiO2-P25 nanoparticles was 3. The equilibrium data were analyzed with various 2-, 3- and 4-parameter isotherm models. Equilibrium data fitted very well by the 4-parameter Fritz-Schluender model. Results of adsorption kinetics study indicated that the pseudo-second order kinetics provided the best fit with correlation coefficients close to unity.http://www.doiserbia.nb.rs/img/doi/1451-9372/2014/1451-93721200105B.pdfadsorptionTiO2-P25 nanoparticlesisotherm analysisnonlinear regression analysiskinetics
collection DOAJ
language English
format Article
sources DOAJ
author Behnajady Mohammad A.
Yavari Shahrzad
Modirshahla Nasser
spellingShingle Behnajady Mohammad A.
Yavari Shahrzad
Modirshahla Nasser
Investigation on adsorption capacity of TiO2-P25 nanoparticles in the removal of a mono-azo dye from aqueous solution: A comprehensive isotherm analysis
Chemical Industry and Chemical Engineering Quarterly
adsorption
TiO2-P25 nanoparticles
isotherm analysis
nonlinear regression analysis
kinetics
author_facet Behnajady Mohammad A.
Yavari Shahrzad
Modirshahla Nasser
author_sort Behnajady Mohammad A.
title Investigation on adsorption capacity of TiO2-P25 nanoparticles in the removal of a mono-azo dye from aqueous solution: A comprehensive isotherm analysis
title_short Investigation on adsorption capacity of TiO2-P25 nanoparticles in the removal of a mono-azo dye from aqueous solution: A comprehensive isotherm analysis
title_full Investigation on adsorption capacity of TiO2-P25 nanoparticles in the removal of a mono-azo dye from aqueous solution: A comprehensive isotherm analysis
title_fullStr Investigation on adsorption capacity of TiO2-P25 nanoparticles in the removal of a mono-azo dye from aqueous solution: A comprehensive isotherm analysis
title_full_unstemmed Investigation on adsorption capacity of TiO2-P25 nanoparticles in the removal of a mono-azo dye from aqueous solution: A comprehensive isotherm analysis
title_sort investigation on adsorption capacity of tio2-p25 nanoparticles in the removal of a mono-azo dye from aqueous solution: a comprehensive isotherm analysis
publisher Association of the Chemical Engineers of Serbia
series Chemical Industry and Chemical Engineering Quarterly
issn 1451-9372
2217-7434
publishDate 2014-01-01
description In this work TiO2-P25 nanoparticles with high surface area have been used as adsorbent for the removal of C.I Acid Red 27 (AR27), as an organic contaminant from aqueous solution. Characteristics of phases and crystallite size of TiO2-P25 nanoparticles were achieved from XRD and the surface area and pore size distribution were obtained from BET and BJH techniques. TiO2-P25 nanoparticles with almost 80% anatase and 20% rutile phases, the average crystallite size of 18 nm, have specific surface area of 56.82 m2 g-1. The effect of various parameters like initial AR27 concentration, pH, contact time and adsorbent dosage has been carried out in order to find desired adsorption conditions. The desired pH for adsorption of AR27 onto TiO2-P25 nanoparticles was 3. The equilibrium data were analyzed with various 2-, 3- and 4-parameter isotherm models. Equilibrium data fitted very well by the 4-parameter Fritz-Schluender model. Results of adsorption kinetics study indicated that the pseudo-second order kinetics provided the best fit with correlation coefficients close to unity.
topic adsorption
TiO2-P25 nanoparticles
isotherm analysis
nonlinear regression analysis
kinetics
url http://www.doiserbia.nb.rs/img/doi/1451-9372/2014/1451-93721200105B.pdf
work_keys_str_mv AT behnajadymohammada investigationonadsorptioncapacityoftio2p25nanoparticlesintheremovalofamonoazodyefromaqueoussolutionacomprehensiveisothermanalysis
AT yavarishahrzad investigationonadsorptioncapacityoftio2p25nanoparticlesintheremovalofamonoazodyefromaqueoussolutionacomprehensiveisothermanalysis
AT modirshahlanasser investigationonadsorptioncapacityoftio2p25nanoparticlesintheremovalofamonoazodyefromaqueoussolutionacomprehensiveisothermanalysis
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