Study of Adsorption Mechanism of Congo Red on Graphene Oxide/PAMAM Nanocomposite

Graphene oxide/poly(amidoamine) (GO/PAMAM) nanocomposite adsorbed high quantities of congo red (CR) anionic dye in 0.1 M NaCl solution, with the maximum adsorption capacity of 198 mg·g−1. The kinetics and thermodynamics of adsorption were investigated to elucidate the effects of pH, temperature, sha...

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Main Authors: Mohammad Rafi, Babak Samiey, Chil-Hung Cheng
Format: Article
Language:English
Published: MDPI AG 2018-03-01
Series:Materials
Subjects:
Online Access:http://www.mdpi.com/1996-1944/11/4/496
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spelling doaj-7c72cde770544a1a8bfb2c1ed58628962020-11-24T23:48:17ZengMDPI AGMaterials1996-19442018-03-0111449610.3390/ma11040496ma11040496Study of Adsorption Mechanism of Congo Red on Graphene Oxide/PAMAM NanocompositeMohammad Rafi0Babak Samiey1Chil-Hung Cheng2Department of Chemistry, Faculty of Science, Lorestan University, Khoramabad 68137-17133, Lorestan, IranDepartment of Chemistry, Faculty of Science, Lorestan University, Khoramabad 68137-17133, Lorestan, IranDepartment of Chemical Engineering, Ryerson University, Toronto, ON M5B 2K3, CanadaGraphene oxide/poly(amidoamine) (GO/PAMAM) nanocomposite adsorbed high quantities of congo red (CR) anionic dye in 0.1 M NaCl solution, with the maximum adsorption capacity of 198 mg·g−1. The kinetics and thermodynamics of adsorption were investigated to elucidate the effects of pH, temperature, shaking rate, ionic strength, and contact time. Kinetic data were analyzed by the KASRA model and the KASRA, ISO, and pore-diffusion equations. Adsorption adsorption isotherms were studied by the ARIAN model and the Henry, Langmuir, and Temkin equations. It was shown that adsorption sites of GO/PAMAM at experimental conditions were phenolic hydroxyl groups of GO sheets and terminal amine groups of PAMAM dendrimer. Analysis of kinetic data indicated that amine sites were located on the surface, and that hydroxyl sites were placed in the pores of adsorbent. CR molecules interacted with the adsorption sites via hydrogen bonds. The molecules were adsorbed firstly on the amine sites, and then on the internal hydroxyl sites. Adsorption kinetic parameters indicated that the interaction of CR to the –NH3+ sites was the rate-controlling step of adsorption of CR on this site and adsorption activation energies calculated for different parts of this step. On the other hand, kinetic parameters showed that the intraparticle diffusion was the rate-controlling step during the interaction of CR molecules to –OH sites and activation energy of this step was not calculable. Finally, the used GO/PAMAM was completely regenerated by using ethylenediamine.http://www.mdpi.com/1996-1944/11/4/496graphene oxide/poly(amidoamine)congo redadsorptionKASRA modelARIAN modelISO equation
collection DOAJ
language English
format Article
sources DOAJ
author Mohammad Rafi
Babak Samiey
Chil-Hung Cheng
spellingShingle Mohammad Rafi
Babak Samiey
Chil-Hung Cheng
Study of Adsorption Mechanism of Congo Red on Graphene Oxide/PAMAM Nanocomposite
Materials
graphene oxide/poly(amidoamine)
congo red
adsorption
KASRA model
ARIAN model
ISO equation
author_facet Mohammad Rafi
Babak Samiey
Chil-Hung Cheng
author_sort Mohammad Rafi
title Study of Adsorption Mechanism of Congo Red on Graphene Oxide/PAMAM Nanocomposite
title_short Study of Adsorption Mechanism of Congo Red on Graphene Oxide/PAMAM Nanocomposite
title_full Study of Adsorption Mechanism of Congo Red on Graphene Oxide/PAMAM Nanocomposite
title_fullStr Study of Adsorption Mechanism of Congo Red on Graphene Oxide/PAMAM Nanocomposite
title_full_unstemmed Study of Adsorption Mechanism of Congo Red on Graphene Oxide/PAMAM Nanocomposite
title_sort study of adsorption mechanism of congo red on graphene oxide/pamam nanocomposite
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2018-03-01
description Graphene oxide/poly(amidoamine) (GO/PAMAM) nanocomposite adsorbed high quantities of congo red (CR) anionic dye in 0.1 M NaCl solution, with the maximum adsorption capacity of 198 mg·g−1. The kinetics and thermodynamics of adsorption were investigated to elucidate the effects of pH, temperature, shaking rate, ionic strength, and contact time. Kinetic data were analyzed by the KASRA model and the KASRA, ISO, and pore-diffusion equations. Adsorption adsorption isotherms were studied by the ARIAN model and the Henry, Langmuir, and Temkin equations. It was shown that adsorption sites of GO/PAMAM at experimental conditions were phenolic hydroxyl groups of GO sheets and terminal amine groups of PAMAM dendrimer. Analysis of kinetic data indicated that amine sites were located on the surface, and that hydroxyl sites were placed in the pores of adsorbent. CR molecules interacted with the adsorption sites via hydrogen bonds. The molecules were adsorbed firstly on the amine sites, and then on the internal hydroxyl sites. Adsorption kinetic parameters indicated that the interaction of CR to the –NH3+ sites was the rate-controlling step of adsorption of CR on this site and adsorption activation energies calculated for different parts of this step. On the other hand, kinetic parameters showed that the intraparticle diffusion was the rate-controlling step during the interaction of CR molecules to –OH sites and activation energy of this step was not calculable. Finally, the used GO/PAMAM was completely regenerated by using ethylenediamine.
topic graphene oxide/poly(amidoamine)
congo red
adsorption
KASRA model
ARIAN model
ISO equation
url http://www.mdpi.com/1996-1944/11/4/496
work_keys_str_mv AT mohammadrafi studyofadsorptionmechanismofcongoredongrapheneoxidepamamnanocomposite
AT babaksamiey studyofadsorptionmechanismofcongoredongrapheneoxidepamamnanocomposite
AT chilhungcheng studyofadsorptionmechanismofcongoredongrapheneoxidepamamnanocomposite
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