A novel chitosan-alginate@Fe/Mn mixed oxide nanocomposite for highly efficient removal of Cr (VI) from wastewater: Experiment and adsorption mechanism

In this study, the synthesis and experimental theoretical evaluation of a new chitosan/alginate/hydrozyapatite nanocomposite doped with Mn2 and Fe2O3 for Cr removal was reported. The physicochemical properties of the obtained materials were analyzed using the following methods: SEM-EDX, XRD, FTIR, X...

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Published in:INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES
Main Authors: Alqarni, Laila S.; Algethami, Jari S.; Billah, Rachid E. L. Kaim; Alorabi, Ali Q.; Alnaam, Yaser A.; Algethami, Faisal K.; Bahsis, Lahoucine; Jawad, Ali H.; Wasilewska, Malgorzata; Lopez-Maldonado, Eduardo Alberto
Format: Article
Language:English
Published: ELSEVIER 2024
Subjects:
Online Access:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001225067100001
author Alqarni
Laila S.; Algethami
Jari S.; Billah
Rachid E. L. Kaim; Alorabi
Ali Q.; Alnaam
Yaser A.; Algethami
Faisal K.; Bahsis
Lahoucine; Jawad
Ali H.; Wasilewska
Malgorzata; Lopez-Maldonado
Eduardo Alberto
spellingShingle Alqarni
Laila S.; Algethami
Jari S.; Billah
Rachid E. L. Kaim; Alorabi
Ali Q.; Alnaam
Yaser A.; Algethami
Faisal K.; Bahsis
Lahoucine; Jawad
Ali H.; Wasilewska
Malgorzata; Lopez-Maldonado
Eduardo Alberto
A novel chitosan-alginate@Fe/Mn mixed oxide nanocomposite for highly efficient removal of Cr (VI) from wastewater: Experiment and adsorption mechanism
Biochemistry & Molecular Biology; Chemistry; Polymer Science
author_facet Alqarni
Laila S.; Algethami
Jari S.; Billah
Rachid E. L. Kaim; Alorabi
Ali Q.; Alnaam
Yaser A.; Algethami
Faisal K.; Bahsis
Lahoucine; Jawad
Ali H.; Wasilewska
Malgorzata; Lopez-Maldonado
Eduardo Alberto
author_sort Alqarni
spelling Alqarni, Laila S.; Algethami, Jari S.; Billah, Rachid E. L. Kaim; Alorabi, Ali Q.; Alnaam, Yaser A.; Algethami, Faisal K.; Bahsis, Lahoucine; Jawad, Ali H.; Wasilewska, Malgorzata; Lopez-Maldonado, Eduardo Alberto
A novel chitosan-alginate@Fe/Mn mixed oxide nanocomposite for highly efficient removal of Cr (VI) from wastewater: Experiment and adsorption mechanism
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES
English
Article
In this study, the synthesis and experimental theoretical evaluation of a new chitosan/alginate/hydrozyapatite nanocomposite doped with Mn2 and Fe2O3 for Cr removal was reported. The physicochemical properties of the obtained materials were analyzed using the following methods: SEM-EDX, XRD, FTIR, XPS, pH drift measurements, and thermal analysis. The adsorption properties were estimated based on equilibrium and adsorption kinetics measurements. The Langmuir, Freundlich and Temkin isotherms were applied to analyze the equilibrium data. The thermodynamic analysis of adsorption isotherms was performed. A number of equations and kinetic models were used to describe the adsorption rate data, including pseudo -first (PFOE) and pseudo -second (PSOE) order kinetic equations. The obtained test results show that the synthesized biomaterial, compared to pure chitosan, is characterized by greater resistance to high temperatures. Moreover, this biomaterial had excellent adsorption properties. For the adsorption of Cr (VI), the equilibrium state was reached after 120 min, and the sorption capacity was 455.9 mg/g. In addition, DFT calculations and NCI analyses were performed to get more light on the adsorption mechanism of Cr (VI) on the prepared biocomposite.
ELSEVIER
0141-8130
1879-0003
2024
263

10.1016/j.ijbiomac.2024.129989
Biochemistry & Molecular Biology; Chemistry; Polymer Science

WOS:001225067100001
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001225067100001
title A novel chitosan-alginate@Fe/Mn mixed oxide nanocomposite for highly efficient removal of Cr (VI) from wastewater: Experiment and adsorption mechanism
title_short A novel chitosan-alginate@Fe/Mn mixed oxide nanocomposite for highly efficient removal of Cr (VI) from wastewater: Experiment and adsorption mechanism
title_full A novel chitosan-alginate@Fe/Mn mixed oxide nanocomposite for highly efficient removal of Cr (VI) from wastewater: Experiment and adsorption mechanism
title_fullStr A novel chitosan-alginate@Fe/Mn mixed oxide nanocomposite for highly efficient removal of Cr (VI) from wastewater: Experiment and adsorption mechanism
title_full_unstemmed A novel chitosan-alginate@Fe/Mn mixed oxide nanocomposite for highly efficient removal of Cr (VI) from wastewater: Experiment and adsorption mechanism
title_sort A novel chitosan-alginate@Fe/Mn mixed oxide nanocomposite for highly efficient removal of Cr (VI) from wastewater: Experiment and adsorption mechanism
container_title INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES
language English
format Article
description In this study, the synthesis and experimental theoretical evaluation of a new chitosan/alginate/hydrozyapatite nanocomposite doped with Mn2 and Fe2O3 for Cr removal was reported. The physicochemical properties of the obtained materials were analyzed using the following methods: SEM-EDX, XRD, FTIR, XPS, pH drift measurements, and thermal analysis. The adsorption properties were estimated based on equilibrium and adsorption kinetics measurements. The Langmuir, Freundlich and Temkin isotherms were applied to analyze the equilibrium data. The thermodynamic analysis of adsorption isotherms was performed. A number of equations and kinetic models were used to describe the adsorption rate data, including pseudo -first (PFOE) and pseudo -second (PSOE) order kinetic equations. The obtained test results show that the synthesized biomaterial, compared to pure chitosan, is characterized by greater resistance to high temperatures. Moreover, this biomaterial had excellent adsorption properties. For the adsorption of Cr (VI), the equilibrium state was reached after 120 min, and the sorption capacity was 455.9 mg/g. In addition, DFT calculations and NCI analyses were performed to get more light on the adsorption mechanism of Cr (VI) on the prepared biocomposite.
publisher ELSEVIER
issn 0141-8130
1879-0003
publishDate 2024
container_volume 263
container_issue
doi_str_mv 10.1016/j.ijbiomac.2024.129989
topic Biochemistry & Molecular Biology; Chemistry; Polymer Science
topic_facet Biochemistry & Molecular Biology; Chemistry; Polymer Science
accesstype
id WOS:001225067100001
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001225067100001
record_format wos
collection Web of Science (WoS)
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