Nanocomposite Fe-Co-V/Zeolite: Highly Efficient Composite for Removal of Methyl Orange Dye

Background: In recent years, the dye industry has rapidly been developed. Dyes are one in all the foremost dangerous groups of chemical compounds found in industrial effluents, which are of considerable importance for reasons like reduced light permeability and therefore the subsequent disruption of...

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Main Authors: Abdolreza Karbul, Mohammad Kazem Mohammadi, Reza Jalilzadeh Yengejeh, Forouzan Farrokhian
Format: Article
Language:English
Published: Kurdistan University of Medical Sciences 2022-02-01
Series:Journal of Advances in Environmental Health Research
Subjects:
Online Access:http://jaehr.muk.ac.ir/article_145248_a7fba8d146a2389f588680c987e49bd4.pdf
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author Abdolreza Karbul
Mohammad Kazem Mohammadi
Reza Jalilzadeh Yengejeh
Forouzan Farrokhian
author_facet Abdolreza Karbul
Mohammad Kazem Mohammadi
Reza Jalilzadeh Yengejeh
Forouzan Farrokhian
author_sort Abdolreza Karbul
collection DOAJ
description Background: In recent years, the dye industry has rapidly been developed. Dyes are one in all the foremost dangerous groups of chemical compounds found in industrial effluents, which are of considerable importance for reasons like reduced light permeability and therefore the subsequent disruption of the method of photosynthesis in water sources. This study was performed to remove dye using Fe-Co-V /Zeolite from a synthetic wastewater.Methods: After chemical synthesis of the nanocomposite, its structure was studied by spectroscopic techniques. The experiments were performed under different pH values (3-11), contact times (5-50 min), absorbent dose (0.5-0.6g), stirring speed (240-60 rpm), and different concentrations.Results: The results showed that the optimal and final conditions affecting the removal of methyl orange dye in the most suitable conditions for 200 mL of the solution with a concentration of 20 mg/L at pH equal to 3, contact time 20 min, adsorbent dose 0.2 g, jar speed 180 rpm and temperature 25°C, which finally with the application of the optimal data, at a concentration of 2.5 mg/L, the best efficiency was obtained. The examination of isotherm diagrams and isotherm coefficients showed that the adsorption process follows the Freundlich equation.Conclusion: According to the obtained results and physical and chemical properties of the synthesized nanocomposite, it can be used to remove pollutants from the environment such as wastewater and air.
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spelling doaj.art-0b0ce98e1e074026b6ca3ae83b71b94c2022-12-22T04:34:50ZengKurdistan University of Medical SciencesJournal of Advances in Environmental Health Research2345-39902022-02-0110214916010.32598/JAEHR.10.2.1246145248Nanocomposite Fe-Co-V/Zeolite: Highly Efficient Composite for Removal of Methyl Orange DyeAbdolreza Karbul0Mohammad Kazem Mohammadi1Reza Jalilzadeh Yengejeh2Forouzan Farrokhian3Department of Environmental Engineering, Ahvaz Branch, Islamic Azad University, Ahvaz, Iran.Department of Chemistry, Ahvaz Branch, Islamic Azad University, Ahvaz, Iran.Department of Environmental Engineering, Ahvaz Branch, Islamic Azad University, Ahvaz, Iran.Department of Environment, Ahvaz Branch, Islamic Azad University, Ahvaz, Iran.Background: In recent years, the dye industry has rapidly been developed. Dyes are one in all the foremost dangerous groups of chemical compounds found in industrial effluents, which are of considerable importance for reasons like reduced light permeability and therefore the subsequent disruption of the method of photosynthesis in water sources. This study was performed to remove dye using Fe-Co-V /Zeolite from a synthetic wastewater.Methods: After chemical synthesis of the nanocomposite, its structure was studied by spectroscopic techniques. The experiments were performed under different pH values (3-11), contact times (5-50 min), absorbent dose (0.5-0.6g), stirring speed (240-60 rpm), and different concentrations.Results: The results showed that the optimal and final conditions affecting the removal of methyl orange dye in the most suitable conditions for 200 mL of the solution with a concentration of 20 mg/L at pH equal to 3, contact time 20 min, adsorbent dose 0.2 g, jar speed 180 rpm and temperature 25°C, which finally with the application of the optimal data, at a concentration of 2.5 mg/L, the best efficiency was obtained. The examination of isotherm diagrams and isotherm coefficients showed that the adsorption process follows the Freundlich equation.Conclusion: According to the obtained results and physical and chemical properties of the synthesized nanocomposite, it can be used to remove pollutants from the environment such as wastewater and air.http://jaehr.muk.ac.ir/article_145248_a7fba8d146a2389f588680c987e49bd4.pdfmethyl orangenanocompositesenvironmentwastewater
spellingShingle Abdolreza Karbul
Mohammad Kazem Mohammadi
Reza Jalilzadeh Yengejeh
Forouzan Farrokhian
Nanocomposite Fe-Co-V/Zeolite: Highly Efficient Composite for Removal of Methyl Orange Dye
Journal of Advances in Environmental Health Research
methyl orange
nanocomposites
environment
wastewater
title Nanocomposite Fe-Co-V/Zeolite: Highly Efficient Composite for Removal of Methyl Orange Dye
title_full Nanocomposite Fe-Co-V/Zeolite: Highly Efficient Composite for Removal of Methyl Orange Dye
title_fullStr Nanocomposite Fe-Co-V/Zeolite: Highly Efficient Composite for Removal of Methyl Orange Dye
title_full_unstemmed Nanocomposite Fe-Co-V/Zeolite: Highly Efficient Composite for Removal of Methyl Orange Dye
title_short Nanocomposite Fe-Co-V/Zeolite: Highly Efficient Composite for Removal of Methyl Orange Dye
title_sort nanocomposite fe co v zeolite highly efficient composite for removal of methyl orange dye
topic methyl orange
nanocomposites
environment
wastewater
url http://jaehr.muk.ac.ir/article_145248_a7fba8d146a2389f588680c987e49bd4.pdf
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AT mohammadkazemmohammadi nanocompositefecovzeolitehighlyefficientcompositeforremovalofmethylorangedye
AT rezajalilzadehyengejeh nanocompositefecovzeolitehighlyefficientcompositeforremovalofmethylorangedye
AT forouzanfarrokhian nanocompositefecovzeolitehighlyefficientcompositeforremovalofmethylorangedye