Investigation of BTEX Removal from Aqueous Solution by Single Wall Carbon Nanotubes Coated with ZnO

Monoaromatics of Benzene, Toluene, Ethyl Benzene and Xylene which are abbreviated as BTEX, are among the most important environmental pollutants. Due to high solubility of BTEX in water, it is emitted to the aquatic environment with a very high speed. Absorption by carbon nanotubes is be regarded as...

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Main Authors: Maryam Zahednia, Zohreh Ghazi Tabatabaei
Format: Article
Language:English
Published: Water and Wastewater Consulting Engineers Research Development 2018-05-01
Series:آب و فاضلاب
Subjects:
Online Access:http://www.wwjournal.ir/article_50039_33a8d14f2bf47005682ca8195be2ee3e.pdf
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spelling doaj-483eb183c3d04b00ae34315e8827a9872021-03-02T05:04:50ZengWater and Wastewater Consulting Engineers Research Developmentآب و فاضلاب1024-59362383-09052018-05-0129211110.22093/wwj.2017.62042.225250039Investigation of BTEX Removal from Aqueous Solution by Single Wall Carbon Nanotubes Coated with ZnOMaryam Zahednia0Zohreh Ghazi Tabatabaei1MSc Stdudent, Department of Chemical Engineering, Ahar Branch, Islamic Azad University, Ahar, IranAssist. Prof., Department of Applied Chemistry, Ahar Branch , Islamic Azad University, Ahar, IranMonoaromatics of Benzene, Toluene, Ethyl Benzene and Xylene which are abbreviated as BTEX, are among the most important environmental pollutants. Due to high solubility of BTEX in water, it is emitted to the aquatic environment with a very high speed. Absorption by carbon nanotubes is be regarded as one new treatment method. The aim of this study was to investigate the removal of BTEX from aqueous solutions through adsorption by single wall carbon nanotubes coated with Zinc oxide nanoparticles. The prepared nanoparticles were characterized by FT IR, XRD, FESEM and EDAX. First, the pHZPC was determined. Then, the effect of different operating parameters such as the amount of sorbent, contact time, pH, temperature and ionic strength were studied through batch method in order to obtain optimal conditions for the absorption process. The optimum conditions for BTEX removal from aqueous solution by ZnO/SWCNTs was obtained as following: pH=6, contact time=20 min, adsorbent concentration=300 mg/L, amount of sorbent=10mg, T=20°C and salt concentration= 2g/L. The results showed that single wall carbon nanotubes coated with zinc oxide effectively absorbs BTEX from water and it has a good potential for treating wastewater contaminated with petroleumhttp://www.wwjournal.ir/article_50039_33a8d14f2bf47005682ca8195be2ee3e.pdfBTEXSingle Wall Carbon NanotubesNanoparticlesAdsorptionWater pollution
collection DOAJ
language English
format Article
sources DOAJ
author Maryam Zahednia
Zohreh Ghazi Tabatabaei
spellingShingle Maryam Zahednia
Zohreh Ghazi Tabatabaei
Investigation of BTEX Removal from Aqueous Solution by Single Wall Carbon Nanotubes Coated with ZnO
آب و فاضلاب
BTEX
Single Wall Carbon Nanotubes
Nanoparticles
Adsorption
Water pollution
author_facet Maryam Zahednia
Zohreh Ghazi Tabatabaei
author_sort Maryam Zahednia
title Investigation of BTEX Removal from Aqueous Solution by Single Wall Carbon Nanotubes Coated with ZnO
title_short Investigation of BTEX Removal from Aqueous Solution by Single Wall Carbon Nanotubes Coated with ZnO
title_full Investigation of BTEX Removal from Aqueous Solution by Single Wall Carbon Nanotubes Coated with ZnO
title_fullStr Investigation of BTEX Removal from Aqueous Solution by Single Wall Carbon Nanotubes Coated with ZnO
title_full_unstemmed Investigation of BTEX Removal from Aqueous Solution by Single Wall Carbon Nanotubes Coated with ZnO
title_sort investigation of btex removal from aqueous solution by single wall carbon nanotubes coated with zno
publisher Water and Wastewater Consulting Engineers Research Development
series آب و فاضلاب
issn 1024-5936
2383-0905
publishDate 2018-05-01
description Monoaromatics of Benzene, Toluene, Ethyl Benzene and Xylene which are abbreviated as BTEX, are among the most important environmental pollutants. Due to high solubility of BTEX in water, it is emitted to the aquatic environment with a very high speed. Absorption by carbon nanotubes is be regarded as one new treatment method. The aim of this study was to investigate the removal of BTEX from aqueous solutions through adsorption by single wall carbon nanotubes coated with Zinc oxide nanoparticles. The prepared nanoparticles were characterized by FT IR, XRD, FESEM and EDAX. First, the pHZPC was determined. Then, the effect of different operating parameters such as the amount of sorbent, contact time, pH, temperature and ionic strength were studied through batch method in order to obtain optimal conditions for the absorption process. The optimum conditions for BTEX removal from aqueous solution by ZnO/SWCNTs was obtained as following: pH=6, contact time=20 min, adsorbent concentration=300 mg/L, amount of sorbent=10mg, T=20°C and salt concentration= 2g/L. The results showed that single wall carbon nanotubes coated with zinc oxide effectively absorbs BTEX from water and it has a good potential for treating wastewater contaminated with petroleum
topic BTEX
Single Wall Carbon Nanotubes
Nanoparticles
Adsorption
Water pollution
url http://www.wwjournal.ir/article_50039_33a8d14f2bf47005682ca8195be2ee3e.pdf
work_keys_str_mv AT maryamzahednia investigationofbtexremovalfromaqueoussolutionbysinglewallcarbonnanotubescoatedwithzno
AT zohrehghazitabatabaei investigationofbtexremovalfromaqueoussolutionbysinglewallcarbonnanotubescoatedwithzno
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