Petrochemical wastewater treatment by modified electro-Fenton process with nano iron particles

Petrochemical manufacturing wastewaters often contain a high concentration of biodegradable com-pounds that possess either toxicity or activity inhibition to the biological unit. In this paper, COD removal from Petrochemical wastewaters by electro-Fenton process was studied. The effect of operating...

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Main Authors: Hassan FathinejadJirandehi, Maryam Adimi, Mohammad Mohebbizadeh
Format: Article
Language:English
Published: Iranian Research Organization for Science and Technology (IROST) 2015-04-01
Series:Journal of Particle Science and Technology
Subjects:
COD
Online Access:http://jpst.irost.ir/article_270_c7afec8d403731791c49ea54c6972e3d.pdf
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spelling doaj-80c653f4da5345a284c31fba04438ec62020-11-24T22:09:27ZengIranian Research Organization for Science and Technology (IROST) Journal of Particle Science and Technology2423-40872423-40792015-04-0114215223270Petrochemical wastewater treatment by modified electro-Fenton process with nano iron particlesHassan FathinejadJirandehi 0 Maryam Adimi1Mohammad Mohebbizadeh2Young researchers and Elite club, Farahan Branch, Islamic Azad University, Farahan, IranDepartment of Chemical engineering, Farahan branch, Islamic Azad University, Farahan, IranDepartment of Chemical engineering, Farahan branch, Islamic Azad University, Farahan, IranPetrochemical manufacturing wastewaters often contain a high concentration of biodegradable com-pounds that possess either toxicity or activity inhibition to the biological unit. In this paper, COD removal from Petrochemical wastewaters by electro-Fenton process was studied. The effect of operating conditions such as reaction time, current density, pH, H2O2/Fe2+ molar ratio, and H2O2 of petrochemical wastewater (PW) (ml/l) on the performance of the process has been studied. The experimental results showed that COD was 75.52% removed by the reaction with OH radicals generated from electrochemically assisted Fenton’s reaction. With our cell design, the higher oxidation rate has been obtained applying a current of 57.01 mA, at pH 2.92 and in the presence of 0.3 mM Fe2+ as catalyst and at reaction time of 86.33 minutes. http://jpst.irost.ir/article_270_c7afec8d403731791c49ea54c6972e3d.pdfElectro-FentonNano iron particlesCODPetrochemical wastewater
collection DOAJ
language English
format Article
sources DOAJ
author Hassan FathinejadJirandehi
Maryam Adimi
Mohammad Mohebbizadeh
spellingShingle Hassan FathinejadJirandehi
Maryam Adimi
Mohammad Mohebbizadeh
Petrochemical wastewater treatment by modified electro-Fenton process with nano iron particles
Journal of Particle Science and Technology
Electro-Fenton
Nano iron particles
COD
Petrochemical wastewater
author_facet Hassan FathinejadJirandehi
Maryam Adimi
Mohammad Mohebbizadeh
author_sort Hassan FathinejadJirandehi
title Petrochemical wastewater treatment by modified electro-Fenton process with nano iron particles
title_short Petrochemical wastewater treatment by modified electro-Fenton process with nano iron particles
title_full Petrochemical wastewater treatment by modified electro-Fenton process with nano iron particles
title_fullStr Petrochemical wastewater treatment by modified electro-Fenton process with nano iron particles
title_full_unstemmed Petrochemical wastewater treatment by modified electro-Fenton process with nano iron particles
title_sort petrochemical wastewater treatment by modified electro-fenton process with nano iron particles
publisher Iranian Research Organization for Science and Technology (IROST)
series Journal of Particle Science and Technology
issn 2423-4087
2423-4079
publishDate 2015-04-01
description Petrochemical manufacturing wastewaters often contain a high concentration of biodegradable com-pounds that possess either toxicity or activity inhibition to the biological unit. In this paper, COD removal from Petrochemical wastewaters by electro-Fenton process was studied. The effect of operating conditions such as reaction time, current density, pH, H2O2/Fe2+ molar ratio, and H2O2 of petrochemical wastewater (PW) (ml/l) on the performance of the process has been studied. The experimental results showed that COD was 75.52% removed by the reaction with OH radicals generated from electrochemically assisted Fenton’s reaction. With our cell design, the higher oxidation rate has been obtained applying a current of 57.01 mA, at pH 2.92 and in the presence of 0.3 mM Fe2+ as catalyst and at reaction time of 86.33 minutes.
topic Electro-Fenton
Nano iron particles
COD
Petrochemical wastewater
url http://jpst.irost.ir/article_270_c7afec8d403731791c49ea54c6972e3d.pdf
work_keys_str_mv AT hassanfathinejadjirandehi petrochemicalwastewatertreatmentbymodifiedelectrofentonprocesswithnanoironparticles
AT maryamadimi petrochemicalwastewatertreatmentbymodifiedelectrofentonprocesswithnanoironparticles
AT mohammadmohebbizadeh petrochemicalwastewatertreatmentbymodifiedelectrofentonprocesswithnanoironparticles
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