Operational Cost Analysis for the Treatment of Various Textile Effluents by Electrochemical Process Using Stainless Steel and Aluminum Electrodes

The development of treatment processes from laboratory scale to industries involves a lot of troubles due to the automation of process parameters and fluctuated characteristics of wastewater. In the present study, six different real-time textile effluents of samples such as S1 to S6 are characterize...

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Main Authors: Sakthisharmila P., Palanisamy P N, Manikandan Palanichamy
Format: Article
Language:English
Published: Iranian Institute of Research and Development in Chemical Industries (IRDCI)-ACECR 2019-10-01
Series:Iranian Journal of Chemistry & Chemical Engineering
Subjects:
cod
Online Access:http://www.ijcce.ac.ir/article_32095_3351dc612d0393f826b8f7dfbbcd00a2.pdf
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spelling doaj-5ea20fb31d644565994087721270c8b42021-01-23T19:51:04ZengIranian Institute of Research and Development in Chemical Industries (IRDCI)-ACECRIranian Journal of Chemistry & Chemical Engineering 1021-99861021-99862019-10-0138516517332095Operational Cost Analysis for the Treatment of Various Textile Effluents by Electrochemical Process Using Stainless Steel and Aluminum ElectrodesSakthisharmila P.0Palanisamy P N1Manikandan Palanichamy2Centre for Environmental Research, Department of Chemistry, Kongu Engineering College, Perundurai-638060, Tamil Nadu, INDIACentre for Environmental Research, Department of Chemistry, Kongu Engineering College, Perundurai-638060, Tamil Nadu, INDIACentre for Environmental Research, Department of Chemistry, Kongu Engineering College, Perundurai-638060, Tamil Nadu, INDIAThe development of treatment processes from laboratory scale to industries involves a lot of troubles due to the automation of process parameters and fluctuated characteristics of wastewater. In the present study, six different real-time textile effluents of samples such as S1 to S6 are characterized and treated by electrocoagulation process using Stainless Steel (SS) and Aluminum (Al) electrodes. The maximum removal efficiencies of color as 94%, turbidity as 99%, Chemical Oxygen Demand (COD) as 84% and Biological Oxygen Demand (BOD) as 82% is obtained for effluent sample S1 with fixed operational conditions such as the applied voltage of 4V, inter-electrode distance of 3 cm, the surface area of the electrode of 25 cm2 and agitation speed of 500 rpm respectively. After the electrocoagulation process, the BOD5/COD ratio of all effluent samples is observed as biodegradable limits. Under the fixed conditions, the operational cost for the treatment of effluent sample S1 analyzed as 2.42 and 1.01 $/m3 by using SS and Al electrodes respectively.http://www.ijcce.ac.ir/article_32095_3351dc612d0393f826b8f7dfbbcd00a2.pdfcodcostelectrocoagulationelectrodestextile effluents
collection DOAJ
language English
format Article
sources DOAJ
author Sakthisharmila P.
Palanisamy P N
Manikandan Palanichamy
spellingShingle Sakthisharmila P.
Palanisamy P N
Manikandan Palanichamy
Operational Cost Analysis for the Treatment of Various Textile Effluents by Electrochemical Process Using Stainless Steel and Aluminum Electrodes
Iranian Journal of Chemistry & Chemical Engineering
cod
cost
electrocoagulation
electrodes
textile effluents
author_facet Sakthisharmila P.
Palanisamy P N
Manikandan Palanichamy
author_sort Sakthisharmila P.
title Operational Cost Analysis for the Treatment of Various Textile Effluents by Electrochemical Process Using Stainless Steel and Aluminum Electrodes
title_short Operational Cost Analysis for the Treatment of Various Textile Effluents by Electrochemical Process Using Stainless Steel and Aluminum Electrodes
title_full Operational Cost Analysis for the Treatment of Various Textile Effluents by Electrochemical Process Using Stainless Steel and Aluminum Electrodes
title_fullStr Operational Cost Analysis for the Treatment of Various Textile Effluents by Electrochemical Process Using Stainless Steel and Aluminum Electrodes
title_full_unstemmed Operational Cost Analysis for the Treatment of Various Textile Effluents by Electrochemical Process Using Stainless Steel and Aluminum Electrodes
title_sort operational cost analysis for the treatment of various textile effluents by electrochemical process using stainless steel and aluminum electrodes
publisher Iranian Institute of Research and Development in Chemical Industries (IRDCI)-ACECR
series Iranian Journal of Chemistry & Chemical Engineering
issn 1021-9986
1021-9986
publishDate 2019-10-01
description The development of treatment processes from laboratory scale to industries involves a lot of troubles due to the automation of process parameters and fluctuated characteristics of wastewater. In the present study, six different real-time textile effluents of samples such as S1 to S6 are characterized and treated by electrocoagulation process using Stainless Steel (SS) and Aluminum (Al) electrodes. The maximum removal efficiencies of color as 94%, turbidity as 99%, Chemical Oxygen Demand (COD) as 84% and Biological Oxygen Demand (BOD) as 82% is obtained for effluent sample S1 with fixed operational conditions such as the applied voltage of 4V, inter-electrode distance of 3 cm, the surface area of the electrode of 25 cm2 and agitation speed of 500 rpm respectively. After the electrocoagulation process, the BOD5/COD ratio of all effluent samples is observed as biodegradable limits. Under the fixed conditions, the operational cost for the treatment of effluent sample S1 analyzed as 2.42 and 1.01 $/m3 by using SS and Al electrodes respectively.
topic cod
cost
electrocoagulation
electrodes
textile effluents
url http://www.ijcce.ac.ir/article_32095_3351dc612d0393f826b8f7dfbbcd00a2.pdf
work_keys_str_mv AT sakthisharmilap operationalcostanalysisforthetreatmentofvarioustextileeffluentsbyelectrochemicalprocessusingstainlesssteelandaluminumelectrodes
AT palanisamypn operationalcostanalysisforthetreatmentofvarioustextileeffluentsbyelectrochemicalprocessusingstainlesssteelandaluminumelectrodes
AT manikandanpalanichamy operationalcostanalysisforthetreatmentofvarioustextileeffluentsbyelectrochemicalprocessusingstainlesssteelandaluminumelectrodes
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