A comparative study for the electrochemical regeneration of adsorbents loaded with methylene blue
The electrochemical regeneration of methylene blue-saturated activated carbon, Nyex®1000 and sawdust has been studied and the performances in terms of capacity of adsorbent regeneration have been compared in this work. The adsorption isotherms were investigated. The results showed that the adsorptio...
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Iranian Environmental Mutagen Society
2017-01-01
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doaj-a84a506345af4d9cad2150931d96f2422021-02-17T13:34:04ZengIranian Environmental Mutagen SocietyJournal of Water and Environmental Nanotechnology2476-72042476-66152017-01-0121172510.7508/jwent.2017.01.00324248A comparative study for the electrochemical regeneration of adsorbents loaded with methylene blueInes Bouaziz0Morched Hamza1Ridha Abdelhedi2André Savall3Karine Groenen Serrano4Laboratory of Chemical Engineering, University of Toulouse, CNRS, INP, 118 route de Narbonne 31062 Toulouse cedex, FranceLaboratory of Electrochemistry and Environment, National Engineering School, Sfax University, BP 1173, 3038 Sfax, TunisiaLaboratory of Electrochemistry and Environment, National Engineering School, Sfax University, BP 1173, 3038 Sfax, TunisiaLaboratory of Chemical Engineering, University of Toulouse, CNRS, INP, 118 route de Narbonne 31062 Toulouse cedex, FranceLaboratory of Chemical Engineering, University of Toulouse, CNRS, INP, 118 route de Narbonne 31062 Toulouse cedex, FranceThe electrochemical regeneration of methylene blue-saturated activated carbon, Nyex®1000 and sawdust has been studied and the performances in terms of capacity of adsorbent regeneration have been compared in this work. The adsorption isotherms were investigated. The results showed that the adsorption of methylene blue onto the investigated adsorbents obeyed Langmuir’s model. The electrochemical oxidation of methylene blue beforehand adsorbed was studied using a boron doped diamond anode. The electrochemical regeneration efficiencies, under the same experimental conditions, of the activated carbon and Nyex®1000 were significantly less than 100% which were much lower to that of sawdust. Indeed the electrolysis tends to activate the sawdust because all the regeneration efficiencies obtained, whatever the applied current intensity, are higher than 100 %. Increasing treatment time would also result in a better regeneration of sawdust. This study confirmed that the coupling adsorption onto sawdust and electrochemical degradation is a potential technique for the efficient elimination of low concentration organic dyes from wastewater.http://www.jwent.net/article_24248_299ce44cff28e594177d20fb7ab2ead7.pdfelectrochemical regenerationadsorptionmethylene bluesawdustnyex®1000activated carbonwastewater treatment |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ines Bouaziz Morched Hamza Ridha Abdelhedi André Savall Karine Groenen Serrano |
spellingShingle |
Ines Bouaziz Morched Hamza Ridha Abdelhedi André Savall Karine Groenen Serrano A comparative study for the electrochemical regeneration of adsorbents loaded with methylene blue Journal of Water and Environmental Nanotechnology electrochemical regeneration adsorption methylene blue sawdust nyex®1000 activated carbon wastewater treatment |
author_facet |
Ines Bouaziz Morched Hamza Ridha Abdelhedi André Savall Karine Groenen Serrano |
author_sort |
Ines Bouaziz |
title |
A comparative study for the electrochemical regeneration of adsorbents loaded with methylene blue |
title_short |
A comparative study for the electrochemical regeneration of adsorbents loaded with methylene blue |
title_full |
A comparative study for the electrochemical regeneration of adsorbents loaded with methylene blue |
title_fullStr |
A comparative study for the electrochemical regeneration of adsorbents loaded with methylene blue |
title_full_unstemmed |
A comparative study for the electrochemical regeneration of adsorbents loaded with methylene blue |
title_sort |
comparative study for the electrochemical regeneration of adsorbents loaded with methylene blue |
publisher |
Iranian Environmental Mutagen Society |
series |
Journal of Water and Environmental Nanotechnology |
issn |
2476-7204 2476-6615 |
publishDate |
2017-01-01 |
description |
The electrochemical regeneration of methylene blue-saturated activated carbon, Nyex®1000 and sawdust has been studied and the performances in terms of capacity of adsorbent regeneration have been compared in this work. The adsorption isotherms were investigated. The results showed that the adsorption of methylene blue onto the investigated adsorbents obeyed Langmuir’s model. The electrochemical oxidation of methylene blue beforehand adsorbed was studied using a boron doped diamond anode. The electrochemical regeneration efficiencies, under the same experimental conditions, of the activated carbon and Nyex®1000 were significantly less than 100% which were much lower to that of sawdust. Indeed the electrolysis tends to activate the sawdust because all the regeneration efficiencies obtained, whatever the applied current intensity, are higher than 100 %. Increasing treatment time would also result in a better regeneration of sawdust. This study confirmed that the coupling adsorption onto sawdust and electrochemical degradation is a potential technique for the efficient elimination of low concentration organic dyes from wastewater. |
topic |
electrochemical regeneration adsorption methylene blue sawdust nyex®1000 activated carbon wastewater treatment |
url |
http://www.jwent.net/article_24248_299ce44cff28e594177d20fb7ab2ead7.pdf |
work_keys_str_mv |
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