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Integrated Membrane–Electrocoagulation System for Removal of Celestine Blue Dyes in Wastewater

The textile industry provides for the needs of people especially in apparel and household items. The industry also discharges dye-containing wastewater that is typically challenging to treat. Despite the application of the biological and chemical treatments for the treatment of textile wastewater, t...

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Autores principales: Saad, Muhammad Syaamil, Balasubramaniam, Lila, Wirzal, Mohd Dzul Hakim, Abd Halim, Nur Syakinah, Bilad, Muhammad Roil, Md Nordin, Nik Abdul Hadi, Adi Putra, Zulfan, Ramli, Fuad Nabil
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464365/
https://www.ncbi.nlm.nih.gov/pubmed/32823511
http://dx.doi.org/10.3390/membranes10080184
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author Saad, Muhammad Syaamil
Balasubramaniam, Lila
Wirzal, Mohd Dzul Hakim
Abd Halim, Nur Syakinah
Bilad, Muhammad Roil
Md Nordin, Nik Abdul Hadi
Adi Putra, Zulfan
Ramli, Fuad Nabil
author_facet Saad, Muhammad Syaamil
Balasubramaniam, Lila
Wirzal, Mohd Dzul Hakim
Abd Halim, Nur Syakinah
Bilad, Muhammad Roil
Md Nordin, Nik Abdul Hadi
Adi Putra, Zulfan
Ramli, Fuad Nabil
author_sort Saad, Muhammad Syaamil
collection PubMed
description The textile industry provides for the needs of people especially in apparel and household items. The industry also discharges dye-containing wastewater that is typically challenging to treat. Despite the application of the biological and chemical treatments for the treatment of textile wastewater, these methods have their own drawbacks such as non-environment friendly, high cost and energy intensive. This research investigates the efficiency of the celestine blue dye removal from simulated textile wastewater by electrocoagulation (EC) method using iron (Fe) electrodes through an electrolytic cell, integrated with nylon 6,6 nanofiber (NF) membrane filtration for the separation of the flocculants from aqueous water. Based on the results, the integrated system achieves a high dye removal efficiency of 79.4%, by using 1000 ppm of sodium chloride as the electrolyte and 2 V of voltage at a constant pH of 7 and 10 ppm celestine blue dye solution, compared to the standalone EC method in which only 43.2% removal was achieved. Atomic absorption spectroscopy analysis was used to identify the traces of iron in the residual EC solution confirming the absence of iron. The EC-integrated membrane system thus shows superior performance compared to the conventional method whereby an additional 10–30% of dye was removed at 1 V and 2 V using similar energy consumptions.
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spelling pubmed-74643652020-09-04 Integrated Membrane–Electrocoagulation System for Removal of Celestine Blue Dyes in Wastewater Saad, Muhammad Syaamil Balasubramaniam, Lila Wirzal, Mohd Dzul Hakim Abd Halim, Nur Syakinah Bilad, Muhammad Roil Md Nordin, Nik Abdul Hadi Adi Putra, Zulfan Ramli, Fuad Nabil Membranes (Basel) Article The textile industry provides for the needs of people especially in apparel and household items. The industry also discharges dye-containing wastewater that is typically challenging to treat. Despite the application of the biological and chemical treatments for the treatment of textile wastewater, these methods have their own drawbacks such as non-environment friendly, high cost and energy intensive. This research investigates the efficiency of the celestine blue dye removal from simulated textile wastewater by electrocoagulation (EC) method using iron (Fe) electrodes through an electrolytic cell, integrated with nylon 6,6 nanofiber (NF) membrane filtration for the separation of the flocculants from aqueous water. Based on the results, the integrated system achieves a high dye removal efficiency of 79.4%, by using 1000 ppm of sodium chloride as the electrolyte and 2 V of voltage at a constant pH of 7 and 10 ppm celestine blue dye solution, compared to the standalone EC method in which only 43.2% removal was achieved. Atomic absorption spectroscopy analysis was used to identify the traces of iron in the residual EC solution confirming the absence of iron. The EC-integrated membrane system thus shows superior performance compared to the conventional method whereby an additional 10–30% of dye was removed at 1 V and 2 V using similar energy consumptions. MDPI 2020-08-13 /pmc/articles/PMC7464365/ /pubmed/32823511 http://dx.doi.org/10.3390/membranes10080184 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Saad, Muhammad Syaamil
Balasubramaniam, Lila
Wirzal, Mohd Dzul Hakim
Abd Halim, Nur Syakinah
Bilad, Muhammad Roil
Md Nordin, Nik Abdul Hadi
Adi Putra, Zulfan
Ramli, Fuad Nabil
Integrated Membrane–Electrocoagulation System for Removal of Celestine Blue Dyes in Wastewater
title Integrated Membrane–Electrocoagulation System for Removal of Celestine Blue Dyes in Wastewater
title_full Integrated Membrane–Electrocoagulation System for Removal of Celestine Blue Dyes in Wastewater
title_fullStr Integrated Membrane–Electrocoagulation System for Removal of Celestine Blue Dyes in Wastewater
title_full_unstemmed Integrated Membrane–Electrocoagulation System for Removal of Celestine Blue Dyes in Wastewater
title_short Integrated Membrane–Electrocoagulation System for Removal of Celestine Blue Dyes in Wastewater
title_sort integrated membrane–electrocoagulation system for removal of celestine blue dyes in wastewater
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464365/
https://www.ncbi.nlm.nih.gov/pubmed/32823511
http://dx.doi.org/10.3390/membranes10080184
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