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Highly stable binder free CNTs/rGO aerogel electrode for decolouration of methylene blue & palm oil mill effluent via electro-Fenton oxidation process

In this study, single wall carbon nanotubes (CNTs)/reduced graphene oxides (rGO) aerogels were prepared by a one-pot hydrothermal process without using a binder. The produced CNTs/rGO aerogel was used as cathode in electro-Fenton system for the decolouration of methylene blue (MB) and palm oil mill...

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Autores principales: Nazhif Mohd Nohan, Muhammad Amirul, Chia, Chin Hua, Hashimi, Aina Shasha, Chin, Siew Xian, Khiew, Poi Sim, Zakaria, Sarani, Azmi, Azima, Lau, Kam Sheng, Razali, Nur Fazlinda
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9064360/
https://www.ncbi.nlm.nih.gov/pubmed/35516365
http://dx.doi.org/10.1039/c9ra02364j
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author Nazhif Mohd Nohan, Muhammad Amirul
Chia, Chin Hua
Hashimi, Aina Shasha
Chin, Siew Xian
Khiew, Poi Sim
Zakaria, Sarani
Azmi, Azima
Lau, Kam Sheng
Razali, Nur Fazlinda
author_facet Nazhif Mohd Nohan, Muhammad Amirul
Chia, Chin Hua
Hashimi, Aina Shasha
Chin, Siew Xian
Khiew, Poi Sim
Zakaria, Sarani
Azmi, Azima
Lau, Kam Sheng
Razali, Nur Fazlinda
author_sort Nazhif Mohd Nohan, Muhammad Amirul
collection PubMed
description In this study, single wall carbon nanotubes (CNTs)/reduced graphene oxides (rGO) aerogels were prepared by a one-pot hydrothermal process without using a binder. The produced CNTs/rGO aerogel was used as cathode in electro-Fenton system for the decolouration of methylene blue (MB) and palm oil mill effluent (POME). The addition of CNTs increased the surface area, pore volume and conductivity of the rGO aerogel, which further enhanced their performance as cathode towards the decolouration of MB and POME via electro-Fenton reaction. Complete decolouration of MB using rGO aerogel without CNTs could not be achieved. The effect of electro-Fenton reaction parameters conducted using the aerogel samples including, current, electrolyte concentrations and pH, were investigated accordingly. The CNTs/rGO aerogel electrode also showed high stability and reusability for up to six consecutive treatment cycles for MB. Besides, the CNTs/rGO aerogel also showed good performance in treating POME with 69.8%, 47.6% and 58.1% of reduction in true colour, total organic carbon (TOC) and chemical oxygen demand (COD), respectively, via 60 minutes electro-Fenton reaction. This study showed that CNTs/rGO aerogels with high porosity and stability can be prepared using simple procedure without adding binder. This fully carbon-based aerogel can serve as effective cathode for decolouration of organic dye and effluent.
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spelling pubmed-90643602022-05-04 Highly stable binder free CNTs/rGO aerogel electrode for decolouration of methylene blue & palm oil mill effluent via electro-Fenton oxidation process Nazhif Mohd Nohan, Muhammad Amirul Chia, Chin Hua Hashimi, Aina Shasha Chin, Siew Xian Khiew, Poi Sim Zakaria, Sarani Azmi, Azima Lau, Kam Sheng Razali, Nur Fazlinda RSC Adv Chemistry In this study, single wall carbon nanotubes (CNTs)/reduced graphene oxides (rGO) aerogels were prepared by a one-pot hydrothermal process without using a binder. The produced CNTs/rGO aerogel was used as cathode in electro-Fenton system for the decolouration of methylene blue (MB) and palm oil mill effluent (POME). The addition of CNTs increased the surface area, pore volume and conductivity of the rGO aerogel, which further enhanced their performance as cathode towards the decolouration of MB and POME via electro-Fenton reaction. Complete decolouration of MB using rGO aerogel without CNTs could not be achieved. The effect of electro-Fenton reaction parameters conducted using the aerogel samples including, current, electrolyte concentrations and pH, were investigated accordingly. The CNTs/rGO aerogel electrode also showed high stability and reusability for up to six consecutive treatment cycles for MB. Besides, the CNTs/rGO aerogel also showed good performance in treating POME with 69.8%, 47.6% and 58.1% of reduction in true colour, total organic carbon (TOC) and chemical oxygen demand (COD), respectively, via 60 minutes electro-Fenton reaction. This study showed that CNTs/rGO aerogels with high porosity and stability can be prepared using simple procedure without adding binder. This fully carbon-based aerogel can serve as effective cathode for decolouration of organic dye and effluent. The Royal Society of Chemistry 2019-05-28 /pmc/articles/PMC9064360/ /pubmed/35516365 http://dx.doi.org/10.1039/c9ra02364j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Nazhif Mohd Nohan, Muhammad Amirul
Chia, Chin Hua
Hashimi, Aina Shasha
Chin, Siew Xian
Khiew, Poi Sim
Zakaria, Sarani
Azmi, Azima
Lau, Kam Sheng
Razali, Nur Fazlinda
Highly stable binder free CNTs/rGO aerogel electrode for decolouration of methylene blue & palm oil mill effluent via electro-Fenton oxidation process
title Highly stable binder free CNTs/rGO aerogel electrode for decolouration of methylene blue & palm oil mill effluent via electro-Fenton oxidation process
title_full Highly stable binder free CNTs/rGO aerogel electrode for decolouration of methylene blue & palm oil mill effluent via electro-Fenton oxidation process
title_fullStr Highly stable binder free CNTs/rGO aerogel electrode for decolouration of methylene blue & palm oil mill effluent via electro-Fenton oxidation process
title_full_unstemmed Highly stable binder free CNTs/rGO aerogel electrode for decolouration of methylene blue & palm oil mill effluent via electro-Fenton oxidation process
title_short Highly stable binder free CNTs/rGO aerogel electrode for decolouration of methylene blue & palm oil mill effluent via electro-Fenton oxidation process
title_sort highly stable binder free cnts/rgo aerogel electrode for decolouration of methylene blue & palm oil mill effluent via electro-fenton oxidation process
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9064360/
https://www.ncbi.nlm.nih.gov/pubmed/35516365
http://dx.doi.org/10.1039/c9ra02364j
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