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Development of Efficient and Recyclable ZnO–CuO/g–C(3)N(4) Nanocomposite for Enhanced Adsorption of Arsenic from Wastewater

Arsenic (III) is a toxic contaminant in water bodies, especially in drinking water reservoirs, and it is a great challenge to remove it from wastewater. For the successful extraction of arsenic (III), a nanocomposite material (ZnO–CuO/g–C(3)N(4)) has been synthesized by using the solution method. Th...

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Autores principales: Khan, Qudrat Ullah, Begum, Nabila, Rehman, Zia Ur, Khan, Afaq Ullah, Tahir, Kamran, Tag El Din, El Sayed M., Alothman, Asma A., Habila, Mohamed A., Liu, Dahai, Bocchetta, Patrizia, Javed, Muhammad Sufyan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9698871/
https://www.ncbi.nlm.nih.gov/pubmed/36432270
http://dx.doi.org/10.3390/nano12223984
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author Khan, Qudrat Ullah
Begum, Nabila
Rehman, Zia Ur
Khan, Afaq Ullah
Tahir, Kamran
Tag El Din, El Sayed M.
Alothman, Asma A.
Habila, Mohamed A.
Liu, Dahai
Bocchetta, Patrizia
Javed, Muhammad Sufyan
author_facet Khan, Qudrat Ullah
Begum, Nabila
Rehman, Zia Ur
Khan, Afaq Ullah
Tahir, Kamran
Tag El Din, El Sayed M.
Alothman, Asma A.
Habila, Mohamed A.
Liu, Dahai
Bocchetta, Patrizia
Javed, Muhammad Sufyan
author_sort Khan, Qudrat Ullah
collection PubMed
description Arsenic (III) is a toxic contaminant in water bodies, especially in drinking water reservoirs, and it is a great challenge to remove it from wastewater. For the successful extraction of arsenic (III), a nanocomposite material (ZnO–CuO/g–C(3)N(4)) has been synthesized by using the solution method. The large surface area and plenty of hydroxyl groups on the nanocomposite surface offer an ideal platform for the adsorption of arsenic (III) from water. Specifically, the reduction process involves a transformation from arsenic (III) to arsenic (V), which is favorable for the attachment to the –OH group. The modified surface and purity of the nanocomposite were characterized by SEM, EDX, XRD, FT–IR, HRTEM, and BET models. Furthermore, the impact of various aspects (temperatures, pH of the medium, the concentration of adsorbing materials) on adsorption capacity has been studied. The prepared sample displays the maximum adsorption capacity of arsenic (III) to be 98% at pH ~ 3 of the medium. Notably, the adsorption mechanism of arsenic species on the surface of ZnO–CuO/g–C(3)N(4) nanocomposite at different pH values was explained by surface complexation and structural variations. Moreover, the recycling experiment and reusability of the adsorbent indicate that a synthesized nanocomposite has much better adsorption efficiency than other adsorbents. It is concluded that the ZnO–CuO/g–C(3)N(4) nanocomposite can be a potential candidate for the enhanced removal of arsenic from water reservoirs.
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spelling pubmed-96988712022-11-26 Development of Efficient and Recyclable ZnO–CuO/g–C(3)N(4) Nanocomposite for Enhanced Adsorption of Arsenic from Wastewater Khan, Qudrat Ullah Begum, Nabila Rehman, Zia Ur Khan, Afaq Ullah Tahir, Kamran Tag El Din, El Sayed M. Alothman, Asma A. Habila, Mohamed A. Liu, Dahai Bocchetta, Patrizia Javed, Muhammad Sufyan Nanomaterials (Basel) Article Arsenic (III) is a toxic contaminant in water bodies, especially in drinking water reservoirs, and it is a great challenge to remove it from wastewater. For the successful extraction of arsenic (III), a nanocomposite material (ZnO–CuO/g–C(3)N(4)) has been synthesized by using the solution method. The large surface area and plenty of hydroxyl groups on the nanocomposite surface offer an ideal platform for the adsorption of arsenic (III) from water. Specifically, the reduction process involves a transformation from arsenic (III) to arsenic (V), which is favorable for the attachment to the –OH group. The modified surface and purity of the nanocomposite were characterized by SEM, EDX, XRD, FT–IR, HRTEM, and BET models. Furthermore, the impact of various aspects (temperatures, pH of the medium, the concentration of adsorbing materials) on adsorption capacity has been studied. The prepared sample displays the maximum adsorption capacity of arsenic (III) to be 98% at pH ~ 3 of the medium. Notably, the adsorption mechanism of arsenic species on the surface of ZnO–CuO/g–C(3)N(4) nanocomposite at different pH values was explained by surface complexation and structural variations. Moreover, the recycling experiment and reusability of the adsorbent indicate that a synthesized nanocomposite has much better adsorption efficiency than other adsorbents. It is concluded that the ZnO–CuO/g–C(3)N(4) nanocomposite can be a potential candidate for the enhanced removal of arsenic from water reservoirs. MDPI 2022-11-12 /pmc/articles/PMC9698871/ /pubmed/36432270 http://dx.doi.org/10.3390/nano12223984 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Khan, Qudrat Ullah
Begum, Nabila
Rehman, Zia Ur
Khan, Afaq Ullah
Tahir, Kamran
Tag El Din, El Sayed M.
Alothman, Asma A.
Habila, Mohamed A.
Liu, Dahai
Bocchetta, Patrizia
Javed, Muhammad Sufyan
Development of Efficient and Recyclable ZnO–CuO/g–C(3)N(4) Nanocomposite for Enhanced Adsorption of Arsenic from Wastewater
title Development of Efficient and Recyclable ZnO–CuO/g–C(3)N(4) Nanocomposite for Enhanced Adsorption of Arsenic from Wastewater
title_full Development of Efficient and Recyclable ZnO–CuO/g–C(3)N(4) Nanocomposite for Enhanced Adsorption of Arsenic from Wastewater
title_fullStr Development of Efficient and Recyclable ZnO–CuO/g–C(3)N(4) Nanocomposite for Enhanced Adsorption of Arsenic from Wastewater
title_full_unstemmed Development of Efficient and Recyclable ZnO–CuO/g–C(3)N(4) Nanocomposite for Enhanced Adsorption of Arsenic from Wastewater
title_short Development of Efficient and Recyclable ZnO–CuO/g–C(3)N(4) Nanocomposite for Enhanced Adsorption of Arsenic from Wastewater
title_sort development of efficient and recyclable zno–cuo/g–c(3)n(4) nanocomposite for enhanced adsorption of arsenic from wastewater
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9698871/
https://www.ncbi.nlm.nih.gov/pubmed/36432270
http://dx.doi.org/10.3390/nano12223984
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