Widespread applicability of bacterial cellulose-ZnO-MWCNT hybrid membranes
[Display omitted] The novel photoactive membranes have grabbed the attention in the field of environmental protection by employing wastewater treatments and the removal of microorganisms or organic pollutants from wastewater. Here we present a promising self-supported photoactive hybrid membrane for...
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Published in | Arabian journal of chemistry Vol. 14; no. 7; p. 103232 |
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Main Authors | , , , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Elsevier B.V
01.07.2021
Elsevier |
Subjects | |
Online Access | Get full text |
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Abstract | [Display omitted]
The novel photoactive membranes have grabbed the attention in the field of environmental protection by employing wastewater treatments and the removal of microorganisms or organic pollutants from wastewater. Here we present a promising self-supported photoactive hybrid membrane for future antimicrobial and water treatment applications. In this study, the efficiency of bacterial cellulose (BC) - zinc oxide (ZnO) - multi walled carbon nanotube (MWCNT) hybrid membranes in the adsorption and photocatalytic degradation of methylene blue (MB) under UV radiation and the removal of Escherichia coli (E. coli) was investigated. It was found that the photocatalytic efficiency is strongly dependent on both the preparation method and the amount of ZnO-MWCNT additives loaded into the hybrid membranes. The characterization of BC-ZnO-MWCNT membranes was done using scanning electron microscopy (SEM), mercury intrusion porosimetry (MIP), and X-ray micro computed tomography (μCT) to study the morphological and porosity aspect of the prepared-membranes. The promising results of this study could provide a new pathway in the field of photocatalysed-based water treatment technology by the application of hybrid membranes. |
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AbstractList | The novel photoactive membranes have grabbed the attention in the field of environmental protection by employing wastewater treatments and the removal of microorganisms or organic pollutants from wastewater. Here we present a promising self-supported photoactive hybrid membrane for future antimicrobial and water treatment applications. In this study, the efficiency of bacterial cellulose (BC) - zinc oxide (ZnO) - multi walled carbon nanotube (MWCNT) hybrid membranes in the adsorption and photocatalytic degradation of methylene blue (MB) under UV radiation and the removal of Escherichia coli (E. coli) was investigated. It was found that the photocatalytic efficiency is strongly dependent on both the preparation method and the amount of ZnO-MWCNT additives loaded into the hybrid membranes. The characterization of BC-ZnO-MWCNT membranes was done using scanning electron microscopy (SEM), mercury intrusion porosimetry (MIP), and X-ray micro computed tomography (μCT) to study the morphological and porosity aspect of the prepared-membranes. The promising results of this study could provide a new pathway in the field of photocatalysed-based water treatment technology by the application of hybrid membranes. [Display omitted] The novel photoactive membranes have grabbed the attention in the field of environmental protection by employing wastewater treatments and the removal of microorganisms or organic pollutants from wastewater. Here we present a promising self-supported photoactive hybrid membrane for future antimicrobial and water treatment applications. In this study, the efficiency of bacterial cellulose (BC) - zinc oxide (ZnO) - multi walled carbon nanotube (MWCNT) hybrid membranes in the adsorption and photocatalytic degradation of methylene blue (MB) under UV radiation and the removal of Escherichia coli (E. coli) was investigated. It was found that the photocatalytic efficiency is strongly dependent on both the preparation method and the amount of ZnO-MWCNT additives loaded into the hybrid membranes. The characterization of BC-ZnO-MWCNT membranes was done using scanning electron microscopy (SEM), mercury intrusion porosimetry (MIP), and X-ray micro computed tomography (μCT) to study the morphological and porosity aspect of the prepared-membranes. The promising results of this study could provide a new pathway in the field of photocatalysed-based water treatment technology by the application of hybrid membranes. |
ArticleNumber | 103232 |
Author | Muránszky, Gábor Hernadi, Klara Németh, Zoltán Chauhan, Tanya Sikora, Emőke Ahmed Shehab, Mohammed Sharma, Nikita Szőri-Dorogházi, Emma Nánai, Lilla El Mrabate, Bilal Filep, Ádám |
Author_xml | – sequence: 1 givenname: Bilal surname: El Mrabate fullname: El Mrabate, Bilal organization: Advanced Materials and Intelligent Technologies Higher Education and Industrial Cooperation Centre, University of Miskolc, H-3515 Miskolc, Hungary – sequence: 2 givenname: Emma surname: Szőri-Dorogházi fullname: Szőri-Dorogházi, Emma organization: Advanced Materials and Intelligent Technologies Higher Education and Industrial Cooperation Centre, University of Miskolc, H-3515 Miskolc, Hungary – sequence: 3 givenname: Mohammed surname: Ahmed Shehab fullname: Ahmed Shehab, Mohammed organization: Advanced Materials and Intelligent Technologies Higher Education and Industrial Cooperation Centre, University of Miskolc, H-3515 Miskolc, Hungary – sequence: 4 givenname: Tanya surname: Chauhan fullname: Chauhan, Tanya organization: Advanced Materials and Intelligent Technologies Higher Education and Industrial Cooperation Centre, University of Miskolc, H-3515 Miskolc, Hungary – sequence: 5 givenname: Gábor surname: Muránszky fullname: Muránszky, Gábor organization: Institute of Chemistry, University of Miskolc, H-3515 Miskolc, Hungary – sequence: 6 givenname: Emőke orcidid: 0000-0002-4197-8975 surname: Sikora fullname: Sikora, Emőke organization: Institute of Chemistry, University of Miskolc, H-3515 Miskolc, Hungary – sequence: 7 givenname: Ádám surname: Filep fullname: Filep, Ádám organization: Advanced Materials and Intelligent Technologies Higher Education and Industrial Cooperation Centre, University of Miskolc, H-3515 Miskolc, Hungary – sequence: 8 givenname: Nikita surname: Sharma fullname: Sharma, Nikita organization: Advanced Materials and Intelligent Technologies Higher Education and Industrial Cooperation Centre, University of Miskolc, H-3515 Miskolc, Hungary – sequence: 9 givenname: Lilla surname: Nánai fullname: Nánai, Lilla organization: Department of Applied and Environmental Chemistry, University of Szeged, H-6720, Szeged, Hungary – sequence: 10 givenname: Klara surname: Hernadi fullname: Hernadi, Klara organization: Institute of Physical Metallurgy, Metal Forming and Nanotechnology, University of Miskolc, 3515 Miskolc-Egyetemváros, Hungary – sequence: 11 givenname: Zoltán surname: Németh fullname: Németh, Zoltán email: kemnemet@uni-miskolc.hu organization: Advanced Materials and Intelligent Technologies Higher Education and Industrial Cooperation Centre, University of Miskolc, H-3515 Miskolc, Hungary |
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Keywords | Adsorption Micro CT ZnO-MWCNT composites Photocatalysis Hybrid membrane |
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The novel photoactive membranes have grabbed the attention in the field of environmental protection by employing wastewater treatments and... The novel photoactive membranes have grabbed the attention in the field of environmental protection by employing wastewater treatments and the removal of... |
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