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TiO(2) and N-TiO(2) Sepiolite and Zeolite Composites for Photocatalytic Removal of Ofloxacin from Polluted Water

TiO(2) sepiolite and zeolite composites, as well the corresponding N-doped composites, synthesized through a sol–gel method, were tested for the photocatalytic degradation of a widespread fluoroquinolone antibiotic (ofloxacin) under environmental conditions. The catalysts were characterized by X-ray...

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Autores principales: Sturini, Michela, Maraschi, Federica, Cantalupi, Alice, Pretali, Luca, Nicolis, Stefania, Dondi, Daniele, Profumo, Antonella, Caratto, Valentina, Sanguineti, Elisa, Ferretti, Maurizio, Albini, Angelo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7040821/
https://www.ncbi.nlm.nih.gov/pubmed/31979204
http://dx.doi.org/10.3390/ma13030537
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author Sturini, Michela
Maraschi, Federica
Cantalupi, Alice
Pretali, Luca
Nicolis, Stefania
Dondi, Daniele
Profumo, Antonella
Caratto, Valentina
Sanguineti, Elisa
Ferretti, Maurizio
Albini, Angelo
author_facet Sturini, Michela
Maraschi, Federica
Cantalupi, Alice
Pretali, Luca
Nicolis, Stefania
Dondi, Daniele
Profumo, Antonella
Caratto, Valentina
Sanguineti, Elisa
Ferretti, Maurizio
Albini, Angelo
author_sort Sturini, Michela
collection PubMed
description TiO(2) sepiolite and zeolite composites, as well the corresponding N-doped composites, synthesized through a sol–gel method, were tested for the photocatalytic degradation of a widespread fluoroquinolone antibiotic (ofloxacin) under environmental conditions. The catalysts were characterized by X-ray diffraction (XRD), Brunauer–Emmett–Teller (BET), scanning electron microscopy (SEM), and diffuse reflectance spectroscopy (DRS) analyses. A complete drug degradation occurred in 10–15 min in the presence of both TiO(2) sepiolite and zeolite catalysts, and in 20–30 min with the N-doped ones. Sepiolite proved to be a better TiO(2) support compared to the most common zeolite both in terms of adsorption capacity and photocatalytic efficiency in pollutants degradation. The influence of nitrogen doping (red shift from 3.2 to 3.0 eV) was also investigated. Although it was blurred by a marked increase of the particle dimension and thus a decrease of the specific surface area of the doped catalysts, it allowed a faster drug removal than direct photolysis. The photochemical paths and photoproducts were investigated, too.
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spelling pubmed-70408212020-03-09 TiO(2) and N-TiO(2) Sepiolite and Zeolite Composites for Photocatalytic Removal of Ofloxacin from Polluted Water Sturini, Michela Maraschi, Federica Cantalupi, Alice Pretali, Luca Nicolis, Stefania Dondi, Daniele Profumo, Antonella Caratto, Valentina Sanguineti, Elisa Ferretti, Maurizio Albini, Angelo Materials (Basel) Article TiO(2) sepiolite and zeolite composites, as well the corresponding N-doped composites, synthesized through a sol–gel method, were tested for the photocatalytic degradation of a widespread fluoroquinolone antibiotic (ofloxacin) under environmental conditions. The catalysts were characterized by X-ray diffraction (XRD), Brunauer–Emmett–Teller (BET), scanning electron microscopy (SEM), and diffuse reflectance spectroscopy (DRS) analyses. A complete drug degradation occurred in 10–15 min in the presence of both TiO(2) sepiolite and zeolite catalysts, and in 20–30 min with the N-doped ones. Sepiolite proved to be a better TiO(2) support compared to the most common zeolite both in terms of adsorption capacity and photocatalytic efficiency in pollutants degradation. The influence of nitrogen doping (red shift from 3.2 to 3.0 eV) was also investigated. Although it was blurred by a marked increase of the particle dimension and thus a decrease of the specific surface area of the doped catalysts, it allowed a faster drug removal than direct photolysis. The photochemical paths and photoproducts were investigated, too. MDPI 2020-01-23 /pmc/articles/PMC7040821/ /pubmed/31979204 http://dx.doi.org/10.3390/ma13030537 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
Sturini, Michela
Maraschi, Federica
Cantalupi, Alice
Pretali, Luca
Nicolis, Stefania
Dondi, Daniele
Profumo, Antonella
Caratto, Valentina
Sanguineti, Elisa
Ferretti, Maurizio
Albini, Angelo
TiO(2) and N-TiO(2) Sepiolite and Zeolite Composites for Photocatalytic Removal of Ofloxacin from Polluted Water
title TiO(2) and N-TiO(2) Sepiolite and Zeolite Composites for Photocatalytic Removal of Ofloxacin from Polluted Water
title_full TiO(2) and N-TiO(2) Sepiolite and Zeolite Composites for Photocatalytic Removal of Ofloxacin from Polluted Water
title_fullStr TiO(2) and N-TiO(2) Sepiolite and Zeolite Composites for Photocatalytic Removal of Ofloxacin from Polluted Water
title_full_unstemmed TiO(2) and N-TiO(2) Sepiolite and Zeolite Composites for Photocatalytic Removal of Ofloxacin from Polluted Water
title_short TiO(2) and N-TiO(2) Sepiolite and Zeolite Composites for Photocatalytic Removal of Ofloxacin from Polluted Water
title_sort tio(2) and n-tio(2) sepiolite and zeolite composites for photocatalytic removal of ofloxacin from polluted water
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7040821/
https://www.ncbi.nlm.nih.gov/pubmed/31979204
http://dx.doi.org/10.3390/ma13030537
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