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An Innovative Sunlight‐Driven Device for Photocatalytic Drugs Degradation: from laboratory‐ to real‐Scale Application. A First Step Toward Vulnerable Communities

Articolo
Data di Pubblicazione:
2024
Citazione:
An Innovative Sunlight‐Driven Device for Photocatalytic Drugs Degradation: from laboratory‐ to real‐Scale Application. A First Step Toward Vulnerable Communities / M.G. Galloni, E. Falletta, M. Mahdi, G. Cerrato, A. Giordana, D.C. Boffito, C.L. Bianchi. - In: ADVANCED SUSTAINABLE SYSTEMS. - ISSN 2366-7486. - 8:7(2024 Jun), pp. 2300565.1-2300565.12. [10.1002/adsu.202300565]
Abstract:
Freshwater represents one of the most precious resources on the planet, so it is fundamental to preserve it. In this work, an innovative sunlight-driven device composed of bismuth oxybromide (BiOBr) grown on a material derived from natural sources, i.e., Lightweight Expanded Clay Aggregates (LECA), is developed to clean surface waters under natural solar light irradiation. For this purpose, the photodegradation of two non-steroidal anti-inflammatory drugs, ibuprofen, and diclofenac, is investigated under varying operative conditions. Laboratory- and real-scale experiments reveal that the fabricated floating BiOBr/LECA photocatalyst fully degrades diclofenac, whereas limited abatement of ibuprofen is observed. Based on the identification of specific transformation products (TPs) during the degradation, this behavior seems to be strongly related to the different structures of the two drugs. In fact, the main TP produced during diclofenac degradation derives from dechlorination and ring condensation: this type of photocatalytic degradation pathway is generally favored over the C─C bonds's cleavage, which is a unique possibility for IBU abatement. Moreover, the potential partial adsorption of these species on the photocatalyst's active sites can cause their deactivation. Finally, reusability tests demonstrate the high stability of the floating composite.
Tipologia IRIS:
01 - Articolo su periodico
Keywords:
diclofenac; eco-friendly material; ibuprofen; non-steroidal anti-inflammatory drugs; surface water treatment; sustainable floating photocatalysts;
Elenco autori:
M.G. Galloni, E. Falletta, M. Mahdi, G. Cerrato, A. Giordana, D.C. Boffito, C.L. Bianchi
Autori di Ateneo:
BIANCHI CLAUDIA LETIZIA MADDALENA ( autore )
FALLETTA ERMELINDA ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/1027860
Link al Full Text:
https://air.unimi.it/retrieve/handle/2434/1027860/2717448/Advanced%20Sustainable%20Systems%20-%202024%20-%20Galloni%20-%20An%20Innovative%20Sunlight%BFDriven%20Device%20for%20Photocatalytic%20Drugs%20Degradation%20.pdf
Progetto:
Water decontamination by sunlight-driven floating photocatalytic systems (SUNFLOAT)
  • Aree Di Ricerca

Aree Di Ricerca

Settori (6)


Settore CHIM/02 - Chimica Fisica

Settore CHIM/03 - Chimica Generale e Inorganica

Settore CHIM/04 - Chimica Industriale

Settore CHEM-02/A - Chimica fisica

Settore CHEM-03/A - Chimica generale e inorganica

Settore CHEM-04/A - Chimica industriale
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