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Graphitic carbon nitride as a sustainable photocatalyst material for pollutants removal. State-of-the art, preliminary tests and application perspectives

Articolo
Data di Pubblicazione:
2021
Abstract:
Photocatalysis is an attractive strategy for emerging pollutants remediation. Research towards the development of new, efficient and effective catalytic materials with high activity under wide irradiation spectra is a highly active sector in material science. Various semiconductor materials have been employed as photocatalysts, including TiO2, SrTiO3, CdS, BiVO4, Ta3N5, TaON, Ag3PO4, and g-C3N4 . The latter is a metal-free, low cost polymer, providing high adsorption and catalytic properties, shown to be promising for photocatalysis applications under visible light. Furthermore, g-C3N4 composites are among the most promising advanced photocatalytical materials that can be produced by green synthesis processes. In this paper, the state-of-the-art of g-C3N4 applications is reviewed, and application perspectives are discussed. Photocatalysis tests with g-C3N4 under Xenon irradiation were performed to gather first-hand information to improve photoreactor design. Xenon light spectrum appears to be a suitable radiation source to replace direct sunlight in engineered pollutants removal processes catalyzed by g-C3N4, in lieu of other currently used heterogeneous photocatalysis processes (e.g., TiO2-UV). LED sources are also very promising due to higher energy efficiency and customizable, catalyzer-specific irradiation spectra.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
Adsorption; AOPs; Graphitic carbon nitride; Organic pollutants; Photocathalysis; Titanium dioxide; Xenon lamp
Elenco autori:
Cecconet, D.; Sturini, M.; Malavasi, L.; Capodaglio, A. G.
Autori di Ateneo:
CAPODAGLIO ANDREA GIUSEPPE
MALAVASI LORENZO
STURINI MICHELA
Link alla scheda completa:
https://iris.unipv.it/handle/11571/1450845
Pubblicato in:
MATERIALS
Journal
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