Identificador persistente para citar o vincular este elemento: http://hdl.handle.net/10662/21409
Títulos: Preparation of a new green magnetic Fe3O4 @TiO2-P25 photocatalyst for solar advanced oxidation processes in water
Autores/as: López Gallego, Jorge
Rey Barroso, Ana
Viñuelas Zahínos, Emilio
Álvarez Peña, Pedro Modesto
Palabras clave: Síntesis verde;TiO2-P25;Fotocatalizador híbrido magnético;Metoprolol;AOPs solares;Green synthesis;Magnetic hybrid photocatalyst;Solar AOPs
Fecha de publicación: 2023
Editor/a: Elsevier
Resumen: A novel green method has been investigated to obtain a magnetic recoverable photocatalyst. Fe3O4 particles formed in situ by aerial oxidative precipitation of aqueous Fe(II) in the presence of terephthalate were bonded to TiO2-P25 nanoparticles, giving rise to a coupled semiconductor heterostructure with superparamagnetic behavior at room temperature (Fe3O4 @TiO2-P25). The synthesis method is carried out in water at room temperature with almost full recovery and recycling of terephtalic acid. The prepared samples were fully characterized by XRD, TGA-DTA-MS, ATR-FTIR, WDXRF, TEM, SEM/EDX, N2 adsorption-desorption, elemental analysis, XPS, DRS, PL spectroscopy and SQUID. Photo-stability tests showed that Fe3O4 @TiO2-P25 does not undergo photodissolution under simulated solar radiation. The photocatalytic performance of Fe3O4 @TiO2-P25 was examined based on its ability to degrade aqueous metoprolol under UV–vis radiation in the presence of O2 and O3/O2. Also, the catalyst was successfully reused in six solar photocatalytic ozonation runs with negligible loss of photocatalytic activity.
URI: http://hdl.handle.net/10662/21409
ISSN: 2213-3437
DOI: 10.1016/j.jece.2023.109999
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DQOIN - Artículos

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