For the first time, sustainable LaFeO3 powders were prepared from soluble bio-based substances (SBO) extracted from urban wastes. For the preparation of the perovskite-type powders, a modified solutioncombustion synthesis route was used, where SBO have the triple role of fuel, complexant and micro-powders, using complementary characterization techniques, evidenced their peculiar microstructural, morphological, textural and photocatalytic properties. Preliminary photodegradation tests of a phenol-based wastewater pollutant and photobleaching of a model dye were performed on the waste-derived and reference LaFeO3 structural templates. A careful examination of the LaFeO3 powders; the obtained results encourage further studies on the application of these materials as heterogeneous catalysts for wastewater treatment. Moreover, a meaningful amount of entrapped matter was evidenced in the powders, which is responsible for most of their peculiar properties.

A new sustainable LaFeO3 material prepared from biowaste sourced soluble substances

Francesca Deganello;Maria Laura Tummino;Carla Calabrese;MARIA LUISA TESTA;
2015

Abstract

For the first time, sustainable LaFeO3 powders were prepared from soluble bio-based substances (SBO) extracted from urban wastes. For the preparation of the perovskite-type powders, a modified solutioncombustion synthesis route was used, where SBO have the triple role of fuel, complexant and micro-powders, using complementary characterization techniques, evidenced their peculiar microstructural, morphological, textural and photocatalytic properties. Preliminary photodegradation tests of a phenol-based wastewater pollutant and photobleaching of a model dye were performed on the waste-derived and reference LaFeO3 structural templates. A careful examination of the LaFeO3 powders; the obtained results encourage further studies on the application of these materials as heterogeneous catalysts for wastewater treatment. Moreover, a meaningful amount of entrapped matter was evidenced in the powders, which is responsible for most of their peculiar properties.
2015
Istituto per lo Studio dei Materiali Nanostrutturati - ISMN
Inglese
39
877
885
9
Esperti anonimi
LaFeO3; biowaste sourced soluble substances
Internazionale
Elettronico
No
9
info:eu-repo/semantics/article
262
Deganello, Francesca; Tummino, MARIA LAURA; Calabrese, Carla; Testa, MARIA LUISA; Avetta, Paola; Fabbri, Debora; Bianco Prevot, Alessandra; Montoneri,...espandi
01 Contributo su Rivista::01.01 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/227921
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