Improved 4-nitrophenol removal at Ti/RuO2–Sb2O4–TiO2 laser-made anodes

In this study, binary and ternary mixed metal oxide anodes of Ti/RuO 2 –Sb 2 O 4 and Ti/RuO 2 –Sb 2 O 4 –TiO 2 were prepared using two different heating methods: conventional furnace and alternative CO 2 laser heating. The produced anodes were physically and electrochemically characterized by using...

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Veröffentlicht in:Environmental science and pollution research international 2021-05, Vol.28 (19), p.23634-23646
Hauptverfasser: Dória, Aline R., Santos, Géssica O. S., Pelegrinelli, Mariane M. S., Silva, Deyvid C., de Matos, Danielle B., Cavalcanti, Eliane Bezerra, Silva, Ronaldo S., Salazar-Banda, Giancarlo R., Eguiluz, Katlin I. B.
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Sprache:eng
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Zusammenfassung:In this study, binary and ternary mixed metal oxide anodes of Ti/RuO 2 –Sb 2 O 4 and Ti/RuO 2 –Sb 2 O 4 –TiO 2 were prepared using two different heating methods: conventional furnace and alternative CO 2 laser heating. The produced anodes were physically and electrochemically characterized by using different techniques. The main difference found in the laser-made anodes was their more compact morphology, without the common deep cracks found in anodes made by typical thermal decomposition, which showed an important correlation with the prolonged accelerated service life. The correlation between the physicochemical properties of the anodes with their performance towards the 4-nitrophenol oxidations is discussed. The results demonstrated that the ternary anode (Ti/RuO 2 –Sb 2 O 4 –TiO 2 ) is very promising, presenting a kinetic 5.7 times faster than the respective binary anode and the highest removal efficiency when compared with conventionally made anodes. Also, the lowest energy consumption per unit of mass of contaminant removed is seen for the laser-made Ti/RuO 2 –Sb 2 O 4 –TiO 2 anode, which evidences the excellent cost–benefit of this anode material. Finally, some by-products were identified, and a degradation route is proposed. Graphical abstract
ISSN:0944-1344
1614-7499
DOI:10.1007/s11356-020-10451-6