Enhancing acid orange II degradation in ozonation processes with CaFe 2 O 4 nanoparticles as a heterogeneous catalyst

This study used CaFe O nanoparticles as a catalyst for ozonation processes to degrade Acid Orange II (AOII) in aqueous solution. The study compared heterogeneous catalytic ozonation (CaFe O /O ) with ozone treatment alone (O ) at different pH values (3-11), catalyst dosages (0.25-2.0 g L ), and init...

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Veröffentlicht in:RSC advances 2023-09, Vol.13 (41), p.28753-28766
Hauptverfasser: Van, Huu Tap, Hoang, Van Hung, Luu, Thi Cuc, Vi, Thuy Linh, Nga, Luong Thi Quynh, Marcaida, Gio Serafin Ivan Jimenez, Pham, Truong-Tho
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Sprache:eng
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Zusammenfassung:This study used CaFe O nanoparticles as a catalyst for ozonation processes to degrade Acid Orange II (AOII) in aqueous solution. The study compared heterogeneous catalytic ozonation (CaFe O /O ) with ozone treatment alone (O ) at different pH values (3-11), catalyst dosages (0.25-2.0 g L ), and initial AOII concentrations (100-500 mg L ). The O alone and CaFe O /O systems nearly completely removed AOII's color. In the first 5 min, O alone had a color removal efficiency of 75.66%, rising to 92% in 10 min, whereas the CaFe O /O system had 81.49%, 94%, and 98% after 5, 10, and 20 min, respectively. The O and CaFe O /O systems degrade TOC most efficiently at pH 9 and better with 1.0 g per L CaFe O . TOC removal effectiveness reduced from 85% to 62% when the initial AOII concentration increased from 100 to 500 mg L . The study of degradation kinetics reveals a pseudo-first-order reaction mechanism significantly as the solution pH increased from 3 to 9. Compared to the O alone system, the CaFe O /O system has higher values. At pH 9, the value for the CaFe O /O system is 1.83 times higher than that of the O alone system. Moreover, increasing AOII concentration from 100 mg L to 500 mg L subsequently caused a decline in the values. The experimental data match pseudo-first-order kinetics, as shown by values of 0.95-0.99. AOII degradation involves absorption, ozone activation, and reactive species production based on the existence of CaO and FeO in the CaFe O nanocatalyst. This catalyst can be effectively recycled multiple times.
ISSN:2046-2069
2046-2069
DOI:10.1039/D3RA04553F