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Cu/Al2O3 catalyzed ozonation for degrading an endocrine disruptor (alachlor) in water was investigated.
The Cu/Al2O3 catalyzed ozonation for degrading an endocrine disruptor alachlor in water was investigated.
The degradation of alachlor in the Cu/Al2O3 powder catalyzed ozonation process is shown in Figure 3.
To modify the ability of the catalyst effectively and produce more OH for catalyzing the ozonation of alachlor, Cu/Al2O3-honeycomb catalyzed ozonation was studied.
It was found that ozonation, Fe2+/Fe3+ catalyzed ozonation, the redox reactions of electro-reduction and electro-oxidation are the most important mechanisms in OIEF process.
More OH was produced in this process than in the Cu/Al2O3 powder catalyzed ozonation process (the DMPO-OH signal increased from 10000 to 45000), and the catalytic reaction would be subsequently more sufficient.
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The composite metal oxide-loaded Al2O3-catalyzed ozonation exhibited great potential and industrial feasibility for advanced treatment of bio-recalcitrant PRW-ROC.
It was found that Fe2+ and Mn2+ could catalyze the ozonation of alachlor in water [17].
TiO2-catalyzed ozonation was more effective for the removal of some pollutant than ozone alone.
However, the biggest disadvantage of metal-catalyzed ozonation is the difficulty of the separation of the solid liquid phase.
These experimental results demonstrated that metal-catalyzed ozonation has the potential to oxidize the refractory pollutants and degrade the oxidized intermediate products.
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