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Synergistic degradation of methyl orange in an ultrasound intensified photocatalytic reactor

机译:超声强化光催化反应器中甲基橙的协同降解

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An original ultrasound (US) directly intensified photocatalytic reactor was designed to degrade azo dye pollutant methyl orange (MeO) using Degussa TiO _2 as the photocatalyst. The sonolytic, photocatalytic and sonophotocatalytic degradation of MeO in the new reactor and the synergistic effect between sonolysis and photocatalysis were investigated. Effects of operation parameters i.e., US power, TiO _2 dosage, liquid circulation velocity and air flow rate on degradation efficiency were investigated and optimized. The results showed that all parameters have optimal values for the sonophotocatalytic degradation of MeO, and the optimum conditions for the new process are US power 600 W, TiO _2 dosage 3 g/L, liquid circulation velocity 4.05 × 10 ~(-2) m/s and air flow rate 0.2 L/min. Under the optimum conditions, 91.52% MeO had been degraded within 1 h, and the combination of sonolysis and TiO _2 photocatalysis exhibited an obvious synergetic effect.
机译:利用Degussa TiO _2作为光催化剂,设计了一种原始的超声(US)直接增强光催化反应器,以降解偶氮染料污染物甲基橙(MeO)。研究了新反应器中MeO的声催化降解,光催化降解和声光催化降解以及声催化与光催化的协同作用。研究并优化了操作参数即美国功率,TiO _2用量,液体循环速度和空气流速对降解效率的影响。结果表明,所有参数均具有最佳的声光催化降解MeO的性能,新工艺的最佳条件为US power 600 W,TiO _2用量3 g / L,液体循环速度4.05×10〜(-2)m / s和空气流量0.2 L / min。在最佳条件下,1小时内降解了91.52%的MeO,声处理与TiO _2光催化的组合具有明显的协同作用。

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