The mechanism of Fe (III)-catalyzed ozonation of phenol.

Xiang-Feng Zhu, Xin-Hua Xu
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引用次数: 19

Abstract

Fe (III)-catalyzed ozonation yielded better degradation rate and extent of COD (Chemical Oxygen Demand) or oxalic acid as compared with oxidation by ozone alone. Two parameters with strong effects on the efficiency of ozonation are pH of the solution and the catalyst (Fe(3+)) dosage. The existence of a critical pH value determining the catalysis of Fe (III) in acid conditions was observed in phenol and oxalic acid systems. The best efficiency of catalysis was obtained at a moderate concentration of the catalyst. A reasonable mechanism of Fe (III)-catalyzed ozonation of phenol was obtained based on the results and literature.

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Fe (III)催化苯酚臭氧化反应机理研究。
与单独臭氧氧化相比,Fe (III)催化臭氧氧化对COD(化学需氧量)或草酸的降解速度和程度更高。对臭氧化效率影响较大的两个参数是溶液的pH值和催化剂(Fe(3+))的用量。在苯酚和草酸体系中,存在一个决定铁(III)在酸性条件下催化作用的临界pH值。催化剂浓度适中时,催化效率最高。结合实验结果和文献资料,得出了Fe (III)催化苯酚臭氧化的合理机理。
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