节点文献
微波诱导Fe2O3/Al2O3催化剂催化氧化处理水中苯酚
Microwave-Induced Catalytic Oxidation Process for Treatment of Phenol in Water with Fe2O3/Al2O3 Catalyst
【摘要】 以γ-Al2O3为载体,采用浸渍焙烧法制备了Fe2O3/Al2O3催化剂,并将其应用于微波诱导催化氧化处理模拟含酚废水.X射线衍射和X射线荧光光谱测试结果表明,活性组分氧化铁在催化剂中以α-Fe2O3的形式存在,其含量为3.71%.与载体氧化铝相比,Fe2O3/Al2O3催化剂的比表面积和平均孔径及平均孔容略有降低.对于100mg/L的模拟含酚废水,最佳的处理工艺条件为微波辐照功率400W,辐照时间5min,催化剂加入量60g/L,H2O2浓度600mg/L,体系pH>4.在此工艺条件下,水中苯酚的去除率达97.98%.催化剂连续使用20次后苯酚去除率仍达96.34%.表观反应动力学研究表明,在氧化铁催化剂存在的条件下,微波诱导H2O2产生氧化性极强的羟基自由基,整个反应过程可分为微波诱导阶段和催化氧化阶段,两个阶段的氧化过程均符合一级反应动力学规律.
【Abstract】 The ferric oxide catalyst was prepared by the dipping-calcination method using γ-Al2O3 as a carrier and the microwave-induced oxidation process was developed to treat phenol in water. The catalyst structure was determined by XRD, XRF and N2 adsorption. The effects of operating conditions on the catalyst activity, the using life of the catalyst and the reaction kinetics were studied. The results show that α-Fe2O3 is loaded on the surface of γ-Al2O3 and the content of α-Fe2O3 in the catalyst is 3.71%. Under the optimal treatment conditions of phenol concentration of 100 mg/L, microwave power of 400 W, irradiation time of 5 min, catalyst amount of 60 g/L, H2O2 concentration of 600 mg/L and pH>4, a phenol removal rate of 97.98% is obtained. The catalyst can be reused more than 20 times remaining a phenol removal rate of 96.34%. The oxidation process can be divided into two stages, both of them are in accord with the first-order reaction kinetics.
【Key words】 microwave-induced oxidation process; hydrogen peroxide; ferric oxide; alumina; supported catalyst; phenol; wastewater treatment;
- 【文献出处】 催化学报 ,Chinese Journal of Catalysis , 编辑部邮箱 ,2005年07期
- 【分类号】X703.1
- 【被引频次】82
- 【下载频次】1040