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The optimum conditions for synthesis of Fe3O4/ZnO core/shell magnetic nanoparticles for photodegradation of phenol

机译:合成用于苯酚光降解的Fe3O4 / ZnO核/壳磁性纳米粒子的最佳条件

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The photocatalysis of phenol was studied using Fe3O4/ZnO core/shell magnetic nanoparticles (MNPs). The photocatalysts were synthesized by coating of ZnO onto the magnetite by precipitation method and characterized by XRD, SEM and FTIR measurements. Using the Taguchi method, this study analyzes the effect of parameters such as calcinations time, calcinations temperature and molar ratio of Fe3O4:ZnO on the photo activity of Fe3O4/ZnO MNPs. XRD and FTIR analysis confirm that coating process was done successfully. SEM images show that the average particle size of synthesized Fe3O4/ZnO nanoparticles was about 50?nm. The phenol removal efficiency of 88% can be achieved by using a photocatalyst which is synthesized through the optimum conditions: calcinations temperature of 550°C, calcinations time of 2?hours and molar ratio of 1:10 for Fe3O4:ZnO.Keywords: Fe3O4/ZnO nanoparticles, Photocatalysis, Phenol removal, Synthesis
机译:使用Fe3O4 / ZnO核/壳磁性纳米粒子(MNPs)研究了苯酚的光催化作用。通过沉淀法将ZnO涂覆在磁铁矿上来合成光催化剂,并通过XRD,SEM和FTIR测量对其进行表征。利用田口方法,研究了煅烧时间,煅烧温度和Fe3O4:ZnO摩尔比等参数对Fe3O4 / ZnO MNPs光活性的影响。 XRD和FTIR分析证实涂覆过程已成功完成。 SEM图像显示,合成的Fe3O4 / ZnO纳米粒子的平均粒径约为50?nm。通过在最佳条件下合成的光催化剂可以实现88%的苯酚去除率:煅烧温度为550°C,煅烧时间为2小时,Fe3O4:ZnO的摩尔比为1:10。 / ZnO纳米粒子,光催化,苯酚去除,合成

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