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钛铁矿制备二氧化钛-四氧化三铁复合材料及其光催化应用

本站小编 Free考研考试/2021-12-27

中文关键词:钛铁矿 Fe3O4/TiO2 降解光催化 英文关键词:ilmenite, Fe3O4/TiO2, degradation, photochemistry 基金项目:浙江省自然科学基金项目(LQ16B030003),浙江农林大学暨阳学院科研发展项目(JY2015RC003),绍兴市大学生创新项目(JYSXK1602)
作者单位E-mail
钟炳伟浙江农林大学暨阳学院20140040@zafu.edu.cn
胡凯凯浙江农林大学暨阳学院
董烨浙江农林大学暨阳学院
韩辉浙江农林大学暨阳学院
陈贤林浙江农林大学暨阳学院
摘要点击次数:1775 全文下载次数:0 中文摘要: TiO2因具有多种优异的特性被广泛应用在半导体光催化领域,但是纳米结构的TiO2颗粒细微,在进行光催化反应之后,难以回收再利用。本文以廉价钛铁矿为原料制备光催化剂TiO2,同时利用副产物铁合成Fe3O4,并采用简单温和的浸渍法制备Fe3O4/TiO2磁性复合材料。通过XRD、FT-IR、SEM、EDS等手段对材料形态结构进行表征分析,并以光降解有机污染物罗丹明B为探针反应,测试其光催化性能。结果表明,质量比为1:10的Fe3O4/TiO2复合材料结构稳定、分散均匀,具有最佳的光催化活性(波长356 nm下反应3 h,罗丹明B降解率达到64.0%),并表现出良好的重复性。同时,动力学结果显示降解符合一级反应动力学。 英文摘要: TiO2 is widely used in semiconductor photocatalysis due to its excellent features. However, TiO2 particles with nanoscale size is difficult to separate and recycle after the photocatalytic reactions. In this paper, we successfully synthesized the magnetic Fe3O4/TiO2composite by the simple and mild dip-molding. Both the TiO2 and Fe3O4 are originated by the cheap ilmenite as raw material. A series of characterization means including X-ray Diffraction(XRD), Fourier transform infrared spectrum(FT-IR), scanning electron microscope(SEM) and Energy Dispersion Spectrum(EDS) were used to analyze the surface structure of the Fe3O4/TiO2composite. Furthermore, the performance of Fe3O4/TiO2composite was investigated by using of photocatalytic degradation of Rhodamine B(Rh B) as a probe reaction. The results demonstrated that the ratio(weight, wt) 1:10 of Fe3O4/TiO2composite exhibited stable structure and well dispersion, possessed the highest catalytic activity: the degradation rate of Rh B reached 64.0% after 3h under UV visible light(356 nm), and outstanding repeatability. The photocatalytic degradation reaction coincides with the first-order reaction kinetics. 查看全文查看/发表评论下载PDF阅读器 相关附件:版权转让声明书 -->
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