State Key Laboratory of Coal Mine Disaster Dynamics and Control, College of Resources and Environmental Science, Chongqing University, Chongqing 400044, PR China.
State Key Laboratory of Mechanical Transmissions, College of Materials Science and Engineering, Chongqing University, Chongqing 400044, PR China.
J Hazard Mater. 2018 Feb 15;344:230-240. doi: 10.1016/j.jhazmat.2017.10.018. Epub 2017 Oct 10.
Herein, iron oxide-coated diatomites were prepared through hydrothermal synthesis and sacrificial template redox etching reaction. The microstructure characterization results revealed that the FeO nanorods were uniformly distributed on the surface of diatomite. The effects of diverse synthetic parameters on morphology of as-synthesized FeO@diatomite were investigated. When the reaction time was prolonged from 12h to 24h, the morphology of FeOOH would change from nanorods into nanoflowers. Two different crystal phases of FeO@diatomite were obtained from the FeOOH@diatomite samples calcined under different atmospheres. The catalytic activity of α-FeO@diatomite was evaluated by the heterogeneous photo Fenton-like system through degradation of methylene blue (MB, 10 - 40mgL) in the presence of hydrogen peroxide (HO, 9mM - 120mM) under UV light irradiation. It was found that α-FeO@diatomite composites showed very excellent degradation efficiency, which was about 99% within 120min under UV irradiation. This catalyst extended the range of pH values of homogeneous Fenton reaction, in which the MB removal rate was maintained over 80.8%. Moreover, the α-FeO@diatomite catalyst still showed sound reusability after 5 rounds of degradation of MB dye. In principles, a possible photo-catalytic mechanism was proposed to testify metal oxides composites for heterogeneous photo Fenton-like reaction.
在此,通过水热合成和牺牲模板氧化还原刻蚀反应制备了氧化铁包覆的硅藻土。微观结构表征结果表明,FeO 纳米棒均匀分布在硅藻土的表面。研究了不同合成参数对合成的 FeO@硅藻土形貌的影响。当反应时间从 12 小时延长到 24 小时时,FeOOH 的形态将从纳米棒变为纳米花。在不同气氛下煅烧 FeOOH@硅藻土样品可得到两种不同晶相的 FeO@硅藻土。通过在紫外光照射下存在过氧化氢(HO,9mM-120mM)的非均相光芬顿-like 体系,评价了α-FeO@硅藻土的催化活性,以降解亚甲基蓝(MB,10-40mgL)。结果表明,α-FeO@硅藻土复合材料表现出非常优异的降解效率,在紫外光照射下 120min 内降解率约为 99%。该催化剂扩展了均相芬顿反应的 pH 值范围,其中 MB 的去除率保持在 80.8%以上。此外,α-FeO@硅藻土催化剂在 5 次降解 MB 染料后仍表现出良好的可重复使用性。原则上,提出了一种可能的光催化机制来验证金属氧化物复合材料在非均相光芬顿-like 反应中的应用。