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Effective processes of phenol degradation on Fe3O4-TiO2 nanostructured magnetic photocatalyst

机译:Fe3O4-TiO2纳米结构磁性光催化剂的苯酚降解的有效方法

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The photocatalytic activity of nanocrystalline titanium dioxide containing various phases (anatase, rutile) can be used for example for the splitting of water into H-2 and O-2 under ultraviolet light. In our study the suitability of magnetic Fe3O4-TiO2 nanostructures obtained by microwave-assisted solvothermal method was checked for degradation of phenol. The selected method for the synthesis of Fe3O4-TiO2 does not require the calcination process and could be effective below 170 degrees C. The average size of the crystallites of Fe3O4 was determined to be similar to 27 nm, while that of surrounding TiO2 particles equals to about 17 nm. High photoactivity in the phenol degradation process was confirmed for synthesized nanomaterials. Their activity can be controlled by the TiO2: Fe3O4 mass ratio. After 180 min of the reaction, the conversion of phenol was 100% over the commercial catalyst (P25) and 70% over the Fe3O4-TiO2(3 ml TBOT). Superparamagnetic behavior of the obtained nanostructures was evidenced with the finite size effects and superexchange interactions playing prominent role. Magnetic properties and chemical stability permitted easy separation of the obtained nanostructures from the solution after the photocatalytic degradation process and their re-use.
机译:含有各种相(锐钛矿,金红石)的纳米晶钛的光催化活性可用于例如在紫外光下将水分成H-2和O-2。在我们研究中,检查通过微波辅助溶解的溶剂热法获得的磁Fe3O4-TiO2纳米结构的适用性进行苯酚的降解。用于合成Fe3O4-TiO2的所选方法不需要煅烧过程,并且可以有效低于170℃。测定Fe3O4的微晶的平均尺寸与27nm相似,而周围的TiO 2颗粒等于大约17纳米。确认合成纳米材料的酚类降解过程中的高光接收。它们的活性可以通过TiO2:Fe3O4质量比控制。在反应180分钟后,在商业催化剂(P25)上,苯酚的转化为100%,在Fe 3 O 4-TiO 2(3ml TBot)上为70%。所获得的纳米结构的超顺磁性行为具有有限尺寸的效应和超速相互作用发挥着突出作用的影响。磁性和化学稳定性允许在光催化降解过程和再使用后,易于分离所得纳米结构。

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