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Preparation and Its Application of TiO2/ZrO2 and TiO2/Fe Photocatalysts: A Perspective Study

机译:TiO2 / ZrO2和TiO2 / Fe光催化剂的制备及其应用:前景研究

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The preparation and application of TiO2/ZrO2 and TiO2/Fe photocatalysts were reviewed. We have prepared TiO2/ZrO2 and TiO2/Fe photocatalyst by sol-gel process for degradation of phenolic compounds, decolourization of dye solution and removal of heavy metals in the wastewater. ZrO2/TiO2 composite photocatalytic was produced on the pure titanium substrate using in situ Zr(OH)4 colloidal particle and the ZrO2/TiO2 composite shows a lamellar and porous structure which consists of anatase, rutile and ZrO2 phases by the micro-arc oxidation technique. TiO2 doped with Fe produced by the sol-gel method using titanium alkoxide as the precursor of titania as well as iron as dopant sources. Among synthesized photocatalysts, 0.1 M Zr and 0.15 M N supported on TiO2 exhibited the best visible-light response and the highest NO photodegradation activity. The photocatalysts calcined at 500 °C are spherical particles with a crystallite size about 10-20 nm and the crystal phase presents a mixture of anatase (dominant phase) and rutile. The optimum doping amount of iron ions is 0.001 mol %. Although the addition of iron ions decreases the surface area of Fe/TiO2, the photocatalytic activity of Fe/TiO2 (i.e., 0.001 mol %) is better than those of synthesized bare TiO2 or P25. Consequently, the role of Fe may be responsible for the enhanced photodegradation, as compared to those from P25 or synthesized bare TiO2.
机译:综述了TiO2 / ZrO2和TiO2 / Fe光催化剂的制备和应用。我们通过溶胶-凝胶法制备了TiO2 / ZrO2和TiO2 / Fe光催化剂,用于降解酚类化合物,染料溶液脱色和去除废水中的重金属。原位Zr(OH)4胶体粒子在纯钛基体上制备ZrO2 / TiO2复合光催化剂,ZrO2 / TiO2复合材料通过微弧氧化技术显示出由锐钛矿相,金红石相和ZrO2相组成的层状多孔结构。 。用醇钛作为二氧化钛的前体以及铁作为掺杂剂源,通过溶胶-凝胶法生产的铁掺杂的TiO2。在合成的光催化剂中,负载在TiO2上的0.1 M Zr和0.15 M N表现出最佳的可见光响应和最高的NO光降解活性。在500°C下煅烧的光催化剂是球形颗粒,微晶尺寸约为10-20 nm,且晶相呈现锐钛矿(主相)和金红石的混合物。铁离子的最佳掺杂量为0.001摩尔%。尽管铁离子的添加​​减少了Fe / TiO 2的表面积,但是Fe / TiO 2的光催化活性(即0.001mol%)比合成的裸露的TiO 2或P25更好。因此,与P25或合成的裸露TiO2相比,Fe的作用可能是光降解增强的原因。

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