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Photocatalytic removal of patent blue V dye on Au-TiO2 and Pt-TiO2 catalysts

机译:在Au-TiO2和Pt-TiO2催化剂上光催化去除专利蓝V染料

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摘要

In this work it was studied the efficiency of a photocatalytic process for the removal of patent blue V. This dye is very difficult to remove by conventional treatments such as adsorption or coagulation therefore the photocatalytic process is a very interesting alternative for the removal this dye mainly because it does not require expensive oxidants and it can be carried out at mild temperatures and pressures. In this work it was tested the efficiency of Au-TiO2 and Pt-TiO2 photocatalysts in the Patent blue V removal. The Au-TiO2 catalysts were prepared by two different methods: chemical reduction and photochemical deposition; Pt-TiO2 catalysts were obtained only by photochemical deposition. In the synthesis of the catalysts prepared by photochemical deposition, it was evaluated the influence of some parameters, such as deposition time and the intensity of the light source over the physicochemical properties and photocatalytic activity of the materials obtained. An analysis of the effect of the catalyst dosage and initial patent blue V concentration over the dye degradation efficiency was also attempted.\ud\udIn general, it was observed that the presence of Au or Pt on TiO2 enhances the patent blue V photodegradation; it was found that noble metal particle size and distribution on TiO2 surface are important factors influencing the dye removal. The highest dye degradation was obtained over the Au-TiO2 catalyst prepared by photochemical deposition, using high light intensity and 15 min of deposition time during the synthesis. A discoloration and a total organic carbon (TOC) removal of 93 and 67% respectively, were obtained over this material after 180 min of UV irradiation. These values are higher than that the obtained on S-TiO2 (discoloration and TOC removal of about 25% and 3%, respectively).
机译:在这项工作中,研究了光催化工艺去除专利蓝V的效率。这种染料很难通过常规处理(例如吸附或凝聚)去除,因此光催化工艺是去除该染料的非常有趣的替代方法,主要是因为它不需要昂贵的氧化剂,并且可以在温和的温度和压力下进行。在这项工作中,测试了专利蓝V去除中Au-TiO2和Pt-TiO2光催化剂的效率。通过两种不同的方法制备Au-TiO2催化剂:化学还原法和光化学沉积法。仅通过光化学沉积获得Pt-TiO 2催化剂。在通过光化学沉积制备的催化剂的合成中,评估了一些参数的影响,例如沉积时间和光源强度对所得材料的物理化学性质和光催化活性的影响。还尝试了分析催化剂用量和初始漆蓝V浓度对染料降解效率的影响。\ ud \ ud通常,观察到Au或Pt在TiO2上的存在​​会增强漆蓝V的光降解;发现贵金属的粒径和在TiO2表面的分布是影响染料去除的重要因素。在通过光化学沉积制备的Au-TiO2催化剂上,在合成过程中使用高的光强度和15分钟的沉积时间可获得最高的染料降解。 180分钟的紫外线照射后,该材料的变色和总有机碳(TOC)去除率分别为93%和67%。这些值高于在S-TiO 2上获得的值(变色和TOC去除分别为约25%和3%)。

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