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Synthesis and Photocatalytic Capability of Cr-TiO2 Film

机译:Cr-TiO2薄膜的合成和光催化能力

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A TiO2 catalyst doped by Cr was prepared by the sol-gel method and characterized by UV-2550 and FS. The results revealed that the Cr6+-doped TiO2 film had the higher photocatalytic activity than pure TiO2 film. Introduction Semiconductor photocatalysts, mainly TiO2, have attracted much attention in last decade because of their potential application in the removal of many organic and inorganic pollutants in air or water. Many studies have been carried out on the application and modification of TiO2, and various photocatalytic reactors have been investigated according to respective application demands for the purification of air and water. In the water and wastewater treatment field, slurry reactor is the most common device because of its high specific surface area and good dispersion. However, the use of TiO2 slurry reactor is still limited mainly due to difficult separation of TiO2 particles from treated water. To overcome the problem, Titania beads, TiO2 based thin film, fiberglass loaded with titania, and encapsulated titania within a zeolite framework have been prepared and used in fixed bed. However, the activity of TiO2 photocatalyst is reduced to a considerable extent by these immobilization techniques because the effective surface area of photocatalysts is decreased considerably. The aim of this study is to obtain a magnetically separable photocatalyst, which is stable and easy to be prepared. In the work, Cr as magnetic cores was prepared by liquid catalytic phase transfer method at low temperature, and magnetically separable TiO2-Cr photocatalysts were synthesized.
机译:被Cr掺杂的TiO 2催化剂是由溶胶 - 凝胶方法制备和表征通过UV-2550和FS。结果表明,所述的Cr6 +掺杂的TiO 2膜具有比纯TiO 2膜的较高的光催化活性。引言半导体光催化剂,二氧化钛为主,吸引,因为他们在清除空气或水中的多种有机和无机污染物的潜在应用在过去十年多的关注。许多研究已经对TiO2的应用和修改进行,并且根据用于空气和水的净化各自的应用要求的各种光催化反应器进行了研究。在水和废水处理领域,淤浆反应器是由于它的高的比表面积和良好的分散体的最常见的设备。然而,使用二氧化钛淤浆反应器的仍主要有限的,由于从处理过的水的TiO 2颗粒的困难的分离。为了克服这个问题,二氧化钛小珠,沸石骨架内的TiO 2系薄膜,装载有二氧化钛的玻璃纤维,和包封二氧化钛已经被制备并在固定床使用。然而,由于光催化剂的有效表面积显着降低二氧化钛光催化剂的活性是通过这些固定技术减少到相当的程度。本研究的目的是获得一种磁性可分离光催化剂,其是稳定的且易于制备。在工作中,Cr作为磁芯在低温下制备的通过液相催化相转移方法,以及磁可分离TiO 2的光催化剂的Cr合成。

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