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支持 TiO 的陶瓷材料在液相废水中光催化降解新型污染物的研究进展:综述

Supported TiO in Ceramic Materials for the Photocatalytic Degradation of Contaminants of Emerging Concern in Liquid Effluents: A Review.

机构信息

Chemical Engineering Processes and Forest Products Research Center (CIEPQPF), Department of Chemical Engineering, Faculty of Sciences and Technology, University of Coimbra, Rua Sílvio Lima, Polo II, 3030-790 Coimbra, Portugal.

出版信息

Molecules. 2021 Sep 3;26(17):5363. doi: 10.3390/molecules26175363.

Abstract

The application of TiO as a slurry catalyst for the degradation of contaminants of emerging concern (CEC) in liquid effluents has some drawbacks due to the difficulties in the catalyst reutilization. Thus, sophisticated and expensive separation methods are required after the reaction step. Alternatively, several types of materials have been used to support powder catalysts, so that fixed or fluidized bed reactors may be used. In this context, the objective of this work is to systematize and analyze the results of research inherent to the application of ceramic materials as support of TiO in the photocatalytic CEC removal from liquid effluents. Firstly, an overview is given about the treatment processes able to degrade CEC. In particular, the photocatalysts supported in ceramic materials are analyzed, namely the immobilization techniques applied to support TiO in these materials. Finally, a critical review of the literature dedicated to photocatalysis with supported TiO is presented, where the performance of the catalyst is considered as well as the main drivers and barriers for implementing this process. A focal point in the future is to investigate the possibility of depurating effluents and promote water reuse in safe conditions, and the supported TiO in ceramic materials may play a role in this scope.

摘要

TiO 作为浆状催化剂在液体废水中降解新兴污染物(CEC)存在一些缺点,因为催化剂的再利用存在困难。因此,反应后需要采用复杂和昂贵的分离方法。或者,可以使用多种类型的材料来支撑粉末催化剂,以便使用固定床或流化床反应器。在这种情况下,本工作的目的是系统地和分析将陶瓷材料作为 TiO 支撑在液体废水中光催化 CEC 去除中的应用所固有的研究结果。首先,对能够降解 CEC 的处理工艺进行了概述。特别地,分析了负载在陶瓷材料上的光催化剂,即应用于这些材料中负载 TiO 的固定化技术。最后,对负载 TiO 的光催化进行了文献综述,其中考虑了催化剂的性能以及实施该过程的主要驱动力和障碍。未来的一个重点是研究在安全条件下净化废水和促进水再利用的可能性,而陶瓷材料中的负载 TiO 可能在这方面发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9132/8434047/019e0885ee9a/molecules-26-05363-g001.jpg

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