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Solar or UVA-Visible Photocatalytic Ozonation of Water Contaminants

机译:太阳能或UVA可见的水污染物的光催化臭氧化

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摘要

An incipient advanced oxidation process, solar photocatalytic ozonation (SPO), is reviewed in this paper with the aim of clarifying the importance of this process as a more sustainable water technology to remove priority or emerging contaminants from water. The synergism between ozonation and photocatalytic oxidation is well known to increase the oxidation rate of water contaminants, but this has mainly been studied in photocatalytic ozonation systems with lamps of different radiation wavelength, especially of ultraviolet nature (UVC, UVB, UVA). Nowadays, process sustainability is critical in environmental technologies including water treatment and reuse; the application of SPO systems falls into this category, and contributes to saving energy and water. In this review, we summarized works published on photocatalytic ozonation where the radiation source is the Sun or simulated solar light, specifically, lamps emitting radiation to cover the UVA and visible light spectra. The main aspects of the review include photoreactors used and radiation sources applied, synthesis and characterization of catalysts applied, influence of main process variables (ozone, catalyst, and pollutant concentrations, light intensity), type of water, biodegradability and ecotoxicity, mechanism and kinetics, and finally catalyst activity and stability.
机译:本文对初期的高级氧化工艺,即太阳光催化臭氧化(SPO)进行了综述,目的是阐明该工艺作为一种更可持续的水技术从水中去除优先或新兴污染物的重要性。众所周知,臭氧化与光催化氧化之间的协同作用可提高水污染物的氧化速率,但这主要是在具有不同辐射波长,尤其是紫外线性质(UVC,UVB,UVA)的灯的光催化臭氧化系统中进行的。如今,过程可持续性对于包括水处理和回用在内的环境技术至关重要。 SPO系统的应用属于这一类,并有助于节省能源和水。在这篇综述中,我们总结了在光催化臭氧化方面发表的工作,其中的辐射源是太阳或模拟太阳光,特别是发出辐射以覆盖UVA和可见光谱的灯。审查的主要方面包括使用的光反应器和应用的辐射源,应用的催化剂的合成和表征,主要工艺变量(臭氧,催化剂和污染物浓度,光强度)的影响,水的类型,生物降解性和生态毒性,机理和动力学,最后是催化剂的活性和稳定性。

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