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Influence of parameters on the heterogeneous photocatalytic degradation of pesticides and phenolic contaminants in wastewater : a short review

机译:参数对废水中农药和酚类污染物多相光催化降解的影响:简述

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摘要

In recent years, the application of heterogeneous photocatalytic water purification process has gained wide attention due to its effectiveness in degrading and mineralizing the recalcitrant organic compounds as well as the possibility of utilizing the solar UV and visible light spectrum. This paper aims to review and summarize the recently published works on the titanium dioxide (TiO2) photocatalytic oxidation of pesticides and phenolic compounds, predominant in storm and waste water effluents. The effect of various operating parameters on the photocatalytic degradation of pesticides and phenols are discussed. Results reported here suggested that the photocatalytic degradation of organic compounds depends on the type of photocatalyst and composition, light intensity, initial substrate concentration, amount of catalyst, pH of the reaction medium, ionic components in water, solvent types, oxidizing agents/electron acceptors, catalyst application mode, and calcinations temperature in water environment. A substantial amount of research has focused on the enhancement of TiO2 photocatalysis by modification with metal, non-metal and ion doping. Recent developments in TiO2 photocatalysis for the degradation of various pesticides and phenols are also highlighted in this review. It is evident from the literature survey that photocatalysis has shown good potential for the removal of various organic pollutants. However, still there is a need to find out the practical utility of this technique on commercial scale.
机译:近年来,异质光催化水净化工艺的应用由于其降解难矿化的有机化合物的有效性,以及利用太阳紫外线和可见光谱的可能性而受到广泛关注。本文旨在回顾和总结最近发表的有关二氧化钛(TiO2)光催化氧化农药和酚类化合物(主要在暴雨和废水中)的工作。讨论了各种操作参数对农药和苯酚的光催化降解的影响。此处报告的结果表明,有机化合物的光催化降解取决于光催化剂的类型和组成,光强度,初始底物浓度,催化剂量,反应介质的pH,水中的离子成分,溶剂类型,氧化剂/电子受体。 ,催化剂的应用方式以及水环境中的煅烧温度。大量的研究集中在通过用金属,非金属和离子掺杂进行改性来增强TiO2光催化作用。这篇综述还重点介绍了用于降解各种农药和酚的TiO2光催化的最新进展。从文献调查中可以明显看出,光催化显示了去除各种有机污染物的良好潜力。但是,仍然需要在商业规模上发现该技术的实用性。

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