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Review on sonochemical methods in the presence of catalysts and chemical additives for treatment of organic pollutants in wastewater

机译:催化剂和化学添加剂存在下声化学方法处理废水中有机污染物的研究进展

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摘要

Removal of toxic recalcitrant organic compounds in wastewater has become a matter of considerable interest. There has been a rapid development in a wide range of treatment methods to solve this problem. Many efforts have been devoted to improve the degradation efficiency and possible mineralization of the organic pollutants, especially in the case of hydrophilic compounds. Heterogeneous sonocatalytic degradation process involving different types of catalyst particularly titanium dioxide (TiO2) appears to be the most promising technology. To further improve the degradation efficiency, some researchers focus on the enhancement of the catalyst by modifying it through metal ion doping or the use of composite semiconductor materials to prohibit rapid recombination of electron/hole pairs and backward reactions. Effects of the addition of chemical additives e.g. hydrogen peroxide, Fenton reagent, various types of salts and ozone have also been elucidated. Different methods for enhancing free hydroxyl radical (~·OH) generation which lead to higher oxidation rates have been investigated. This paper critically reviews up-to-date technologies to be applied in conjunction with sonochemical degradation process for enhancing degradation of recalcitrant organic compounds. The addition of catalysts and chemical additives with ultrasonic irradiation are particularly reviewed as effective methods to increase the generation of free ~·OH.
机译:去除废水中有毒的顽固有机化合物已成为人们关注的问题。解决该问题的广泛的治疗方法已经有了迅速的发展。已经进行了许多努力来提高有机污染物的降解效率和可能的矿化作用,特别是在亲水性化合物的情况下。涉及不同类型催化剂特别是二氧化钛(TiO2)的异相声催化降解工艺似乎是最有前途的技术。为了进一步提高降解效率,一些研究人员致力于通过金属离子掺杂或使用复合半导体材料对催化剂进行改性来增强催化剂,以禁止电子/空穴对的快速重组和逆向反应。添加化学添加剂的影响还阐明了过氧化氢,Fenton试剂,各种类型的盐和臭氧。已经研究了不同的增强游离羟基自由基(〜·OH)生成的方法,这些方法导致更高的氧化速率。本文批判性地综述了与声化学降解工艺结合使用的最新技术,以增强难降解有机化合物的降解。超声辐射中添加催化剂和化学添加剂特别被认为是增加游离〜·OH生成的有效方法。

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