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Coupled Microwave/Photoassisted Methods for Environmental Remediation

机译:微波/光辅助耦合方法进行环境修复

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摘要

The microwave-induced acceleration of photocatalytic reactions was discovered serendipitously in the late 1990s. The activity of photocatalysts is enhanced significantly by both microwave radiation and UV light. Particularly relevant, other than as a heat source, was the enigmatic phenomenon of the non-thermal effect(s) of the microwave radiation that facilitated photocatalyzed reactions, as evidenced when examining various model contaminants in aqueous media. Results led to an examination of the possible mechanism(s) of the microwave effect(s). In the present article we contend that the microwaves’ non-thermal effect(s) is an important factor in the enhancement of TiO2-photoassisted reactions involving the decomposition of organic pollutants in model wastewaters by an integrated (coupled) microwave-/UV-illumination method (UV/MW). Moreover, such coupling of no less than two irradiation methods led to the fabrication and ultimate investigation of microwave discharged electrodeless lamps (MDELs) as optimal light sources; their use is also described. The review focuses on the enhanced activity of photocatalytic reactions when subjected to microwave radiation and concentrates on the authors’ research of the past few years.
机译:在1990年代后期偶然发现了微波诱导的光催化反应加速。微波辐射和紫外线均可显着提高光催化剂的活性。除了作为热源外,特别相关的是微波辐射的非热效应的神秘现象,这种现象促进了光催化反应,这在检查水性介质中的各种模型污染物时得到了证明。结果导致检查了微波效应的可能机理。在本文中,我们认为微波的非热效应是通过集成(耦合)的微波/紫外线照射增强TiO2光辅助反应的重要因素,该反应涉及模型废水中有机污染物的分解。方法(UV / MW)。此外,不少于两种辐照方法的这种耦合导致了作为最佳光源的微波无电极灯(MDEL)的制造和最终研究。还介绍了它们的用法。这篇综述着重于微波辐射下光催化反应的增强活性,并集中于作者在过去几年中的研究。

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