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Research on Photocatalytic Degradation Properties of Organics with Different New Photocatalysts

机译:不同新型光催化剂对有机物的光催化降解性能研究

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摘要

Environmental problems related to hazardous organics attract much attention currently. Photocatalysis, an attractive technology using solar energy, has been employed for pollutants degradation for several decades. In recent years, it develops extremely fast. In this review, the photocatalytic degradation properties of organic pollutants with different new photocatalysts are discussed from three aspects, namely, wide and narrow band gap as well as band gap modified photocatalysts. Some new progresses in the area of traditional photocatalysts are also presented. Semiconductor photocatalysts with wide band gap have strong oxidative ability and preferable photostability, however, they have a serious drawback that they only absorb UV light. On the other hand, narrow band gap semiconductor photocatalysts can utilize visible light, while their photocataytic efficiencies are still low and their photostabilities are rather poor. Further investigation concerning the simultaneous enhancement of photoactivity and visible light absorption is proposed.
机译:与有害有机物有关的环境问题目前引起了广泛关注。数十年来,光催化是一种使用太阳能的有吸引力的技术,已被用于污染物的降解。近年来,它发展很快。本文从宽带隙和窄带隙以及带隙改性的光催化剂三个方面探讨了不同新型光催化剂对有机污染物的光催化降解性能。还介绍了传统光催化剂领域的一些新进展。具有宽带隙的半导体光催化剂具有强的氧化能力和较好的光稳定性,但是,它们具有严重的缺点,即它们仅吸收紫外线。另一方面,窄带隙半导体光催化剂可以利用可见光,而它们的光催化效率仍然很低并且它们的光稳定性很差。提出了关于同时增强光活性和可见光吸收的进一步研究。

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