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Ozone decomposition

机译:臭氧分解

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摘要

Catalytic ozone decomposition is of great significance because ozone is a toxic substance commonly found or generated in human environments (aircraft cabins, offices with photocopiers, laser printers, sterilizers). Considerable work has been done on ozone decomposition reported in the literature. This review provides a comprehensive summary of the literature, concentrating on analysis of the physico-chemical properties, synthesis and catalytic decomposition of ozone. This is supplemented by a review on kinetics and catalyst characterization which ties together the previously reported results. Noble metals and oxides of transition metals have been found to be the most active substances for ozone decomposition. The high price of precious metals stimulated the use of metal oxide catalysts and particularly the catalysts based on manganese oxide. It has been determined that the kinetics of ozone decomposition is of first order importance. A mechanism of the reaction of catalytic ozone decomposition is discussed, based on detailed spectroscopic investigations of the catalytic surface, showing the existence of peroxide and superoxide surface intermediates.
机译:臭氧的分解具有重要意义,因为臭氧是在人类环境(机舱,带复印机的办公室,激光打印机,消毒器)中常见或产生的有毒物质。文献中报道了有关臭氧分解的大量工作。这篇综述提供了文献的全面总结,重点是臭氧的理化性质,合成和催化分解的分析。这是通过对动力学和催化剂表征的综述来补充的,该综述将先前报道的结果联系在一起。已经发现贵金属和过渡金属的氧化物是臭氧分解中最活跃的物质。贵金属的高价刺激了金属氧化物催化剂的使用,特别是基于氧化锰的催化剂的使用。已经确定,臭氧分解的动力学是重要的。基于对催化表面的详细光谱研究,讨论了催化臭氧分解反应的机理,表明存在过氧化物和超氧化物表面中间体。

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