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首页> 外文期刊>Journal of Chemical Engineering of Japan >The Effect of Catalytically Reactive Wall in a Micro-DBD Plasma Reactor on Ozone Decomposition
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The Effect of Catalytically Reactive Wall in a Micro-DBD Plasma Reactor on Ozone Decomposition

机译:微型DBD等离子体反应器中催化活性壁对臭氧分解的影响

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The effects of a catalytically reactive wall on ozone reduction are studied using a micro-DBD plasma reactor, where atmospheric non-thermal plasma is generated by a dielectric barrier discharge (DBD). We introduce a manganese dioxide catalyst on the internal wall of the micro-DBD plasma reactor. To evaluate the effect of the catalyst, three types of the reactors are prepared. The narrower gap length enhanced the catalytic ozone reduction for all of the reactor configurations. We constructed a model covering both plasma and catalytic reaction, and the numerical results conclude that the effects of catalytic reactive wall in the micro-DBD plasma reactor are explained by considering the acceleration of mass transfer from the bulk to the wall.
机译:使用微型DBD等离子体反应器研究了催化活性壁对臭氧还原的影响,该反应器通过介电势垒放电(DBD)产生大气非热等离子体。我们在微型DBD等离子体反应器的内壁上引入了二氧化锰催化剂。为了评估催化剂的效果,制备了三种类型的反应器。较窄的间隙长度增强了所有反应器配置的催化臭氧还原率。我们建立了一个涵盖等离子体和催化反应的模型,数值结果表明,通过考虑从团块到壁的传质的加速,可以解释微型DBD等离子体反应器中催化反应壁的作用。

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