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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Combining non-thermal plasma with heterogeneous catalysis in waste gas treatment: A review
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Combining non-thermal plasma with heterogeneous catalysis in waste gas treatment: A review

机译:非热等离子体与非均相催化相结合处理废气的研究进展

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摘要

Plasma driven catalysis is a promising technology for waste gas treatment characterized by higher energy efficiencies, high mineralization rates and low by-product formation. The combination of heterogeneous catalysts with non-thermal plasma can be operated in two configurations: positioning the catalyst in the discharge zone (in-plasma catalysis) or downflow the discharge zone (post plasma catalysis). In a first part of the review, changes of plasma properties resulting from the introduction of catalyst material are discussed. It has been reported that discharge types can even change. Accordingly, it was reported that microdischarges are formed within the catalyst pores. Changing plasma characteristics can eventually result in enhanced production of new active species, increasing the oxidizing power of the plasma discharge. In a second part, it is discussed that plasma discharges also affect catalyst properties such as a change in chemical composition, enhancement in surface area or change of catalytic structure. These phenomena partially explain why catalyst adsorption kinetics of airborne pollutants are affected when exposed to plasma discharges. It is also reviewed that the synergy of combining plasma with catalysts can not only be attributed to the production of new reactive species. Also plasma photon emission or thermal hot-spots can initiate catalytic pollutant oxidation reactions. To conclude, an overview of recently published manuscripts concerning plasma catalysis for volatile organic compounds abatement is given. It is also discussed why heterogeneous plasma catalysis has high potential for the simultaneous abatement of NOx and hydrocarbons. (c) 2007 Elsevier B.V. All rights reserved.
机译:等离子驱动的催化技术是一种有前途的废气处理技术,其特点是能效更高,矿化率高,副产物形成少。非均质催化剂与非热等离子体的组合可以两种配置操作:将催化剂放置在放电区(等离子体内催化)或向下流到放电区(等离子体后催化)。在本综述的第一部分中,讨论了由引入催化剂材料引起的等离子体性能的变化。据报道,放电类型甚至可以改变。因此,据报道在催化剂孔内形成微放电。改变等离子体特性最终会导致新活性物质的产生增加,从而增加等离子体放电的氧化能力。在第二部分中,讨论了等离子体放电也影响催化剂性能,例如化学组成的变化,表面积的增加或催化结构的变化。这些现象部分解释了为什么暴露于等离子体放电时会影响空气中污染物的催化剂吸附动力学。还回顾了将等离子体与催化剂结合的协同作用不仅可以归因于新的反应物种的产生。等离子体光子发射或热点也可以引发催化污染物氧化反应。总而言之,给出了有关等离子体催化减少挥发性有机化合物的最新出版手稿的概述。还讨论了为什么异质等离子体催化具有同时减排NOx和碳氢化合物的高潜力。 (c)2007 Elsevier B.V.保留所有权利。

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