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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Removal of volatile organic compounds from air streams and industrial flue gases by non-thermal plasma technology
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Removal of volatile organic compounds from air streams and industrial flue gases by non-thermal plasma technology

机译:通过非热等离子体技术去除气流和工业烟气中的挥发性有机化合物

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摘要

Gaseous pollution control technologies for acid gases (NO/sub x/, SO/sub x/, etc.), volatile organic compounds (VOC), greenhouse gases, ozone layer depleting substance (ODS), etc., have been commercialized based on catalysis, incineration and adsorption methods. However, non-thermal plasma techniques based on electron beams and corona discharges become significant due to advantages such as lower cost, higher removal efficiency, smaller space volume, etc. In order to commercialize this new technology, the following needs faster investigation: pollution gas removal rates, energy efficiency of removal, pressure drop of reactors, usable byproduct production rates, identification of major fundamental processes, and optimization of reactor and power supply for an integrated system. In this work, recent development of gaseous pollution control technology based on discharge plasmas is reviewed critically and the principle of processes and reactor technologies are outlined.
机译:酸性气体(NO / sub x /,SO / sub x /等),挥发性有机化合物(VOC),温室气体,臭氧层消耗物质(ODS)等的气体污染控制技术已基于以下技术实现了商业化催化,焚烧和吸附方法。但是,基于电子束和电晕放电的非热等离子体技术由于具有成本低,去除效率高,空间体积小等优点而变得非常重要。为了使这项新技术商业化,需要进行以下研究:污染气体去除率,去除能效,反应堆压力降,可用副产物产率,主要基本工艺的识别以及反应堆和集成系统电源的优化。在这项工作中,对基于放电等离子体的气态污染控制技术的最新发展进行了批判性的综述,并概述了工艺原理和反应器技术。

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