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Elimination of Carbon Monoxide in the Gas Streams by Dielectric Barrier Discharge Systems with Mn Catalyst

机译:Mn催化剂的介质阻挡放电系统消除气流中的一氧化碳。

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Elimination of CO in air stream using the plasma catalytic reactors was investigated. Two plasma catalytic systems were evaluated in this study, one consisting of a catalyst-bed packed in plasma zone of a dielectric barrier discharge (DBD) reactor directly (CID reactor), and the other (CAD reactor) consisting of a catalyst-bed after a DBD reactor. The examined operating parameters in this study included applied voltage, discharge power, the lengths of plasma zone and catalyst-bed, and inlet CO concentration. It was found that the glass packed DBD reactor without catalyst cannot eliminate CO in air stream effectively. When MnO x catalyst applied to DBD reactors, the removal of 1000 ppm CO can achieve to 97% by both type reactors. Under constant energy input condition, the CO removal of a CID reactor increased with the decrease of the initial CO concentration and the increase of the length of catalyst beds. In addition, the operating energy consumption of CID system was lower than that of CAD system.
机译:研究了使用等离子催化反应器消除空气中的CO。在本研究中评估了两个等离子体催化系统,一个由直接装在介电势垒放电(DBD)反应器(CID反应器)的等离子体区中的催化剂床组成,另一个(CAD反应器)由装在反应堆中的催化剂床组成。 DBD反应器。本研究中检查的运行参数包括施加的电压,放电功率,等离子区和催化剂床的长度以及入口CO浓度。发现没有催化剂的玻璃填充DBD反应器不能有效地消除空气流中的CO。当MnO x 催化剂应用于DBD反应器时,两种反应器的1000 ppm CO去除率均可达到97%。在恒定的能量输入条件下,随着初始CO浓度的降低和催化剂床层长度的增加,CID反应器的CO去除量增加。另外,CID系统的运行能耗低于CAD系统。

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