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首页> 外文期刊>IEEE Transactions on Plasma Science >Molar ratio and energy efficiency of DeNO/sub x/ using an intermittent DBD ammonia radical injection system
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Molar ratio and energy efficiency of DeNO/sub x/ using an intermittent DBD ammonia radical injection system

机译:使用间歇DBD氨自由基注入系统的DeNO / sub x /摩尔比和能效

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Ammonia radicals are produced by a dielectric barrier discharge (DBD) in a chamber, called radical injector, which is separate from the chamber that NO gas flows. The radicals are injected into the mixing zone in NO gas flow field to decompose NO gas. The power source for generating the DBD is a one cycle sinusoidal (OCS) waveform so as to easily control the electrical power consumed in the DBD plasma. The fundamental frequency of the OCS power source is 150 kHz. Based on the molar ratio of ammonia particles to NO particles in a unit time, NO removal characteristics were discussed. By increasing the DBD consumed energy, the molar ratio approaches 1 showing the stoichiometric DeNO/sub x/ by NH/sub 2/ radicals. A high energy efficiency is found by reducing the consumed energy in the radical injector, where the molar ratio is higher than 1. In this case, the excess ammonia gas without converting into ammonia radicals in the radical injector is directly injected into the reaction zone, and contributes to decompose the NO gas. Oxygen gases with a concentration from 5% to 15% included in the NO gas significantly contribute to decompose NO gases, which brings a decomposition of NO with a low molar ratio.
机译:氨自由基是由称为自由基注入器的室中的介​​电势垒放电(DBD)产生的,该室与NO气体流动的室分开。将自由基注入NO气体流场中的混合区中以分解NO气体。用于产生DBD的电源是单周期正弦(OCS)波形,以便容易地控制在DBD等离子体中消耗的电功率。 OCS电源的基本频率为150 kHz。基于单位时间内氨气颗粒与NO颗粒的摩尔比,讨论了NO的去除特性。通过增加DBD消耗的能量,摩尔比接近1,通过NH / sub 2 /自由基显示化学计量的DeNO / sub x /。通过减少摩尔比大于1的自由基注入器中的能耗来提高能量效率。在这种情况下,未在自由基注入器中转化为氨自由基的过量氨气直接注入反应区,并有助于分解NO气体。 NO气体中所含的浓度为5%至15%的氧气显着地促进了NO气体的分解,这导致具有低摩尔比的NO的分解。

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