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首页> 外文期刊>Electrical engineering in Japan >Influence of Voltage Rise Time on Oxidation Treatment of NO in Simulated Exhaust Gas by Polarity-Reversed Pulse Discharge
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Influence of Voltage Rise Time on Oxidation Treatment of NO in Simulated Exhaust Gas by Polarity-Reversed Pulse Discharge

机译:升压时间对极性反转脉冲放电模拟废气中NO氧化处理的影响

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摘要

This paper describes an experimental study of NO removal from a simulated exhaust gas by repetitive surface discharge on a glass barrier subjected to polarity-reversed voltage pulses. The very fast polarity-reversal with a rise time of 20 ns is caused by direct grounding of a charged coaxial cable 10 m in length. The influence of the voltage rise time on energy efficiency for NO removal is studied. The results of NO removal using a barrier-type plasma reactor with a screw-plane electrode system indicate that the energy efficiency of very fast polarity reversal caused by direct grounding is higher than that of slower polarity reversal caused by grounding through an inductor at the cable end. The energy efficiency of direct grounding is approximately 80 g/kWh for a 50% NO removal ratio and approximately 60 g/kWh for a 100% NO removal ratio. Very intense discharge light is observed at an initial time of 10 ns for fast polarity reversal, whereas the intensity of the initial discharge light for slower polarity reversal is relatively small. To confirm the effectiveness of the polarity-reversed pulse application, a comparison of the energy efficiency of polarity-reversed voltage pulses and an AC 60-Hz voltage is presented.
机译:本文描述了通过在极性相反的电压脉冲作用下的玻璃屏障上进行重复表面放电而从模拟废气中去除NO的实验研究。上升时间为20 ns的快速极性反转是由长度为10 m的带电同轴电缆直接接地引起的。研究了电压上升时间对去除NO的能效的影响。使用带有螺旋平面电极系统的势垒型等离子体反应器去除NO的结果表明,直接接地引起的极快极性反转的能量效率高于电缆上通过感应器接地引起的极性慢的能量效率。结束。对于50%的NO去除率,直接接地的能量效率约为80 g / kWh,对于100%的NO去除率而言,直接接地的能量效率约为60 g / kWh。对于快速极性反转,在10 ns的初始时间观察到非常强烈的放电光,而对于较慢的极性反转,初始放电光的强度相对较小。为了确认极性反转脉冲施加的有效性,提出了极性反转电压脉冲和交流60 Hz电压能量效率的比较。

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