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NOx diesel exhaust treatment using a pulsed corona discharge: the pulse repetition rate effect

机译:使用脉冲电晕放电的NOx柴油机废气处理:脉冲重复率效应

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摘要

The pulsed corona offers real promise for degradation of pollutants in gas and water streams. This paper presents a study of NOx removal from diesel exhaust. Special emphasis is laid on the investigation of the dependence of the NO removal rate and efficiency on the pulse repetition rate ( PRR). A nanosecond solid state power supply ( 45 kV, 60 ns, up to 1 kHz) was used for driving the corona reactor. A Mitsubishi 10kW 3-cylinder diesel-generator engine with a total volume of 1300 cm(3) was used as a source of exhaust gas. At an NO removal rate of 35% the NO removal efficiency was 53 g kW(-1)h(-1) for PRR = 500 Hz and the initial NO concentration was 375 ppm. A semi-empirical expression for the corona reactor removal efficiency related both to PRR and to the residence time is presented. The removal efficiency decreases with increasing PRR at constant flow rate or constant residence time. This expression demonstrates reasonable agreement between the calculation results and the experimental data.
机译:脉冲电晕为气体和水流中的污染物的降解提供了真正的希望。本文介绍了从柴油机废气中去除NOx的研究。特别强调研究NO去除率和效率对脉冲重复率(PRR)的依赖性。纳秒级固态电源(45 kV,60 ns,最高1 kHz)用于驱动电晕反应器。使用总体积为1300 cm(3)的三菱10kW三缸柴油发电机发动机作为废气源。在35%的NO去除率下,对于PRR = 500 Hz,NO去除效率为53 g kW(-1)h(-1),初始NO浓度为375 ppm。提出了电晕反应器去除效率与PRR和停留时间相关的半经验表达式。在恒定流速或恒定停留时间下,去除效率随PRR的增加而降低。该表达式证明了计算结果与实验数据之间的合理一致性。

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