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The Effect of Specific Input Energy on Promotion of NO-NO_2 of Diesel Engine with Non-thermal Plasma Technology

机译:具有非热等离子体技术的特定输入能量对柴油发动机NO-NO_2促进的影响

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The removal of diesel exhausts by non-thermal plasma technology has been investigated focused on the simulation gas experiment at atmospheric pressure and room temperature for many years. However, the research for real diesel engine is need to be further studied. In the experiments, a non-thermal plasma (NTP) reactor was designed based upon dielectric barrier discharge. NO/NO_2 conversion was studied as a function of the specific input energy (SIE) by varying the frequency and voltage applied on the NTP reactor through bench test. Results showed that NTP SIE was increased with the voltage at each frequency. The conversion of NO to NO_2 was increased at higher NTP SIE. However, NO will further be converted to other active species but not only NO_2.
机译:通过非热等离子体技术去除柴油排气,重点是在大气压和室温下的模拟气体实验多年。然而,需要进一步研究真实柴油发动机的研究。在实验中,基于介电阻挡放电设计了非热等离子体(NTP)反应器。通过通过台面测试改变在NTP反应器上施加的频率和电压来研究作为特定输入能量(SIE)的函数的NO / NO_2转换。结果表明,每个频率的电压都增加了NTP SIE。在较高的NTP筛子上,NO对NO_2的转化率增加。但是,否将进一步转换为其他活性物种,但不仅是NO_2。

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