期刊文献+

低温等离子体对柴油机尾气净化效果的研究 被引量:13

A Research of the Effects of Non-thermal Plasma on the Emission Control of Diesel Engine
在线阅读 下载PDF
导出
摘要 本文中对利用低温等离子体(NTP)技术净化柴油机尾气中的颗粒物(PM)、总碳氢(THC)和氮氧化物(NOx)进行研究,结果表明,介质阻挡放电反应器的输入能量和对柴油机尾气的处理量是影响NTP净化性能的主要因素。在低能量窗口(输入电压约为7.5kV)内,NTP对NOx净化效果较好,对PM和THC的净化效果较差;而在高能量窗口(输入电压为10kV)内,NTP能有效地净化PM和THC,却可能使NOx的浓度增大。在相同输入能量条件下,处理量越大NTP的净化效果越差。 The effects of non-thermal plasma (NTP) on the emission control over PM, THC and NOx of diesel engine is studied in this paper. The results show that the input energy of dielectric barrier discharge reactor and the processed exhaust flow rate are the main factors influencing the emission control effects of NTP. In low-ener- gy window with an input voltage of around 7.5 KV, the emission control effects of NTP is good for NOx, but is poor for PM and THC ; while in high-energy window with an input voltage of 10KV, NTP can effectively reduce the emission of PM and THC, but may increase the emission of NO,. Under the same input energy, higher processed exhaust flow rate leads to poorer emission control effect of NTP.
出处 《汽车工程》 EI CSCD 北大核心 2013年第2期116-120,共5页 Automotive Engineering
基金 国家重大基础研究发展规划项目(2002CB211606)资助
关键词 柴油机 颗粒物 总碳氢 氮氧化物 介质阻挡放电反应器 低温等离子体 diesel engine PM THC NOx dielectric barrier discharge reactor non-thermal plasma
  • 相关文献

参考文献5

二级参考文献17

  • 1裴梅香,黄震,上官文峰,林赫.低温等离子体技术及其在柴油机排气处理中的应用[J].环境污染治理技术与设备,2004,5(5):56-60. 被引量:16
  • 2Wang P,Cai Y X,Wang J,et al. Study of rice bran biodiesel en- gine emissions using non-thermal plasma assisted catalyst sys- tem part A[C]. Progress in Environmental Science and Tech- nology, Vol II 2009 : 910.
  • 3Miessner H, Francke K P, Rudolph R. Plasma-enhanced HC- SCR of NOx in the presence of excess oxygen[J]. Applied Ca- talysis B: Environmental, 2002,36 : 53- 62.
  • 4Tonkyn R G,Barlowa S E, Hoard J W. Reduction of NOx in synthetic diesel exhaust via two step plasma-catalysis treatment [J]. Applied Catalysis B: Environmental, 2003,40 : 207-217.
  • 5Subrahmanyam C, Renken A, Minsker L K. Novel catalytic non-thermal plasma reactor for the abatement of VOCs[J] . Chemical Engineering Journal, 2007,134: 78-83.
  • 6Lazaroiua G, Zissulescub E, Sanduc M, et al. Electron beam non-thermal plasma hybrid system for reduction of NOx and SOx emissions from power plants[J]. Energy, 2007,32:2412- 2419.
  • 7Subrahmanyam C,Renken A,Minsker L K. Catalytic abatement of volatile organic compounds assisted by non-thermal plasma part II. optimized catalytic electrode and operating conditions[J]. Applied Catalysis B. Environmental, 2006,65 : 157 -162.
  • 8McLarnon C R, Penetrante B M. Effect of gas composition on the NOx conversion chemistry in plasma [C]//SAE 982433, 1998.
  • 9Mohammadi A, Kaneda Y, Sogo T, et al. A study on diesel emission reduction using a high-frequency dielectric barrier dis- charge plasma[C]//SAE 2003-01-1879,2003.
  • 10Samaranayake W J M, Miyahara Y, Namihira T, et al. Ozone production using pulsed dielectric barrier discharge in oxygen [J]. IEEE Transactions on Dielectrics and Electrical Insulation, 2000,7(6) :849-854.

共引文献46

同被引文献151

引证文献13

二级引证文献47

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部