首页> 外文期刊>Industry Applications, IEEE Transactions on >Single-Stage Simultaneous Reduction of Diesel Particulate and $hbox{NO}_{rm x}$ Using Oxygen-Lean Nonthermal Plasma Application
【24h】

Single-Stage Simultaneous Reduction of Diesel Particulate and $hbox{NO}_{rm x}$ Using Oxygen-Lean Nonthermal Plasma Application

机译:单阶段同时减少柴油颗粒和$ hbox {NO} _ {rm x} $的使用贫氧非热等离子体应用

获取原文
获取原文并翻译 | 示例

摘要

A simultaneous reduction of particulate matter (PM) and $hbox{NO}_{rm x}$ emitted from diesel engines has been realized by means of a barrier-type packed-bed nonthermal plasma (NTP) application driven by a pulse high-voltage power supply under oxygen-lean conditions. $hbox{BaTiO}_{3}$ particles having a large dielectric constant ( $sim$10 000) are used as packed pellets, and carbon PM is loaded among the pellets. $hbox{NO}_{rm x}$ is reduced by N radicals, and PM is incinerated by oxygen radicals induced either by $hbox{NO}_{ rm x}$ or by ozone $(hbox{O}_{3})$ reduction under elevated local temperatures among the pellets. From the photographs of the pellets, it can be confirmed that the carbon PM or soot is removed under the condition of lean oxygen, resulting in the simultaneous removal of the PM and $hbox{NO}_{rm x}$. An optimal value for the mass of the loaded PM exists, and when the loaded PM mass is greater than a threshold value, the effect of the NTP induced by the partial discharge is too weak to simultaneously reduce the PM and $ hbox{NO}_{rm x}$. Under the optimized plasma condition, the experiment yields energy efficiencies of 2.2 g/kWh for the PM incineration and 4.3 $hbox{g}(hbox{NO}_{2})/hbox{kWh}$ for the $hbox{NO}_{rm x}$ reduction in the experiment.
机译:通过采用脉冲高功率脉冲驱动的屏障型填充床非热等离子体(NTP)应用,已实现了柴油机颗粒物(PM)和$ hbox {NO} _ {rm x} $的同时减少。贫氧条件下的高压电源。使用具有高介电常数($ sim $ 10 000)的$ hbox {BaTiO} _ {3} $颗粒作为填充粒料,并将碳PM装入粒料中。 $ hbox {NO} _ {rm x} $被N自由基还原,PM被$ hbox {NO} _ {rm x} $或臭氧$(hbox {O} _ {{3 })在局部温度升高的情况下降低了小球中的$。从粒料的照片可以确认,在贫氧条件下除去了碳PM或烟灰,导致同时除去了PM和$ hbox {NO} _ {rm x} $。存在负载PM的质量的最佳值,并且当负载PM的质量大于阈值时,局部放电引起的NTP的作用太弱,无法同时降低PM和$ hbox {NO} _ {rm x} $。在优化的等离子体条件下,该实验对PM焚烧的能量效率为2.2 g / kWh,对于$ hbox {NO}的能量效率为4.3 $ hbox {g}(hbox {NO} _ {2})/ hbox {kWh} $实验中减少了_ {rm x} $。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号