首页> 外文会议>Powertrain and Fluid Systems Conference and Exhibition >The study of the effects of nonthermal plasma-photocatalyst combined reactor on hydrocarbon decomposition and reduction during cold start and warm-up in a SI ENGINE
【24h】

The study of the effects of nonthermal plasma-photocatalyst combined reactor on hydrocarbon decomposition and reduction during cold start and warm-up in a SI ENGINE

机译:非热血浆光催化剂合并反应器对冷启动中冷启动和预热过程中烃分解和减少的影响研究

获取原文

摘要

Among the recent research ideas to reduce hydrocarbon emissions emitted from SI engines till light-off of catalyst since cold start are those exploiting non-thermal plasma technique and photo-catalyst that draws recent attention by virtue of its successful application to practical use to clean up the atmosphere using the feature of its relative independence on temperature. Based on the previous research, results obtained with model exhaust gases using an experimental emissions reduction system that utilizes the non-thermal plasma and photo-catalyst technique, further investigation was conducted on a production N/A 1.5-liter DOHC gasoline engine during cold start to warm-up. For the effects of non-thermal plasma-photocatalyst combined reactor, 10% concentration reduction was achieved with the fuel component paraffins, and the large increase in non-fuel paraffinic components and acetylene concentrations were similar to those of base condition. However the absolute value was locally a bit higher than those of base condition since the products was made from the dissociation and decomposition of highly branched paraffins by plasma- photocatalyst reactor. Olefinic components were highly decomposed by about 75%, due to these excellent decompositions of olefins which have relatively high MIR (Max. Incremental Reactivity) values, and the SR (Specific Reactivity) value was 1.87 that is 30% reduction from that of base condition, then, the photochemical reactivity was lowered.
机译:在最近的研究思想中,减少Si发动机发射的烃排放,直到冷启动催化剂的透光,是利用非热等离子体技术和光催化剂,凭借其成功应用来清理近期的注意力,可欣赏到最近的关注使用其相对独立于温度的特征的大气。基于先前的研究,使用使用非热等离子体和光催化剂技术的实验排放系统的模型废气获得的结果,在冷启动期间对生产N / A 1.5升DOHC汽油发动机进行进一步的研究热身。对于非热等离子体光催化剂合并反应器的影响,用燃料成分链烷烃实现10%的浓度降低,并且非燃料链烷烃组分和乙炔浓度的大幅增加与碱条件的增加。然而,绝对值是局部比基础状况高的塔,因为产物由等离子体光催化反应器的高度支化链烷烃的解离和分解制成。烯烃组分高度分解约75%,由于这些具有相对高的miR(最大反应性)值的烯烃的优异分解,并且Sr(特定的反应性)值为1.87,从基本条件的降低30%然后,降低光化学反应性。

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