首页> 外文期刊>SAE International Journal of Engines >Mileage Influence on Conversion Efficiency of Catalytic Converter from In-Use Vehicles
【24h】

Mileage Influence on Conversion Efficiency of Catalytic Converter from In-Use Vehicles

机译:里程数对在用车催化转化器转化效率的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Although many works are published about the achieved advancements in the manufacturing of the catalytic converters (CC) system for vehicle engines and their testing under laboratory conditions, there is a lack in the published research about the mileages influence on their conversion efficiency (CE). Dependence of dual-brick CCs' CE in real-world driving conditions on vehicle mileage is studied for the first time. The CC tested are dismantled from the vehicles with mileage from 0 (new one) up to 150000 km. The studied CC are evaluated at the engine test bench containing a dynamometer coupled with a spark ignition engine suitable for this type of CC system. Measurements of CC efficiency are performed at four different engine operation regimes: two loaded regimes and two non-load regimes - low and high speed idling. It is found that the oxidation of CO and HC at all four tested regimes took place almost totally in the first CC. Under higher engine loads the conversion of NO_x also took place mainly in the first CC. The overall efficiency of conversion reaches values above 99% for most of the tested systems. No significant degradation of CE is found in the studied vehicle mileage range. CE of the CC system that has accumulated the highest mileage, of almost 150000 km, reaches values of 97-99% for CO, 86-99% for HC and 64-99% for NO_x at the loaded testing regimes. The smaller values are obtained for the low load regime when the CC temperature is decreased. Considering that the European legislation imposes a durability of 160000 km for the CCs, the results obtained in this work show that for the mileage of 150000 km CC keep a very high CE rate. The CC system that included an aftermarket non-genuine CC is the only one, where significant catalyst deactivation is observed. Registered values of the backpressure do not show any of the tested CC systems as being clogged.
机译:尽管已发表了许多有关汽车发动机催化转化器(CC)系统的制造及其在实验室条件下进行测试的成就的著作,但有关里程数对其转化效率(CE)的影响,已发表的研究尚缺乏。首次研究了双砖CC的CE在现实驾驶条件下对车辆行驶里程的依赖性。已从行驶里程从0(新里程)到150000 km的车辆拆卸了CC。所研究的CC在发动机测试台上进行评估,该测试台包含一个测功计,该测功计与适用于此类CC系统的火花点火发动机相连。 CC效率的测量是在四种不同的发动机运行状态下进行的:两个有载状态和两个无载状态-低速和高速空转。发现在所有四个测试方案中,CO和HC的氧化几乎全部发生在第一个CC中。在较高的发动机负荷下,NO_x的转化也主要发生在第一个CC中。大多数测试系统的总转换效率达到99%以上的值。在研究的车辆行驶里程范围内,未发现CE显着降低。 CC系统的CE累积了将近150000 km的最高行驶里程,在加载的测试方案下,其CO值为97-99%,HC为86-99%,NO_x为64-99%。当CC温度降低时,对于低负载状态可获得较小的值。考虑到欧洲立法对CC施加了160000 km的耐久性,这项工作获得的结果表明,对于150000 km CC的行驶里程,保持了很高的CE率。包括售后非正品CC的CC系统是唯一观察到催化剂失活明显的CC系统。背压的记录值未显示任何测试的CC系统被堵塞。

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