【24h】

Measuring Automotive Exhaust Particles Down to 10 nm

机译:测量到10 nm的汽车排气颗粒

获取原文
获取原文并翻译 | 示例
       

摘要

The latest generation of internal combustion engines may emit significant levels of sub-23 nm particles. The main objective of the Horizon 2020 "DownToTen" project was to develop a robust methodology and provide policy recommendations towards the particle number (PN) emissions measurements in the sub-23 nm region. In order to achieve this target, a new portable exhaust particle sampling system (PEPS) was developed, being capable of measuring exhaust particles down to at least 10 nm under real-world conditions. The main design target was to build a system that is compatible with current PMP requirements and is characterized by minimized losses in the sub-23 nm region, high robustness against artefacts and high flexibility in terms of different PN modes investigation, i.e. non-volatile, volatile and secondary particles. This measurement setup was used for the evaluation of particle emissions from the latest technology engine and powertrain technologies (including vehicles from other Horizon 2020 projects), different fuel types, and a wide range of exhaust aftertreatment systems. Results revealed that in most cases (non-volatile), PN emissions down to 10 nm (SPN_(10)) do not exceed the current SPN_(23) limit of 6×10~(11) p/km. However, there are some cases where SPN_(10) emissions exceeded the limit, although SPN_(23) were below that. An interesting finding was that even in the latter cases, the installation of a particle filter could significantly reduce PN emissions across a wide particle size range, fuels, and combustion technology. DownToTen results are being used to scientifically underpin the Euro 7/VII emission standard development in the EU. The method developed and the results obtained may be used to bring in the market clean and efficient vehicle technologies, improve engine and emission control performance with different fuels, and characterize size-fractionated particle chemistry to identify the formation mechanisms and control those in a targeted, costeffective fashion.
机译:最新一代的内燃机可能会散发出大量的低23 nm颗粒。 Horizo​​n 2020“ Downtoten”项目的主要目标是开发一种强大的方法,并为粒子数(PN)排放量的测量值提供了政策建议。为了实现这一目标,开发了一个新的便携式排气颗粒采样系统(PEP),能够在现实世界中至少将排气颗粒降至至少10 nm。主要的设计目标是构建与当前PMP要求兼容的系统,其特征是在低下23 nm区域中最小化损失,对人工制品的高鲁棒性以及在不同的PN模式调查方面的高灵活性,即非挥霍,即非胆汁差异,挥发性和次要颗粒。该测量设置用于评估最新技术引擎和动力总成技术(包括其他Horizo​​n 2020项目的车辆),不同燃料类型以及各种排气后处理系统的粒子排放。结果表明,在大多数情况下(非挥发性),PN排放量低至10 nm(SPN_(10))不超过6×10〜(11)p/km的当前SPN_(23)极限。但是,在某些情况下,SPN_(10)排放超过了限制,尽管SPN_(23)低于此。一个有趣的发现是,即使在后一种情况下,颗粒过滤器的安装也可以显着降低范围范围范围范围,燃料和燃烧技术的PN排放。下降蛋白的结果用于科学地基础欧盟7/VII排放标准的发展。开发的方法和获得的结果可用于引入市场清洁有效的车辆技术,用不同的燃料改善发动机和排放控制性能,并表征尺寸算法的粒子化学,以识别形成机制,并在目标,有针对性的,有针对性的,有针对性的,成本效益的时尚。

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