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Comparison of PM Measurement Methods for Catalyst-out Diesel Exhaust

机译:PM催化剂输出柴油机测量方法的比较

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Recent concerns and new EPA rulemaking about the health effects of ambient particulate matter (PM) smaller than 2.5 #mu#m (PM_(2.5)) have focused attention on the importance of combustion aerosols, particularly those from diesel engines. The mass of PM from on-road diesels has declined dramatically since the late 1980's due to higher injection pressures and oxidation catalysts. However, the number concentrations have continued to increase due to the much smaller size of the PM generated. This presentation and the companion presentation discuss results of particle-size measurements on a vehicle and the vehicle's engine with and without an oxidation catalyst. A micro-orifice uniform deposit impactor (MOUDI) is used to sample diluted siesel exhaust. Ten size fractions between 0.054 #mu#m and 10 #mu#m are collected. Results show a weak bimodal distribution with the majority of the particles centered at 100-150 nm with another weak mode at 1-2 #mu#m. While it has been known for some time that diesel particles are all less than 2.5 #mu#m, the distribution from modern engines is less well understood. Higher injection pressures in direct injection engines have resulted in much less mass emission of particulate; however, the number concentrations of ultrafine particles are greater than with earlier engine designs. Particle size is critical to the understanding of the performance of catalysts for modern dieselscatalysts that further increase the number concentrations of ultrafine aerosols may not be desirable.
机译:最近的担忧和新的EPA关于环境颗粒物质(PM)的健康效果小于2​​.5#mu#m(PM_(2.5))的重点是注意燃烧气溶胶,特别是来自柴油发动机的气溶胶的重要性。自1980年末由于较高的注射压力和氧化催化剂,自1980年末以来,从路上柴油的PM的质量急剧下降。然而,由于PM产生的尺寸小得多,数量浓度继续增加。该呈现和伴侣介绍讨论了车辆和车辆发动机的粒度测量结果,并且没有氧化催化剂。微孔均匀沉积物撞击器(Moudi)用于样品稀释的Siesel排气。收集0.054#mu#m和10#mu#m之间的十个尺寸分数。结果显示弱双峰分布,其中大部分颗粒以100-150nm为中心,另一个弱模式为1-2#mu#m。虽然已经知道柴油颗粒均小于2.5#mu#m,但是从现代发动机的分布不太了解。直接喷射发动机中的较高注射压力使得颗粒的大量块状减少;然而,超细颗粒的数量浓度大于早期发动机设计。粒度对于了解现代柴油催化剂催化剂的性能至关重要,以进一步增加超细气溶胶的数量浓度可能是不可取的。

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