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A study of composition and size distribution of particulate matter from DI diesel engine

机译:从DI柴油发动机颗粒物质的组成和尺寸分布研究

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The objective of this study is to clarify the particulate composition at each particle size and the influence of engine operating conditions and fuel properties on diesel particulate size distribution. Size distribution of particulate matter emitted from the latest Japanese DI diesel engine was measured using a Cascade Impactor. Most of the particles were smaller than 10-micron aerodynamic diameter and a significant percentage of the particles were shown in the aerodynamic diameter range less than 50 nm. The chemical analysis of particles collected at each stage of Cascade Impactor showed that the aerodynamic diameter of the sulfate particle was less than 50 nm. A large amount of SOF and SOOT was found in small particle size range, but the percentage of SOF in the large aerodynamic diameter particles was higher than that in the small particles. Moreover, when the percentage of SOF in the total particulate matter became higher by lowering the engine torque, the particles with the small aerodynamic diameter decreased. On the other hand, the influence of the fuel properties, such as distillation characteristics, cetane number, and fuel compositions was small within the limit of usual diesel fuel properties. However, the particles of small aerodynamic diameter increased compared with usual diesel gas oil delivered from mineral oil when the n-paraffin fuel was used.
机译:本研究的目的是在每个粒度下阐明颗粒状组合物和发动机操作条件和燃料性能对柴油颗粒尺寸分布的影响。使用级联撞击器测量从最新的DI柴油发动机发出的颗粒物质的尺寸分布。大多数颗粒小于10微米的空气动力直径,并且在小于50nm的空气动力学直径范围内显示出显着百分比的颗粒。在级联撞击器的每个阶段收集的颗粒的化学分析表明,硫酸盐颗粒的空气动力直径小于50nm。在小的粒度范围内发现大量的SOF和烟灰,但大的空气动力直径颗粒中的SOF的百分比高于小颗粒中的SOF。此外,当通过降低发动机扭矩,总颗粒物质中的SOF的百分比变得更高时,空气动力学直径小的颗粒降低。另一方面,燃料性能的影响,例如蒸馏特性,十六烷数和燃料组合物在通常的柴油燃料特性的极限内很小。然而,与在使用N-石蜡燃料的矿物油递送的常用柴油气油相比,空气动力学直径小的颗粒增加。

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