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首页> 外文期刊>Journal of Aerosol Science >Experimental investigation of the effect of exhaust gas cooling on diesel particuate
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Experimental investigation of the effect of exhaust gas cooling on diesel particuate

机译:废气冷却对柴油机微粒影响的实验研究

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Particulate emission from diesel engines is receiving a great deal of attention due to its probable carcinogenic property.In the exhaust pipe of a diesel engine,the change of the exhaust gas temperature can result in nucleation and condensation of volatile materials and coagulation of particulates.The objective of the present study is to investigate experimentally the transformation of diesel particulates within the exhaust pipe when the exhaust gas is being cooled.Using a water cooler to control and adjust the exhaust gas temperature,the influences of exhaust-gas cooling on mass concentration,composition,size distribution and number-averaged diameter of the particulates,under different engine operating conditions,were analyzed.In addition,the effect of the flow rate of the exhaust gas in the cooler on the number-averaged diameter of the particulates was also discussed.The results showed that the transformation of the diesel particulates in the exhaust pipe depended mainly on the level of cooling,the concentration of the volatile materials,the initial concentration of the particulates in the exhaust,and the residence time of the exhaust gas within the exhaust pipe.The mass concentration and the soluble organic fraction of the particulates increased,while the gaseous hydrocarbon concentration decreased upon cooling the exhaust.Coupled with these were a decrease in the total number of particulates and an increase in the number-averaged diameter of the particulates,as measured by the Electrical Aerosol Size Analyzer.The results will be useful in understanding the mechanisms leading to changes in diesel particulates in an exhaust pipe.
机译:柴油机的颗粒物排放物由于其可能的致癌特性而受到了广泛的关注。在柴油机的排气管中,排气温度的变化可能导致挥发性物质的成核和凝结以及微粒的凝结。本研究的目的是通过实验研究排气冷却时排气管内柴油颗粒的变化。使用水冷却器控制和调节排气温度,排气冷却对质量浓度的影响,分析了不同发动机工况下颗粒的组成,尺寸分布和数均直径。此外,还讨论了冷却器中废气流量对颗粒数均直径的影响。结果表明,排气管中柴油颗粒的转化主要取决于排放水平。冷却,挥发性物质的浓度,排气中颗粒物的初始浓度以及排气在排气管中的停留时间。颗粒物的质量浓度和可溶性有机物含量增加,而气态烃浓度随着排气的冷却而降低。与之相伴的是,通过电喷雾尺寸分析仪测量的颗粒总数的减少和颗粒数均直径的增加。这些结果将有助于理解机理导致排气管中柴油微粒的变化。

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