首页> 外文会议>2008 spring technical conference of the ASME Internal Combustion Engine Division : Advanced combustion ; Emission control systems ; FUELS ... >THE EFFECT OF USING HIGH FFA RUBBER SEED BASED BIODIESEL WITH COLD AND HOT EGR ON PERFORMANCE AND EMISSIONS OF A CI ENGINE
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THE EFFECT OF USING HIGH FFA RUBBER SEED BASED BIODIESEL WITH COLD AND HOT EGR ON PERFORMANCE AND EMISSIONS OF A CI ENGINE

机译:高FFA橡胶籽基生物柴油与冷热EGR混合使用对CI发动机性能和排放的影响

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This paper analyses the effect of exhaust gas recirculation (EGR) on the engine performance and emissions of a compression ignition (CI) engine operating on diesel-biodiesel (rubber seed oil methyl ester) blends. Biodiesel operated engines generally produce less unburned hydrocarbon, carbon monoxide and smoke compared to diesel fuel but more NOx emissions. NOx formation is a temperature dependent phenomenon and takes place when the combustion temperature is more than 2000K. EGR is an effective method for reducing NOx emissions in CI engines because it reduces the flame temperature and the oxygen concentration in the combustion chamber. In this study both hot EGR and cold EGR (5%, 10% and 15%) are used. It was found that NOx emission decreases substantially with both hot and cold EGR but smoke and carbon monoxide emissions are increasing with higher EGR rates. Brake thermal efficiency (BTE) increases with hot egr but cold EGR gives lower thermal efficiency than hot egr. Hot EGR emits less smoke and less NOx at higher loads compared to cold EGR. It was observed that exhaust gas between 10% and 15% can be recirculated for getting better results. The use of EGR is thus considered to be one of the most effective in reducing NOx emissions.
机译:本文分析了废气再循环(EGR)对使用柴油-生物柴油(橡胶籽油甲酯)混合物的压缩点火(CI)发动机的性能和排放的影响。与柴油燃料相比,生物柴油驱动的发动机通常产生较少的未燃烧碳氢化合物,一氧化碳和烟,但排放的氮氧化物更多。 NOx的形成是温度相关的现象,当燃烧温度超过2000K时会发生。 EGR是减少CI发动机中NOx排放的有效方法,因为它可以降低火焰温度和燃烧室内的氧气浓度。在本研究中,同时使用了热EGR和冷EGR(5%,10%和15%)。已经发现,热和冷EGR都使NOx排放量显着降低,但是随着较高的EGR率,烟尘和一氧化碳排放量却增加。制动热效率(BTE)随着热egr的增加而增加,但是冷EGR的热效率低于热egr。与冷EGR相比,在较高负载下,热EGR排放的烟雾更少,NOx更少。据观察,可以再循环10%至15%的废气以获得更好的结果。因此,EGR的使用被认为是减少NOx排放最有效的方法之一。

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