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Diesel engine exhaust gas recirculation―a review on advanced and novel concepts

机译:柴油机废气再循环-先进概念的回顾

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摘要

Exhaust gas recirculation (EGR) is effective to reduce nitrogen oxides (NO_x) from Diesel engines because it lowers the flame temperature and the oxygen concentration of the working fluid in the combustion chamber. However, as NO_x reduces, paniculate matter (PM) increases, resulting from the lowered oxygen concentration. When EGR further increases, the engine operation reaches zones with higher instabilities, increased carbonaceous emissions and even power losses. In this research, the paths and limits to reduce NO_x emissions from Diesel engines are briefly reviewed, and the inevitable uses of EGR are highlighted. The impact of EGR on Diesel operations is analyzed and a variety of ways to implement EGR are outlined. Thereafter, new concepts regarding EGR stream treatment and EGR hydrogen reforming are proposed.
机译:排气再循环(EGR)可有效减少柴油机的氮氧化物(NO_x),因为它可以降低火焰温度和燃烧室内工作流体的氧气浓度。但是,随着NO_x的减少,由于氧浓度降低,导致颗粒物(PM)增加。当EGR进一步增加时,发动机的运转将进入不稳定程度更高,碳排放量增加甚至功率损失的区域。在这项研究中,简要回顾了减少柴油机NO_x排放的途径和限制,并重点介绍了EGR的必然使用。分析了EGR对柴油机运行的影响,并概述了各种实现EGR的方法。此后,提出了有关EGR流处理和EGR氢气重整的新概念。

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