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Improving gasoline direct injection (GDI) engine efficiency and emissions with hydrogen from exhaust gas fuel reforming

机译:通过废气燃料重整制氢提高汽油直喷(GDI)发动机效率和排放

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摘要

Exhaust gas fuel reforming has been identified as a thermochemical energy recovery technology with potential to improve gasoline engine efficiency, and thereby reduce CO2 in addition to other gaseous and particulate matter (PM) emissions. The principle relies on achieving energy recovery from the hot exhaust stream by endothermic catalytic reforming of gasoline and a fraction of the engine exhaust gas. The hydrogen-rich reformate has higher enthalpy than the gasoline fed to the reformer and is recirculated to the intake manifold, i.e. reformed exhaust gas recirculation (REGR).The REGR system was simulated by supplying hydrogen and carbon monoxide (CO) into a conventional EGR system. The hydrogen and CO concentrations in the REGR stream were selected to be achievable in practice at typical gasoline exhaust temperatures. Emphasis was placed on comparing REGR to the baseline gasoline engine, and also to conventional EGR. The results demonstrate the potential of REGR to simultaneously increase thermal efficiency, reduce gaseous emissions and decrease PM formation.
机译:废气燃料重整已被认为是一种热化学能量回收技术,具有提高汽油发动机效率,从而减少二氧化碳的排放以及除其他气态和颗粒物(PM)排放的潜力。该原理依赖于通过汽油和一部分发动机废气的吸热催化重整从热的废气流中回收能量。富氢重整产品比送入重整器的汽油具有更高的焓,并被再循环到进气歧管,即重整废气再循环(REGR)。通过将氢气和一氧化碳(CO)供应到常规EGR中来模拟REGR系统。系统。选择REGR物流中的氢气和一氧化碳浓度,使其在实践中可在典型的汽油排气温度下达到。重点放在将REGR与基准汽油发动机以及常规EGR进行比较。结果表明,REGR具有同时提高热效率,减少气体排放和减少PM形成的潜力。

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