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Thermochemical recovery technology for improved modern engine fuel economy – part 1: analysis of a prototype exhaust gas fuel reformer

机译:用于改善现代发动机燃油经济性的热化学回收技术-第1部分:原型废气燃料重整器的分析

摘要

Exhaust gas fuel reforming has the potential to improve the thermal efficiency of internal combustion engines, as well as simultaneously reduce gaseous and particulate emissions. This thermochemical energy recovery technique aims to reclaim exhaust energy from the high temperature engine exhaust stream to drive catalytic endothermic fuel reforming reactions; these convert hydrocarbon fuel to hydrogen-rich reformate. The reformate is recycled back to the engine as Reformed Exhaust Gas Recirculation (REGR), which provides a source of hydrogen to enhance the engine combustion process and enable high levels of charge dilution; this process is especially promising for modern gasoline direct injection (GDI) engines. This paper presents a full-scale prototype gasoline reformer integrated with a multi-cylinder GDI engine. Performance is assessed in terms of the reformate composition, the temperature distribution across the catalyst, the reforming process (fuel conversion) efficiency and the amount of exhaust heat recovery achieved.
机译:废气燃料重整具有改善内燃机热效率的潜力,同时减少了气体和颗粒物的排放。这种热化学能回收技术旨在从高温发动机废气中回收废气能量,以驱动催化吸热燃料重整反应。这些将烃类燃料转化为富氢重整产品。重整产品作为重整废气再循环(REGR)再循环回发动机,该重整产品提供了氢气源,可增强发动机燃烧过程并实现高水平的充气稀释;对于现代汽油直喷(GDI)发动机,此过程特别有希望。本文介绍了一种与多缸GDI发动机集成的大型汽油重整器原型。根据重整产物组成,催化剂上的温度分布,重整过程(燃料转化)效率和所获得的废热回收量来评估性能。

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