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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >On-board thermochemical energy recovery technology for low carbon clean gasoline direct injection engine powered vehicles
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On-board thermochemical energy recovery technology for low carbon clean gasoline direct injection engine powered vehicles

机译:低碳清洁汽油直喷式发动机动力车辆的板载热化学能源回收技术

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摘要

Exhaust gas fuel reforming is a catalytic process that reclaims exhaust energy from the high temperature engine exhaust stream to drive catalytic endothermic fuel reforming reactions; these convert hydrocarbon fuel to higher enthalpy hydrogen-rich gas known as reformate. This technique has the potential to improve the thermal efficiency of internal combustion engines, as well as to simultaneously reduce gaseous and particulate emissions. This study demonstrates a novel, prototype exhaust gas fuel reformer integrated with a modern, turbocharged, 4-cylinder gasoline direct injection engine and analyses the effects on engine performance, combustion characteristics and emissions. The results suggest that exhaust gas fuel reforming raises the engine fuel efficiency through a combination of: exhaust energy recovery; improved engine thermal efficiency; and enhanced combustion at highly dilute operation, which considerably reduces NOx emissions by up to 91% and improves engine fuel consumption by up to 8%. The presence of hydrogen and exhaust gas diluents in the combustion charge also reduces particle formation for lower total particulate matter emissions (up to 78% and 84% for number and mass, respectively).
机译:废气燃料重整是一种催化过程,其回收来自高温发动机排气流的排气能量,以驱动催化吸热燃料重整反应;这些将烃燃料转化为称为重整产物的更高焓富焓。该技术具有提高内燃机的热效率,以及同时降低气态和颗粒排放。本研究展示了一种新颖的原型废气燃料重整机,与现代,涡轮增压,4缸汽油直喷发动机集成,并分析了对发动机性能,燃烧特性和排放的影响。结果表明,废气燃料重整通过以下组合提高了发动机燃料效率:排气能量回收;改善发动机热效率;在高度稀释的操作中增强燃烧,这大大降低了高达91%的NOx排放,并将发动机燃料消耗提高了高达8%。燃烧电荷中的氢气和废气稀释剂的存在也降低了颗粒形成,以降低总颗粒物质排放(分别为数量和质量的高达78%和84%)。

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