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EGR OXIDATION AND CATALYTIC FUEL REFORMING FOR DIESEL ENGINES

机译:柴油发动机的EGR氧化和催化燃料重整

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Exhaust gas recirculation (EGR) treatment techniques that include combustible substance oxidation, catalytic fuel reforming, and partial bypass-flow control have been experimentally investigated on a single cylinder diesel engine. Application tests are conducted to investigate the effects of the reformed gases on the diesel combustion characteristics and exhaust emissions. This research is aimed at stabilizing and expanding the limits of heavy EGR during steady and transient operations by enhancing the premixed combustion that may significantly alleviate problems with soot formation and cyclic variations. Additionally, the heavy treated EGR is applied to enable in-cylinder low temperature combustion. A preliminary investigation on the effects of water addition to the high temperature catalyst bed is also conducted. The potential of EGR reforming is also examined for possible generation of synthetic EGR (CO{sub}2) at low engine loads. The effectiveness of the treated EGR on engine emission and operating characteristics are therefore reported.
机译:在单个汽缸柴油发动机上实验研究了包括可燃物质氧化,催化燃料重整和部分旁路 - 流量控制的废气再循环(EGR)处理技术。进行施用试验以研究重整气体对柴油燃烧特性和废气排放的影响。该研究旨在通过增强预混燃烧在稳定和瞬态操作期间稳定和扩展重型EGR的极限,这可能会显着缓解烟灰形成和循环变异。另外,施加重物的EGR以使缸内温度燃烧能够实现。还进行了对高温催化剂床的水的影响的初步研究。还在低发动机负载下检查EGR重整的潜力..在低发动机负载下可能产生合成EGR(CO {SUB} 2)。因此报道了经处理的EGR对发动机发射和操作特性的有效性。

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