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Start-up behavior of fuel processors for PEM fuel cell applications

机译:PEM燃料电池应用燃料处理器的启动行为

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This paper focuses on start-up technology for fuel processing systems with special emphasis on gasoline fueled burners. Initially two different fuel-processing systems, an autothermal reformer with preferential oxidation and a steam reformer with membrane, are introduced and their possible starting strategies are discussed. Energy consumption for preheating up to light-off temperature and the start-up time is estimated. Subsequently electrical preheating is compared with start-up burners and the different types of heat generation are rated with respect to the requirements on start-up systems. Preheating power for fuel cell propulsion systems necessarily reaches up to the magnitude of the electrical fuel cell power output. A gasoline-fueled burner with thermal combustion has been build-up, which covers the required preheating power. Independent from the ambient conditions, the burner itself starts up in less than 5 seconds and then directly provides the preheating power within its exhaust gas. The average emissions of the burner during operation are below 40 ppm CO, 25 ppm UHC and 15 ppm NO{sub}x.
机译:本文侧重于燃料加工系统的启动技术,特别强调汽油燃料燃烧器。初始介绍了两种不同的燃料处理系统,引入了具有优先氧化和具有膜的蒸汽重整器的自热重整器,并讨论了它们可能的起始策略。估计用于预热到熄灭温度和启动时间的能量消耗。随后将电预热与启动燃烧器进行比较,并且相对于启动系统的要求评定不同类型的发热。用于燃料电池推进系统的预热功率必须达到电气燃料电池功率输出的大小。具有热燃烧的汽油燃料燃烧器已经积累,涵盖了所需的预热功率。独立于环境条件,燃烧器本身在不到5秒钟内启动,然后直接在其废气内提供预热功率。操作期间燃烧器的平均排放量低于40ppm Co,25ppm UHC和15ppm No {sub} x。

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