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Systems Analysis of Diesel Based Fuel Cells for Auxiliary Power Units

机译:辅助电力单元柴油燃料电池系统分析

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The near-term commercial success for many fuel cell technologies will rely on their ability to utilize current infrastructure fuels. Several large ready-markets exist for fuel cell systems that utilize middle distillate petroleum fractions like diesel fuel. One particular application is diesel-based auxiliary power units (APU). Unfortunately, very little research and development has been devoted to this application. Ongoing research at the National Energy Technology Laboratory (NETL) and other organizations is trying to address this need. In order for a fuel cell to utilize diesel fuel, it must be reformed into a synthesis gas containing primarily hydrogen, carbon monoxide, carbon dioxide, steam and possibly methane. Because catalytic reforming of hydrocarbon fuels is conducted at the same relative operating temperatures of technologies like solid oxide fuel cells (800-1000°C) a high degree of thermal integration is possible. Unfortunately, carbon deposition and sulfur poisoning of catalysts in the reformer and fuel cell make system operation potentially complicated and costly. To help understand and quantify the impact of these issues on technology development and component, a number of systems analysis was conducted for a diesel-based fuel cell system. One particular system based on a hybrid combustor/reformer concept allowed for excellent utilization of available heat from the fuel cell and yielded an overall fuel to electric conversion efficiency of nearly 50%. This paper discusses its salient features and compares its characteristics to other possible system configurations.
机译:许多燃料电池技术的近期商业成功将依靠他们利用当前基础设施燃料的能力。存在几种大型现成市场,用于利用柴油燃料等中间馏分石油级分的燃料电池系统。一个特定应用是基于柴油的辅助电源单元(APU)。不幸的是,这申请致力于研究和发展。在国家能源技术实验室(NetL)和其他组织的持续研究正在努力解决这种需求。为了使燃料电池利用柴油燃料,必须重整为主要氢,一氧化碳,二氧化碳,蒸汽和可能甲烷的合成气体。因为烃燃料的催化重整在与固体氧化物燃料电池(800-1000°C)这样的技术的相同的相对操作温度下进行,所以可以高度热整合。遗憾的是,重整器和燃料电池中催化剂的碳沉积和硫中毒使系统操作可能复杂且昂贵。为了帮助理解和量化这些问题对技术开发和组件的影响,对基于柴油的燃料电池系统进行了许多系统分析。基于混合燃烧器/重整器概念的一个特定系统允许优异地利用来自燃料电池的可用热量,并产生近50%的电转换效率的整体燃料。本文讨论了其突出特征,并将其特性与其他可能的系统配置进行了比较。

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