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A micro-structured 5kW complete fuel processor for iso-octane as hydrogen supply system for mobile auxiliary power units Part I. Development of autothermal reforming catalyst and reactor

机译:一种微型结构的5kW完整燃料处理器,用于异辛烷作为移动辅助动力装置的氢气供应系统,第I部分:自热重整催化剂和反应器的开发

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摘要

A micro-structured autothermal reformer was developed for a fuel processing/fuel cell system running on iso-octane and designed for an electrical power output of 5kWel. The target application was an automotive auxiliary power unit (APU). The work covered both catalyst and reactor development. In fixed bed screening, nickel and rhodium were identified as the best candidates for autothermal reforming of gasoline.udUnder higher feed flow rates applied in microchannel testing, a catalyst formulation containing 1 wt.% Rh on alumina prepared by the sol–gel synthesis route proved to be stable at least in the medium term. This catalyst was introduced into the final prototype reactor designed to supply a 5kW fuel cell, which was based upon m cro-structured stainless steel foils. The reactor was optimised for equipartition of flows by numericaludsimulation. Testing in a pilot scale test rig, which was limited to a specified power equivalent of 3.5kWel, revealed more than 97% conversion of gasoline at 124 Ndm3/min total flow-rate of reformate, which corresponded to a WHSV of 316.5 Ndm3/(h gcat).
机译:为在异辛烷上运行的燃料处理/燃料电池系统开发了一种微结构自热重整器,其设计输出功率为5kWel。目标应用是汽车辅助动力装置(APU)。这项工作涵盖了催化剂和反应器的开发。在固定床筛选中,镍和铑被确定为汽油自热重整的最佳候选者。 ud在微通道测试中采用更高的进料流速后,通过溶胶-凝胶合成路线制备的氧化铝上含1 wt。%Rh的催化剂配方至少在中期证明是稳定的。将该催化剂引入最终原型反应器中,该反应器设计用于提供5kW燃料电池,该燃料电池基于微结构不锈钢箔。通过数值模拟,对反应器进行了均流优化。在仅限于3.5kWel的指定功率当量的中型试验台上进行的测试显示,重整产品的总流速为124 Ndm3 / min时,汽油的转化率超过97%,相当于WHSV为316.5 Ndm3 /( h gcat)。

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