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A multi-function compact fuel reforming reactor for fuel cell applications

机译:用于燃料电池的多功能紧凑型燃料重整反应器

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A multi-function compact chemical reactor designed for hydrocarbon steam reforming was evaluated. The reactor design is based on diffusion bonded laminate micro-channel heat exchanger technology. The reactor consists of a combustor layer, which is sandwiched between two steam reforming layers. Between the two function layers, a temperature monitor and control layer is placed, which is designed to locate the temperature sensors. The combustor layer has four individually controlled combustion zones each connected to a separate fuel supply. The reactor design offers the potential to accurately control the temperature distribution along the length of the reactor using closed loop temperature control. The experimental results show that the variance of temperature along the reactor is negligible. The conversion efficiency of the combustor layer is approximately 90%. The heat transfer efficiency from combustion layer to reforming layers is 65-85% at 873 K and 673 K, respectively. The heat transfer rate to the reforming layers is sufficient to support a steam reformation of propane at a rate of 0.7 dm~3/min (STP) with a steam to carbon ratio of 2 at 873 K.
机译:评价了用于烃蒸汽重整的多功能紧凑型化学反应器。反应堆设计基于扩散粘合层压板微通道换热器技术。该反应器由燃烧器层组成,该燃烧器层夹在两个蒸汽重整层之间。在两个功能层之间放置一个温度监视和控制层,该层用于定位温度传感器。燃烧器层具有四个单独控制的燃烧区,每个燃烧区均连接到单独的燃料供应。反应堆设计提供了使用闭环温度控制精确控制沿着反应堆长度的温度分布的潜力。实验结果表明,沿反应器的温度变化可以忽略不计。燃烧器层的转化效率约为90%。从燃烧层到重整层的传热效率在873 K和673 K时分别为65-85%。到重整层的传热速率足以支持以0.7km〜3 / min(STP)的速率在873 K下蒸汽与碳的比率为丙烷的蒸汽重整。

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