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Mathematical Modeling of De-hydrogenation Micro-reactors for Vehicles Using the Liquid Carrier of Hydrogen Fuel

机译:使用氢燃料液体载体的车辆脱氢微反应器的数学建模

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When the organic liquid carrier of hydrogen is used as the fuel on a vehicle, a key component is the hydrogen releasing device, which requires large surface area of catalyst, small size and light weight. Micro-reactors with internal structure of micro pin-fin array is considered due to its high area-to-volume ratio and intimate impaction-contact with the fluids. To support the design of a first experiment, a mathematical model based on laws of conservation and chemical reaction is established. A surface-reaction efficiency has also been included to consider the possible effect of surface non-wetting in the hydrogen two-phase flow. This model has been demonstrated using the N-Ethyl Carbazole as the liquid carrier and Palladium as the catalyst. Due to the large gas generation rate, the numerical modeling indicates that the system operates at high void fraction with large slip ratio. This leads to an alternative system design of using segmented reactors with a hydrogen separator located in between. This leads to reduced size of the system and less catalyst material used.
机译:当氢的有机液体载体用作车辆上的燃料时,关键部件是氢释放装置,其需要催化剂的表面积大,尺寸小且重量轻。考虑到具有微针-翅片阵列内部结构的微反应器,是因为其高的体积体积比以及与流体的紧密碰撞接触。为了支持第一个实验的设计,建立了基于守恒和化学反应定律的数学模型。还考虑了表面反应效率,以考虑氢两相流中表面不润湿的可能影响。已经使用N-乙基咔唑作为液体载体和钯作为催化剂证明了该模型。由于气体产生速率大,数值模型表明该系统在高空隙率和大滑移率下运行。这导致了使用分段反应器和氢分离器位于其间的分段系统设计。这导致系统尺寸的减小和所用催化剂材料的减少。

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