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Operating characteristics of a reformer for molten carbonate fuel-cell power-generation systems

机译:用于熔融碳酸盐燃料电池发电系统的重整器的操作特性

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An investigation on the reformer operating characteristics for molten carbonate fuel-cell systems has been carried out by using dynamic siumlations. A reformer model has been developed to evaluate its capability to provide appropriate gases to fuel-cell stacks under load-following modes. It deals with the interconnected chemical reactions and the heat transfer processes,and the process gas reactions in two separated catalyst beds. Thesimulation results show:(i) the reformer provides appropriate gases for fuel-cell stacks under stationalry conditions, (ii) manipulating the input process gas is effective in controlling the feeding gas to the fuel-cell anode, though there are two side effects (flucturation of hydrogen concentration and temperature)and (iii) the reformer shows low sensitivity to the disturbances of the flue gas input temperature and the ratio of steamatural gas, but high sensitivity to the process operating pressure.
机译:已经通过使用动态硫磺化对熔融碳酸盐燃料电池系统的重整器操作特性进行了研究。已经开发出一种重整器模型来评估其在负荷跟踪模式下向燃料电池堆提供适当气体的能力。它处理相互关联的化学反应和传热过程,以及在两个分开的催化剂床中进行的过程气体反应。仿真结果表明:(i)重整器在固定条件下为燃料电池堆提供合适的气体,(ii)操纵输入过程气体可有效控制燃料电池阳极的进料气,尽管有两个副作用( (iii)重整器对烟气输入温度和蒸汽/天然气比例的扰动显示出较低的敏感性,但对工艺操作压力显示出较高的敏感性。

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