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Methanol steam reforming in a compact plate-fin reformer for fuel-cell systems

机译:用于燃料电池系统的紧凑型板翅式重整器中的甲醇蒸汽重整

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摘要

A compact plate-fin reformer (PFR) consisting of closely spaced plate-fins, in which endothermic and exothermic reactions take place in alternate chambers, has been studied. In the PFR, which was based on a plate-fin heat exchanger, catalytic combustion of the reforming gas, as a simulation of the fuel cell anode off gas (AOG), supplied the necessary heat for the reforming reaction. One reforming chamber, which was for hydrogen production, was integrated with two vaporization chambers and two combustion chambers to constitute a single unit of PFR. The PFR is very compact, easy to be placed and scaled up. The effect of the ratio of H_2O/CH_3OH on the performance of the PFR has been investigated, and temperature distributions in different chambers were studied. Besides, the stationary behavior of the PFR was also investigated. Heat transfer of the reformer was enhanced by internal plate-fins as well as by external catalytic combustion, which offer both high methanol conversion ratio and low CO concentration. In addition, the fully integrated reformer exhibited good test stability. Based on the PFR, a scale-up reformer was designed and operated continuously for 1000 h, with high methanol conversion ratio and low CO concentration.
机译:已经研究了由紧密间隔的板翅片组成的紧凑型板翅片重整器(PFR),其中吸热和放热反应在交替的腔室中发生。在基于板翅式换热器的PFR中,重整气体的催化燃烧作为燃料电池阳极废气(AOG)的模拟,为重整反应提供了必要的热量。一个用于制氢的重整室与两个汽化室和两个燃烧室集成在一起,构成一个单一的PFR单元。 PFR非常紧凑,易于放置和放大。研究了H_2O / CH_3OH比对PFR性能的影响,并研究了不同腔室中的温度分布。此外,还研究了PFR的静态行为。内部板翅片和外部催化燃烧增强了重整器的传热,既提供了高甲醇转化率又提供了低CO浓度。此外,完全集成的重整器具有良好的测试稳定性。基于PFR,设计了大型转化炉,并连续运行1000小时,甲醇转化率高且CO浓度低。

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