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Hydrogen Generation for Feeding High-Temperature Fuel Cells

机译:用于喂养高温燃料电池的氢气产生

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摘要

Several methods of hydrogen production for feeding high-temperature fuel cells in high-efficiency environmentally friendly small-scale power plants are compared. As the most promising types of energy carriers for such installations, natural gas and aluminum are considered. The possibilities of producing a hydrogen-containing feed gas for high-temperature fuel cells on the basis of technologies we develop for the environmentally friendly burning of low-calorific fuels in volumetric matrix burner devices and for the efficient burning of aluminum in a high-temperature reactor are experimentally explored. It is shown that, in the technology of localized combustion of mixtures in a methane-conversion matrix, the specific yield of feed gas for fuel cells per unit area of the outlet section of the reactor is 3 times higher than that obtained for the combustion of aluminum-water mixtures at atmospheric pressure. The total specific power of the process is also 1.85 times higher. In the technology of distributed reaction, in the bubbling of steam through an aluminum melt, the specific yield of hydrogen per unit area of the reaction surface of the bubbles is an order of magnitude greater than the specific yield of hydrogen in the "cold" reaction of aluminum with a 1 M alkaline solution.
机译:比较了用于在高效环保小型发电厂中供给高温燃料电池的几种氢气生产方法。作为这种装置的最有希望的能量载体类型,考虑了天然气和铝。基于技术生产高温燃料电池生产含氢进料气体的可能性,我们为体积矩阵燃烧器装置中的低热量燃料的环保燃烧,以及高温铝的高热量燃烧实验探索反应堆。结果表明,在甲烷 - 转化基质中的混合物的局部燃烧技术中,反应器的出口部分的每单位面积的燃料电池的燃料电池的特定产量比燃烧的3倍高3倍铝水混合物在大气压下。该过程的总特定功率也越高1.85倍。在分布式反应的技术中,在蒸汽的鼓泡通过铝熔体,泡沫反应表面的每单位面积的氢的比产率大于“冷”反应中氢的比产率大。铝用1M碱性溶液。

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