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Development of a catalytic combustor for a stationary fuel cell power generation system

机译:固定式燃料电池发电系统催化燃烧器的开发

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The anode off-gas of high temperature stationary fuel cell stacks still includes fuel components such as hydrogen, carbon monoxide, and hydrocarbon due to the innate characteristics of the fuel cell operation. Even though the anode off-gas has fuel contents, the flammability is very limited due to the vapor concentration of the anode off-gas. A catalytic combustor is applied as an off-gas combustor so as to utilize the waste energy of anode off-gas by stimulating a chemical reaction over selected operating conditions. Temperature and flow uniformity in the radial direction are very significant factors of the durability, because the catalytic combustion is carried out on the surface of the catalyst site. On the other hand, the catalyst selection is also very important due to the composition of the anode off-gas. In this study, the flow uniformity is presented prior to a catalyst screening test. From the results of the screening test, where three commercially available catalysts are tested, KIMM-Ⅰ and KIMM-Ⅱ are selected as candidates for a catalytic combustor of anode off-gas.
机译:由于燃料电池操作的固有特性,高温固定式燃料电池堆的阳极废气仍包含燃料成分,例如氢,一氧化碳和碳氢化合物。即使阳极废气具有燃料含量,由于阳极废气的蒸气浓度,其可燃性也非常有限。催化燃烧器用作废气燃烧器,以便通过在选定的操作条件下刺激化学反应来利用阳极废气的浪费能量。径向上的温度和流动均匀性是耐久性的非常重要的因素,因为催化燃烧是在催化剂部位的表面上进行的。另一方面,由于阳极废气的组成,催化剂的选择也非常重要。在这项研究中,在进行催化剂筛选测试之前先提出了流动均匀性。从筛选测试的结果中,对三种市售催化剂进行了测试,选择KIMM-Ⅰ和KIMM-Ⅱ作为阳极废气催化燃烧器的候选者。

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