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首页> 外文期刊>Journal of Fuel Cell Science and Technology >Flow Uniformity of Catalytic Burner for Off-Gas Combustion of Molten Carbonate Fuel Cell
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Flow Uniformity of Catalytic Burner for Off-Gas Combustion of Molten Carbonate Fuel Cell

机译:熔融碳酸盐燃料电池废气燃烧用催化燃烧器的流量均匀性

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摘要

A catalytic combustor is a device to burn off fuel by surface combustion that is used for the combustion of anode off-gas of molten carbonate fuel cells by employing the catalytic combustor. Purified exhaust gas can be recirculated into the cathode channel for CO_2 supply to improve thermal efficiency. The design of a catalytic combustor depends on many parameters, but flow uniformity is particularly important during the emergency shut-down of a fuel cell stack. Before the temperature control of a catalytic combustor is activated, the catalytic combustor should burn off more than two times the rated amount of the fuel flow rate. Under overload conditions, assurance of flow uniformity at the inlet of the catalytic combustor can reduce damage to the catalytic burner that can be caused by a local hot zone. In this study, flow uniformity of the catalytic combustor was investigated in two steps: a preliminary step with a model combustor and a main analysis step with a practical 250 kW catalytic combustor. Models of the 0.5 and 5 kW class combustors were used in the preliminary step. In the preliminary step the model combustors were used to determine supporting matters for flow uniformity. The inlet direction of the mixing chamber below the catalytic combustor was also examined in the preliminary step. In the main analysis step the flow uniformity of the scale-up combustor was examined with selected supporting matter and inlet direction into the mixing chamber. Geometric and operating parameters were investigated. In particular, the flow rate under off-design operating conditions was examined.
机译:催化燃烧器是通过表面燃烧来燃烧燃料的装置,其通过使用催化燃烧器用于熔融碳酸盐燃料电池的阳极废气的燃烧。可以将纯化的废气再循环到阴极通道中以供应CO_2,以提高热效率。催化燃烧器的设计取决于许多参数,但是在燃料电池堆紧急关闭期间,流量均匀性尤为重要。在激活催化燃烧器的温度控制之前,催化燃烧器应燃烧掉两倍于额定燃料流量的量。在过载条件下,保证催化燃烧器入口处的流均匀性可以减少由局部热区引起的对催化燃烧器的损坏。在本研究中,分两个步骤研究了催化燃烧器的流量均匀性:使用模型燃烧器的初步步骤和使用实际250 kW催化燃烧器的主要分析步骤。在预备步骤中使用了0.5和5 kW级燃烧器的模型。在预备步骤中,模型燃烧器用于确定流动均匀性的支持事项。在预备步骤中还检查了混合室在催化燃烧器下方的入口方向。在主要分析步骤中,使用选定的支撑物和进入混合室的入口方向检查了按比例放大燃烧器的流动均匀性。研究了几何和操作参数。尤其要检查非设计工况下的流量。

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