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Methane/steam global reforming kinetics over the Ni/YSZ of planar pre-reformers for SOFC systems

机译:用于SOFC系统的平面预重整器的Ni / YSZ上的甲烷/蒸汽全局重整动力学

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A solid oxide fuel cell (SOFC) is a promising all-solid-state energy conversion device that produces electricity by electrochemically combining a fuel with an oxidant across an oxide electrolyte. To optimize SOFC performance, it is necessary to investigate the effects of the design and operating parameters on system components such as pre-reformers and afterburners. In pursuit of this, a multi-component SOFC design based on a planar stack was developed. Two specially designed planar-type steam pre-reformers (the first consisting of five layers with air heating and the other of one with electric heating) utilizing nickel yttria-stabilized zirconia (Ni/YSZ) as catalyst were built to investigate the kinetics of steam reforming with methane. Whereas experimental results on the global reaction kinetics of a Ni-based catalyst in the 5-layer planar pre-reformers within a temperature range of between 350 degrees C and 610 degrees C have been published, this work reports the results of reforming kinetics using a 1-layer reformer as a flow reactor in a higher temperature range (500 degrees C-740 degrees C), as well as on reforming kinetics in combination with anode off-gas recycling. The results confirm the proposed kinetic expression of the Arrhenius type (second order with respect to the mole fraction of methane and first order with respect to the mole fraction of water) for different steam-to-carbon ratios and also for anode off-gas recycling. The activation energy for methane steam reforming corresponds to the desorption energy of CO or H2O from the catalyst surface depending on the inlet composition of the mixture. (C) 2016 Elsevier B.V. All rights reserved.
机译:固体氧化物燃料电池(SOFC)是一种有前途的全固态能量转换装置,该装置通过跨氧化物电解质将燃料与氧化剂电化学结合来发电。为了优化SOFC性能,有必要研究设计和操作参数对系统组件(如预改革者和后燃者)的影响。为此,开发了基于平面堆叠的多组分SOFC设计。建造了两个专门设计的平面型蒸汽预重整器(第一层由空气加热的五层组成,另一层由电加热的重整器)利用镍-氧化钇稳定的氧化锆(Ni / YSZ)作为催化剂,以研究蒸汽的动力学用甲烷重整。尽管已经发表了有关在5层平面预重整器中在350摄氏度至610摄氏度之间的温度范围内的镍基催化剂的整体反应动力学的实验结果,但这项工作报告了使用碳纳米管进行重整动力学的结果。 1层重整器可在较高温度范围(500摄氏度至740摄氏度)中用作流动反应器,并且可与阳极废气再循环结合使用重整动力学。结果证实了对于不同的蒸汽碳比以及阳极废气再循环,拟议的Arrhenius型动力学表达(相对于甲烷的摩尔分数为二阶,相对于水的摩尔分数为一阶) 。甲烷蒸汽重整的活化能对应于CO或H2O从催化剂表面的解吸能,具体取决于混合物的入口组成。 (C)2016 Elsevier B.V.保留所有权利。

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