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Development of Ni-Ba(Zr,Y)O-3 cermet anodes for direct ammonia-fueled solid oxide fuel cells

机译:用于直接氨燃料的固体氧化物燃料电池的Ni-Ba(Zr,Y)O-3金属陶瓷阳极的开发

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In this study, the availability of Ni-Ba(Zr,Y)O3-delta (BZY) cermet for the anode of direct ammonia -fueled solid oxide fuel cells (SOFCs) is evaluated. In this device, the anodes need to be active for the catalytic ammonia decomposition as well as the electrochemical hydrogen oxidation. In the catalytic activity test, ammonia decomposes completely over Ni-BZY at ca. 600 degrees C, while higher temperature is required to accomplish the complete decomposition over the conventional SOFC anode of Ni yttria-stabilized zirconia cermet. The high activity of Ni-BZY is attributed to the high basicity of BZY and the high resistance to hydrogen poisoning effect. The electrochemical property of Ni-BZY anode is also evaluated with the anode-supported cell of Ni-BZYIBZYIPt at 600-700 degrees C with feeding ammonia or hydrogen as a fuel. Since the residence time of ammonia fuel in the thick Ni-BZY anode is long, the difference in the cell performance between two fuels is relatively small. Furthermore, it is proved that the steam concentration in the fuel strongly affects the cell performance. We find that this factor is important to satisfy the above mentioned requirements for the anode of direct ammonia-fueled SOFCs. Throughout this study, it is concluded that Ni-BZY cermet will be a promising anode. (C) 2017 Elsevier B.V. All rights reserved.
机译:在这项研究中,评估了直接使用氨燃料的固体氧化物燃料电池(SOFC)阳极的Ni-Ba(Zr,Y)O3-δ(BZY)金属陶瓷的可用性。在该装置中,阳极需要对催化氨分解以及电化学氢氧化具有活性。在催化活性测试中,氨在Ni-BZY上大约在60℃完全分解。 600摄氏度,同时需要更高的温度以完成传统的Ni氧化钇稳定的氧化锆金属陶瓷的SOFC阳极的完全分解。 Ni-BZY的高活性归因于BZY的高碱性和对氢中毒作用的高抵抗力。还使用Ni-BZYIBZYIPt的阳极支撑电池在600-700℃下以氨或氢作为燃料进料来评估Ni-BZY阳极的电化学性质。由于氨燃料在厚Ni-BZY阳极中的停留时间长,因此两种燃料之间的电池性能差异相对较小。此外,已证明燃料中的蒸汽浓度强烈影响电池性能。我们发现,这一因素对于满足上述直接氨燃料SOFC阳极的要求非常重要。在整个研究过程中,可以得出结论,Ni-BZY金属陶瓷将是有前途的阳极。 (C)2017 Elsevier B.V.保留所有权利。

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