Yang Jun, Molouk Ahmed Fathi Salem, Okanishi Takeou, Muroyama Hiroki, Matsui Toshiaki, Eguchi Koichi
Department of Energy and Hydrocarbon Chemistry, Graduate School of Engineering, Kyoto University, Kyoto 615-8510, Japan.
ACS Appl Mater Interfaces. 2015 Apr 8;7(13):7406-12. doi: 10.1021/acsami.5b01048. Epub 2015 Mar 24.
In this study, Ni/BaCe0.75Y0.25O3-δ (Ni/BCY25) was investigated as an anode for direct ammonia-fueled solid oxide fuel cells. The catalytic activity of Ni/BCY25 for ammonia decomposition was found to be remarkably higher than Ni/8 mol % Y2O3-ZrO2 and Ni/Ce0.90Gd0.10O1.95. The poisoning effect of water and hydrogen on ammonia decomposition reaction over Ni/BCY25 was evaluated. In addition, an electrolyte-supported SOFC employing BaCe0.90Y0.10O3-δ (BCY10) electrolyte and Ni/BCY25 anode was fabricated, and its electrochemical performance was investigated at 550-650 °C with supply of ammonia and hydrogen fuel gases. The effect of water content in anode gas on the cell performance was also studied. Based on these results, it was concluded that Ni/BCY25 was a promising anode for direct ammonia-fueled SOFCs. An anode-supported single cell denoted as Ni/BCY25|BCY10|Sm0.5Sr0.5CoO3-δ was also fabricated, and maximum powder density of 216 and 165 mW cm(-2) was achieved at 650 and 600 °C, for ammonia fuel, respectively.
在本研究中,对Ni/BaCe0.75Y0.25O3-δ(Ni/BCY25)作为直接氨燃料电池固体氧化物燃料电池的阳极进行了研究。发现Ni/BCY25对氨分解的催化活性明显高于Ni/8 mol% Y2O3-ZrO2和Ni/Ce0.90Gd0.10O1.95。评估了水和氢气对Ni/BCY25上氨分解反应的中毒效应。此外,制备了采用BaCe0.90Y0.10O3-δ(BCY10)电解质和Ni/BCY25阳极的电解质支撑型固体氧化物燃料电池,并在550-650℃下供应氨和氢气燃料气体时研究了其电化学性能。还研究了阳极气体中水含量对电池性能的影响。基于这些结果,得出结论:Ni/BCY25是直接氨燃料电池固体氧化物燃料电池的一种有前景的阳极。还制备了一个阳极支撑的单电池,记为Ni/BCY25|BCY10|Sm0.5Sr0.5CoO3-δ,在650℃和600℃下,以氨为燃料时,最大功率密度分别达到216和165 mW cm(-2)。