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首页> 外文期刊>Applied Energy >Electricity generation in dry methane by a durable ceramic fuel cell with high-performing and coking-resistant layered perovskite anode
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Electricity generation in dry methane by a durable ceramic fuel cell with high-performing and coking-resistant layered perovskite anode

机译:耐用的陶瓷燃料电池具有高性能和耐结焦的钙钛矿层状阳极,可在干燥甲烷中发电

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摘要

A novel A-site deficient ceramic oxide (PrBa)0.95(Fe0.9Nb0.1)2O5+δwith layered perovskite structure has been investigated as an anode material for a direct-hydrocarbon fueled solid oxide fuel cell. Promising performance of this anode is achieved by stabilizing the material with Nb doping at B sites, which shows excellent chemical stability and high catalytic activity in the reducing fuel condition. The button cell based on lanthanum gallate electrolyte exhibits peak power density of 1.05 W cm−2in H2, 0.64 W cm−2in CH4(∼3% H2O) and 0.57 W cm−2in dry CH4at 800 °C, respectively. When the temperature is decreased to as low as 600 °C, the cell still reaches 0.18 W cm−2in hydrogen. The anode is highly resistant against redox cycling with capability of rapid recovery from oxidizing condition. Based on a series of performance durability tests under various fuel conditions, this anode material has been demonstrated to be feasible for long-term operation in dry CH4without observable degradation. The results demonstrate a new technical route to develop highly active and stable ceramic anode by doping high-valence rare-earth elements into B sites of perovskite material.
机译:研究了一种新型的具有分层钙钛矿结构的A-位缺陷陶瓷氧化物(PrBa)0.95(Fe0.9Nb0.1)2O5 +δ作为直接碳氢燃料固体氧化物燃料电池的负极材料。该阳极的优异性能是通过在B位置掺杂Nb来稳定材料而实现的,该材料在还原性燃料条件下具有出色的化学稳定性和高催化活性。在800 C下,基于没食子酸镧电解质的纽扣电池的峰值功率密度在H2中为1.05 1.0W cm-2,在CH4(约3%H2O)中为0.64 W cm-2,在干CH4中为0.57−W cm-2。当温度降低至600 C时,电池中的氢仍达到0.18 W cm-2。阳极对氧化还原循环具有很高的抵抗力,能够从氧化状态快速恢复。基于在各种燃料条件下进行的一系列性能耐久性测试,该阳极材料已证明在干燥的CH4中长期运行是可行的,并且没有明显的降解。结果表明,通过将高价稀土元素掺入钙钛矿材料的B位,可以开发出一种高活性和稳定的陶瓷阳极的新技术路线。

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