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试评小功率氢-空气燃料电池 被引量:8
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作者 查全性 《电池》 CAS CSCD 北大核心 2002年第3期127-129,共3页
根据储氢系统可能达到的比能量和燃料电池堆在常温常压下的比功率讨论了小功率氢 空气燃料电池系统的比能量 ,在连续工作时间不长时难以与常规二次电池竞争。在常温下如何排除电池反应生成的水也存在一些问题。据此讨论了小功率氢
关键词 小功率氢-空气燃料电池 系统 比能量 燃料电池 比功率
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BaCe_(0.9)Y_(0.1)O_(3-α)固体氧化物燃料电池电极极化性能的研究 被引量:1
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作者 石慧 马桂林 +2 位作者 贾定先 仇立干 陈蓉 《苏州大学学报(自然科学版)》 CAS 2002年第2期90-95,共6页
以BaCe0.9Y0.1O3-α氧化物陶瓷为固体电解质,以多孔性Pt为电极材料,组成氢-空气燃料电池,用电流遮断法分别测定了600℃~1000℃范围燃料电池输出电流时的欧姆电位降和正负极的电极极化 结果表明,该燃料电池的优良性能与Pt电极很小的极... 以BaCe0.9Y0.1O3-α氧化物陶瓷为固体电解质,以多孔性Pt为电极材料,组成氢-空气燃料电池,用电流遮断法分别测定了600℃~1000℃范围燃料电池输出电流时的欧姆电位降和正负极的电极极化 结果表明,该燃料电池的优良性能与Pt电极很小的极化作用密切相关,正负极的电极极化皆随着温度的升高而变小。 展开更多
关键词 极化性能 BaCe0.9Y0.1O3-α 固体氧化物 燃料电池 质子导体 放电性能 电流遮断法 氢-空气燃料电池
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A Hybrid Aluminum/Hydrogen/Air CellmCommon Cathode
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作者 Lei Wang Fude Liu +3 位作者 Wentao Wang Dawei Zheng Huizhi Wang Michael Kow-Hi Leung 《Journal of Energy and Power Engineering》 2014年第11期1889-1894,共6页
Metal/Air batteries are considered to be promising electricity storage devices given their compactness, environmental benignity and affordability. As a commonly available metal, aluminum has received great attention s... Metal/Air batteries are considered to be promising electricity storage devices given their compactness, environmental benignity and affordability. As a commonly available metal, aluminum has received great attention since its first use as an anode in a battery. Its high specific energy (even better volumetric energy density than lithium) makes it ideal for many primary battery applications. However, the development of A1/Air cell with alkaline electrolyte has been lagged behind mainly due to the unfavorable parasitic hydrogen generation. Herein, we designed and constructed a novel A1/H_2/Air tandem fuel cell to turn the adverse parasitic reaction into a useful process. The system consists of two anodes, namely, aluminum and hydrogen, and one common air-breathing cathode. The aluminum acts as both the anode for the A1/Air sub-cell and the source to generate hydrogen for the hydrogen/air sub-cell. The aluminum/air sub-cell has an open circuit voltage of 1.45 V and the H_2/Air sub-cell of 0.95 V. We demonstrated that the maximum power output of aluminum as a fuel was largely enhanced by 31% after incorporating the H_2/Air sub-cell with the tandem concept. In addition, a passive design was utilized in our tandem system to eliminate the dependence on auxiliary pumping sub-systems so that the whole system remained neat and eliminated the dependence of energy consuming pumps or heaters which were typically applied in micro fuel cells. 展开更多
关键词 Al/Air battery hydrogen fuel cell passive fuel cell utilization efficiency tandem fuel cell.
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