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Effect of anode conditions on the performance of direct borohydride-hydrogen peroxide fuel cell system

机译:阳极条件对直接硼氢化物-双氧水燃料电池系统性能的影响

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摘要

Direct borohydride-hydrogen peroxide fuel cells (DBHPFCs) are attractive power sources for space applications. Although the cathode conditions are known to affect the system performance, the effect of the anode conditions is rarely investigated. Thus, in this study, a DBHPFC system was tested under various anode conditions, such as electrocatalyst, fuel concentration, and stabilizer concentration, to investigate their effects on the system performance. A virtual DBHPFC system was analyzed based on the experimental data obtained from fuel cell tests. The anode electrocatalyst had a considerable effect on the mass and electrochemical reaction rate of the fuel cell system, but had minimal effect on the decomposition reaction rate. The NaBH4 concentration greatly influenced the mass and decomposition reaction rate of the fuel cell system; however, it had minimal impact on the electrochemical reaction rate. The NaOH concentration affected the electrochemical re-action rate, decomposition reaction rate, and mass of the fuel cell system. Therefore, the significant effects of the anode conditions on the electrochemical reaction rate, decom-position reaction rate, and mass of the fuel cell system prompt the need for their careful selection through fuel cell tests and system analysis.(c) 2023 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:直接硼氢化物-过氧化氢燃料电池 (DBHPFC) 是太空应用的有吸引力的电源。尽管已知阴极条件会影响系统性能,但很少研究阳极条件的影响。因此,在这项研究中,在电催化剂、燃料浓度和稳定剂浓度等各种阳极条件下测试了DBHPFC体系,以研究它们对系统性能的影响。基于燃料电池测试获得的实验数据,对虚拟DBHPFC系统进行了分析。阳极电催化剂对燃料电池体系的质量和电化学反应速率有相当大的影响,但对分解反应速率的影响最小。NaBH4浓度对燃料电池体系的质量和分解反应速率影响较大;然而,它对电化学反应速率的影响很小。NaOH浓度影响燃料电池体系的电化学再反应速率、分解反应速率和质量。因此,阳极条件对燃料电池体系的电化学反应速率、分解反应速率和质量有显著影响,需要通过燃料电池试验和系统分析来仔细选择阳极条件。(c) 2023 Hydrogen Energy Publications LLC.,由Elsevier Ltd.出版。保留所有权利。

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