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    Please use this identifier to cite or link to this item: https://ir.lib.ncu.edu.tw/handle/987654321/104768


    Title: Development and diagnosis of a 1-kW self-sustainable proton exchange membrane fuel cell system with a methanol reformer
    Authors: 陳震宇;Chen, Chen-Yu;Hsu, Sui-Wei;Yan, Wei-Mon;Lai, Wei-Hsiang;Huang, Keng-Pin;Yang, Chen-Cheng;Chen, Chun-Chi;Lai, Ming-Ping
    Contributors: 工學院能源工程研究所
    Keywords: Applied sciences;Direct energy conversion and energy accumulation;Electric potential;Electric power generation;Electrical engineering. Electrical power engineering;Electrical power engineering;Electrochemical conversion: primary and secondary batteries, fuel cells;Energy;Energy. Thermal use of fuels;Equipments for energy generation and conversion: thermal, electrical, mechanical energy, etc;Exact sciences and technology;Fuel cells;Generators;High voltage or high current generators;Membranes;Methyl alcohol;Power electronics, power supplies;Stacks;Various equipment and components;Voltage
    Date: 2013-07-22
    Issue Date: 2026-04-23 11:57:40 (UTC+8)
    Publisher: The American Society of Mechanical Engineers(ASME);New York, NY: ASME
    Abstract: 摘要: A reformed methanol fuel cell system is one of the most practical of all types of fuel cell systems. It is regarded as one of the best candidates for stationary applications, such as residential power generators, uninterruptible power supply systems, power generators for cell base stations, or power generators in outlying areas. In this research, a 1-kW self-sustainable proton exchange membrane fuel cell system with a methanol reformer is designed and tested. The system performance test and in situ stack monitoring show that the system is stable and reliable. During normal operation, the maximum voltage deviation among the individual cells, which is caused by a nonuniform temperature distribution in the proton exchange membrane fuel cell stack, is 25 mV. The peak power output of the system reaches 1.4 kW. The maximum electrical efficiency is 65.2% at a system power of 1 kW. The system is operated at 1 kW for 4 h, during which the decay rate of the stack power is 0.94%. During the stability test, voltage fluctuation occurs in a certain cell because of a flooding phenomenon. A demonstration is also presented in this paper to show the system’s practicability and commercial potential.
    其他題名: J. Electrochem. En. Conv. Stor
    出版者: New York, NY: ASME
    出版日期: 2013-06-01
    出處: Journal of electrochemical energy conversion and storage, 2013-06, Vol.10 (3), p.1-9
    資源來源: Alma/SFX Local Collection
    版權: 2014 INIST-CNRS
    識別號: ISSN: 2381-6872
    識別號: ISSN: 1550-624X
    識別號: EISSN: 1551-6989
    識別號: DOI: 10.1115/1.4024256
    Appears in Collections:[Energy of Mechatronics] journal & Dissertation

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