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Effects of Lamination Conditions on the Performance of Anode-Supported Solid Oxide Fuel Cells

机译:层压条件对阳极支撑固体氧化物燃料电池性能的影响

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Solid oxide fuel cells (SOFCs) operate at high temperatures and produce electricity and heat energy from fuels in an electrochemical way. Membrane electrode assembly (MEA) composed of a dense electrolyte coated with two porous electrodes on each side is generally constructed on the electrolyte. However, high operation temperatures are required to obtain acceptable performance values due to high electrolyte resistance as a result of the use of thick electrolyte layer as a mechanical support for MEA. Alternatively, the cells can be fabricated as anode-supported where the anode is responsible for supporting the cell mechanically. By doing so, the operation temperature can be lowered due to reduced electrolyte thickness. In this study, the effects of isostatic press parameters i.e. temperature and pressure for NiO/YSZ anode support on the anode-supported cell performance and the microstructure of the anode support are investigated. The experimental results reveal that the cell performance is strongly influenced by the pressing parameters. In this aspect, the optimum pressing temperature and pressure are found to be 50°C and 40 MPa, respectively.
机译:固体氧化物燃料电池(SOFC)在高温下运行,并通过电化学方式从燃料中产生电能和热能。通常在电解质上构造膜电极组件(MEA),该膜电极组件由在每侧涂覆有两个多孔电极的致密电解质组成。然而,由于使用厚的电解质层作为MEA的机械支撑体,因此由于高的耐电解质性,需要高的操作温度以获得可接受的性能值。可替代地,电池可以被制造为阳极支撑的,其中阳极负责机械地支撑电池。这样,由于减小了电解质的厚度,可以降低工作温度。在这项研究中,研究了等静压参数,即NiO / YSZ阳极载体的温度和压力对阳极载体电池性能和阳极载体微观结构的影响。实验结果表明,电池性能受压制参数的强烈影响。在这方面,发现最佳压制温度和压力分别为50℃和40MPa。

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