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Electrochemical Performance of Planar Solid Oxide Fuel Cell (SOFC) Stacks: From Repeat Unit to Module

机译:平面固体氧化物燃料电池(SOFC)堆的电化学性能:从重复单元到模块

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摘要

The electrochemical performance of a solid oxide fuel cell (SOFC) manufactured stack module (MSM) subjected to thermal cycling sintering is generally lower than that of a unit cell tested directly. By characterizing a 10-cell stack assembled from a 5-cell testing stack and a 5-cell manufactured short stack module, the main factors that affect the electrochemical performance were determined to be the contact uniformity and depth between the interconnect and cell cathode covering the total surface. The cathode contact is improved by designing the external pressure on the stack during the manufacturing process; thus, the output power of a 30-cell MSM from a typical type of anode made from yttria-stabilized zirconia (YSZ) and lanthanum strontium manganite (LSM), Ni-YSZ/YSZ/LSM, for which the cell reached approximately 750 W power at the working temperature of 800°C. Futhermore, the 30-cell MSM shows no degradation during the experiment. The electrochemical performance (herein referring to output power density and operating stability) approaches that of the corresponding unit cell being tested directly.
机译:经受热循环烧结的固体氧化物燃料电池(SOFC)制造的堆叠模块(MSM)的电化学性能通常低于直接测试的单元电池的电化学性能。通过表征由5节电池测试堆和5节电池制造的短电池堆模块组装而成的10节电池堆,确定影响电化学性能的主要因素是接触均匀性和互连与覆盖阴极的电池阴极之间的深度。总表面。通过在制造过程中设计电池组上的外部压力,可以改善阴极接触。因此,由典型的由氧化钇稳定的氧化锆(YSZ)和镧锶锰矿(LSM)制成的阳极的30单元MSM的输出功率为Ni-YSZ / YSZ / LSM,其电池达到约750 W在800°C的工作温度下通电。此外,30个单元的MSM在实验过程中未显示降解。电化学性能(此处指输出功率密度和操作稳定性)接近直接测试的相应单位电池的电化学性能。

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