首页> 外文会议>Ionic and mixed conducting ceramics 7 >Validation of the Simple Infiltrated Microstructure Polarization Loss Estimation(SIMPLE) Model Using Single Layer, Nano-Composite Sm_0.5Sr_0.5CoO_-x -Ce_0.9Gd_0.1O_1.95 Solid Oxide Fuel Cell Cathodes
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Validation of the Simple Infiltrated Microstructure Polarization Loss Estimation(SIMPLE) Model Using Single Layer, Nano-Composite Sm_0.5Sr_0.5CoO_-x -Ce_0.9Gd_0.1O_1.95 Solid Oxide Fuel Cell Cathodes

机译:使用单层纳米复合Sm_0.5Sr_0.5CoO_-x -Ce_0.9Gd_0.1O_1.95固体氧化物燃料电池阴极的简单渗透微结构极化损耗估计(SIMPLE)模型的验证

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摘要

Single-layer nano-composite Sm_0.5Sr_0.5CoO_3-x, (SSC) Ceo.9Gdo.1O1.95 (GDC) Solid Oxide Fuel Cell (SOFC) cathodes with various SSC loading levels were prepared through multiple nitrate solution infiltrations. Microstructural analyses indicated that the average infiltrate hemispherical particle radius remained roughly constant, at 25nm, across multiple infiltrate-gel-800℃ fire sequences. Symmetric cell polarization resistance measurements of cathode performance showed that the Simple Infiltrated Microstructure Polarization Loss Estimation (SIMPLE) model, which accounts for electrical losses associated with surface oxygen incorporation and bulk oxygen transport, was able to predict the performance of heavily infiltrated cathodes to within 55% (without the use of fitting parameters) at all temperatures from 400-700℃. Results also indicate that electronic conduction losses limited the overall cathode performance at low and medium SSC infiltrate loading levels.
机译:通过多次硝酸盐溶液渗透,制备了具有各种SSC负载水平的单层纳米复合材料Sm_0.5Sr_0.5CoO_3-x(SSC)Ceo.9Gdo.101.9.5(GDC)固体氧化物燃料电池(SOFC)阴极。显微组织分析表明,在多个渗透凝胶-800℃的火序列中,平均渗透半球形颗粒半径在25nm处大致保持恒定。对称的电池极化电阻对阴极性能的测量结果表明,简单渗透微结构极化损耗估算(SIMPLE)模型能够预测与表面氧结合和大量氧气传输有关的电损耗,该模型能够将重度渗透的阴极的性能预测到55以内在400-700℃的所有温度下的%(不使用拟合参数)。结果还表明,在中低SSC浸润负荷水平下,电子传导损耗限制了整体阴极性能。

著录项

  • 来源
  • 会议地点 Vancouver(CA);Vancouver(CA)
  • 作者单位

    Department of Chemical Engineering and Materials Science, Michigan State University, 2527 Engineering Building, East Lansing, Michigan, 48864, USA;

    Department of Materials Science and Engineering, Northwestern University, Evanston, Illinois, 60208, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 独立电源技术(直接发电);
  • 关键词

  • 入库时间 2022-08-26 14:20:07

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