首页> 外文会议>Solid Oxide Fuel Cells 10(SOFC-X) pt.1 >Improving LSM Cathode Performance Using (Cu,Mn)_3O_4 Spinel Coated UNS430 Ferritic Stainless Steel SOFC Interconnects
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Improving LSM Cathode Performance Using (Cu,Mn)_3O_4 Spinel Coated UNS430 Ferritic Stainless Steel SOFC Interconnects

机译:使用(Cu,Mn)_3O_4尖晶石涂层UNS430铁素体不锈钢SOFC互连来提高LSM阴极性能

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Maintaining the power output of planar SOFCs cathodes over thousands of hours of operation in air at 700 or even 800 °C, requires that the contact resistance of the interconnect remain relatively low over the operation life of the SOFC, and that the generation of volatile Cr species is minimized. This work focuses on assessing the ability of the (Cu,Mn)_3O_4 spinel oxide coating to limit Cr_2O_3 film growth and chromia loss from ferritic 430 stainless steel (UNS430). Several orders of magnitude more conductive than the native Cr_2O_3 oxide film, this material and other spinel coatings have been applied to UNS430 samples using a low cost fabrication method that is amenable to many interconnect geometries. Coated UNS430 samples were tested under simulated half-cell conditions via direct contact to a porous (La_(0.8)Sr_(0.2))_(0.98)MnO_3 (LSM) cathode supported on 8%YSZ in flowing dry air at 600 to 800°C. As compared to uncoated UNS430 contacts, spinel-coated interconnects greatly enhance the stability of the cathode when cathodically polarized over a 250+ hour period. WDX analyses show that these films prevent Cr transfer to the LSM-YSZ interface, but are susceptible to long-term loss of Cu.
机译:在700甚至800°C的空气中,要在数以千计的小时内保持平面SOFC阴极的功率输出,就要求互连的接触电阻在SOFC的整个使用寿命期间保持相对较低,并且需要生成挥发性Cr。物种被最小化。这项工作的重点是评估(Cu,Mn)_3O_4尖晶石氧化物涂层限制Cr_2O_3膜生长和铁素体430不锈钢(UNS430)的氧化铬损失的能力。这种材料和其他尖晶石涂层的导电性比天然Cr_2O_3氧化膜好几个数量级,已使用适合多种互连几何形状的低成本制造方法将其应用于UNS430样品。在模拟的半电池条件下,通过直接接触多孔的(La_(0.8)Sr_(0.2))_(0.98)MnO_3(LSM)阴极,并在流动的干燥空气中于600至800°C下,在模拟的半电池条件下测试了涂覆的UNS430样品C。与未涂层的UNS430触点相比,尖晶石涂层的互连在250个小时以上的时间进行阴极极化时,极大地增强了阴极的稳定性。 WDX分析表明,这些膜可防止Cr转移到LSM-YSZ界面,但易受铜的长期损失的影响。

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