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Effect of various sintering inhibitors on the long term performance of Ni-YSZ anodes used for SOFCs

机译:各种烧结抑制剂对用于SOFC的Ni-YSZ阳极长期性能的影响

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Sintering of Ni in solid oxide fuel cell (SOFC) anodes (Ni-YSZ) is a major cause of anode degradation. To reduce this growth rate, several sintering inhibitors (SiC, SiN, Al_2O_3, AlN, CeO_2 and GDC) were added into Ni-YSZ anode using powder methods. The modified anodes were screen printed on YSZ electrolyte to prepare symmetric half-cells and their performance was investigated by long term stability test at high temperature. X-ray diffraction (XRD) analysis showed that the most sintering inhibitors were chemically compatible with anode materials except Al_2O_3 and A1N. During the long term test, area specific resistance (ASR) was measured at 1000 °C in 25vol% H_2 and 75vol% N_2 environment. Triple phase boundary (TPB) density was calculated by image analysis techniques before and after operation. A clear relation was found between ASR change rate determined from electrochemical measurements and TPB density change rate calculated from image analysis. Moreover, among the various sintering inhibitors, CeO_2 and GDC exhibited the best performance by showing the lowest ASR and TPB density change rates after long term testing. ASR change rate is discussed in view of loss in TPB density during operation.
机译:固态氧化物燃料电池(SOFC)阳极(Ni-YSZ)中的Ni烧结是阳极退化的主要原因。为了降低该生长速率,使用粉末法将几种烧结抑制剂(SiC,SiN,Al_2O_3,AlN,CeO_2和GDC)添加到Ni-YSZ阳极中。将修饰的阳极丝网印刷在YSZ电解质上以制备对称的半电池,并通过高温下的长期稳定性测试研究其性能。 X射线衍射(XRD)分析表明,除Al_2O_3和AlN外,大多数烧结抑制剂与阳极材料化学相容。在长期测试过程中,在25%(体积)H_2和75%(体积)N_2的环境中于1000°C下测量了比电阻(ASR)。手术前后通过图像分析技术计算三相边界(TPB)密度。在通过电化学测量确定的ASR变化率与通过图像分析计算的TPB密度变化率之间发现了明确的关系。此外,在各种烧结抑制剂中,CeO_2和GDC在长期测试后表现出最低的ASR和TPB密度变化率,从而表现出最佳性能。考虑到运行期间TPB密度的损失,讨论了ASR变化率。

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