首页> 外文会议>European SOCF SOE Forum >A comparison of La_(0.8)Sr_(0.2)MnO_(3-δ), La_(0.6)Sr_(0.4)Co_(0.2)Fe_(0.8)O_(3-δ) and Pr2NiO_(4+δ) cathodes on the performance of anode supported microtubular cells
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A comparison of La_(0.8)Sr_(0.2)MnO_(3-δ), La_(0.6)Sr_(0.4)Co_(0.2)Fe_(0.8)O_(3-δ) and Pr2NiO_(4+δ) cathodes on the performance of anode supported microtubular cells

机译:LA_(0.8)SR_(0.2)MNO_(3-Δ),LA_(0.6)SR_(0.4)CO_(0.2)FE_(0.2)FE_(0.8)O_(3-Δ)和PR2NIO_(4 +Δ)阴极上的LA_(0.6)SR_(0.2)和PR2NO_(4 +Δ)阴极的比较阳极支持的微仔细胞的性能

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摘要

The performance of YSZ-Ni supported microtubular solid oxide fuel cells (mT-SOFCs) with thin YSZ electrolyte and three different cathodes: La_(0.8)Sr_(0.2)MnO_(3-δ) (LSM), La_(0.6)Sr_(0.4)Co_(0.2)Fe_(0.8)O_(3-δ) (LSCF) and Pr2NiO_(4+δ) (PNO) is compared. The mT-SOFC cells were fabricated using NiO-YSZ support precursors manufactured by Powder Extrusion Moulding (PEM). The YSZ layer was deposited by dip coating. The electrolyte deposition parameters and the sintering parameters were optimized to obtain a dense and thin layer. Three different cathode materials, LSM, LSCF and PNO were then deposited by dip coating. To circumvent reactivity at the sintering temperatures between LSCF and PNO with the YSZ electrolyte, barrier layers were also deposited. Electrochemical characterization under the same fuelling conditions for all the three cells was performed. The results are discussed and compared. As for example, the cell with a LSM-YSZ cathode presented a power density at 0.5V and 850 °C of 0.7 Wcm~(-2) with an ASR (area specific resistance) at OCV (open circuit voltage) of ~0.9 Ωcm~2. Similar performance was obtained when using LSCF or PNO cathodes at about 750 oC, allowing for a significant reduction of the operation temperature of these mT-SOFCs.
机译:YSZ-Ni的性能支持微小管状固体氧化物燃料电池(MT-SOFC中)与薄YSZ电解质和三个不同的阴极:了La_(0.8)SR_(0.2)MnO_(3-δ)(LSM),了La_(0.6)SR_( 0.4)CO_(0.2)Fe_(0.8)O_(3-δ)(LSCF)和Pr2NiO_(4 +δ)(PNO)相比较。使用由粉末挤出成型(PEM)。制造的NiO-YSZ支承的前体的MT-SOFC的细胞制造。在YSZ层通过浸渍涂布沉积。电解质沉积参数和烧结参数进行了优化,以获得致密且薄的层。三种不同的阴极材料,LSM,LSCF和PNO然后通过浸涂沉积。以LSCF和PNO之间的烧结温度与YSZ电解质回避反应性,阻挡层也被沉积。执行所有三个单元相同加油条件下电化学性能。结果讨论和比较。如对实施例,具有LSM-YSZ阴极细胞呈现在0.5V和0.7 WCM〜(-2)的850℃,功率密度为〜0.9欧姆厘米的ASR(面积比电阻)的OCV(开路电压) 〜2。在约750摄氏度使用LSCF或PNO阴极时,允许一个显著减少这些MT-的SOFC的运行温度的,得到类似的性能。

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