首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2008 >STRONTIUM-DOPED LANTHANUM MANGANATE CATHODE DEGRADATION DUE TO A DECOMPOSED HYDROGEN PEROXIDE OXIDANT FEED STREAM
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STRONTIUM-DOPED LANTHANUM MANGANATE CATHODE DEGRADATION DUE TO A DECOMPOSED HYDROGEN PEROXIDE OXIDANT FEED STREAM

机译:由于过氧化氢氧化剂进料流的分解,掺杂了锶的镧锰酸盐阴极的降解

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Decomposed hydrogen peroxide (H_2O_2) contains excess moisture and stabilizers that can deteriorate SOFC performance and durability markedly in the cathode. A numerical study is performed for a strontium-doped lanthanum manganatc and yttria stabilized zirconia (LSM-YSZ) composite cathode using an oxidant stream consisting of a 20% O_2 and 80% H_2O mixture to study the detailed reaction mechanism and local transport and polarization phenomena. Specifically the 1-D cathode model couples multi-component gas and charge transport with an oxygen reduction mechanism. The model is validated with data from the literature and used to study the transport effect only of H_2O in the cathode. Future work will consider the effect of H_2O on the electrochemical reaction mechanism.
机译:分解的过氧化氢(H_2O_2)含有过量的水分和稳定剂,这些添加剂和稳定剂会明显降低阴极的SOFC性能和耐久性。使用由20%O_2和80%H_2O混合物组成的氧化剂流对掺锶锰酸镧和氧化钇稳定的氧化锆(LSM-YSZ)复合阴极进行了数值研究,以研究详细的反应机理以及局部迁移和极化现象。具体来说,一维阴极模型通过氧气还原机制将多组分气体和电荷传输耦合在一起。该模型已用文献数据验证,并仅用于研究H_2O在阴极中的传输效应。未来的工作将考虑H_2O对电化学反应机理的影响。

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