首页> 外文期刊>Journal of power sources >Effect of addition method of gadolinia-doped ceria-added FeCr gas diffusion layer on performance of direct-methane solid oxide fuel cells
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Effect of addition method of gadolinia-doped ceria-added FeCr gas diffusion layer on performance of direct-methane solid oxide fuel cells

机译:掺g氧化铈的FeCr气体扩散层添加方法对直接甲烷固体氧化物燃料电池性能的影响

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摘要

A solid oxide fuel cell (SOFC) was set up with a porous disk of gadolinia-doped ceria (GDC)-added FeCr as a gas diffusion layer under direct-methane feeding. The addition of GDC was done by mixing GDC powder with FeCr powder before disk fabrication, or by coating GDC powder or impregnating GDC precursor to the surface of the porous FeCr disk. When GDC was added by mixing, the direct-methane SOFC(DM-SOFC) performance degraded very rapidly. When GDC was added by either powder coating or impregnating, the DM-SOFC performance can be relatively stable. Both the current density and the CO_2 selectivity with GDC addition by impregnating are larger than those by powder coating.
机译:固体氧化物燃料电池(SOFC)在直接甲烷进料的情况下,使用添加了氧化ado掺杂二氧化铈(GDC)的FeCr的多孔盘作为气体扩散层。通过在盘制造之前将GDC粉末与FeCr粉末混合,或通过将GDC粉末涂覆或将GDC前体浸渍到多孔FeCr盘的表面来完成GDC的添加。通过混合添加GDC时,直接甲烷SOFC(DM-SOFC)性能会迅速下降。通过粉末涂料或浸渍添加GDC时,DM-SOFC性能可能相对稳定。通过浸渍添加GDC的电流密度和CO_2选择性都比粉末喷涂的大。

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