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Electro-catalysts for Hydrogen Production from Ethanol for Use in SOFC Anodes

机译:SOFC阳极用乙醇制氢的电催化剂

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Nickel and cobalt catalysts, supported on YSZ, were prepared by wet impregnation, with and without citric acid; the metal load was 10 and 35% by weight. The catalyst composition was studied by XRF, XPS, and SEM-EDS. At low metal concentration, the results of these techniques presented comparables figures; at high concentration, SEM-EDS suggested a non-uniform distribution. The analysis showed that the solids were mixed oxides and formed an alloy after reduction. The surface passivation was possible under controlled conditions. The catalytic test with the steam reforming of ethanol indicated that the metal load had almost no effect on the catalytic activity, but decreased its selectivity. Afterwards, a unitary SOFC was prepared with deposition of the cathode layer. AFM and EIS were used for the characterization of SOFC components. They showed that the electro-catalyst surface was almost all covered with the metal phase, including the large pore walls of the anode. The YSZ phase dominates the material conductance of the complete SOFC assembly (anode/electrolyte/cathode). The unitary SOFC was tested with hydrogen, gaseous ethanol or natural gas; the SOFC operating with ethanol and hydrogen fuel presented virtually no over-potential.
机译:负载在YSZ上的镍和钴催化剂是通过湿法浸渍在有柠檬酸和无柠檬酸的条件下制备的。金属负载为10和35重量%。通过XRF,XPS和SEM-EDS研究了催化剂的组成。在低金属浓度下,这些技术的结果显示了可比数字;在高浓度下,SEM-EDS表明分布不均匀。分析表明,固体是混合氧化物并且在还原后形成合金。表面钝化在受控条件下是可能的。乙醇蒸汽重整的催化试验表明,金属负载量对催化活性几乎没有影响,但降低了其选择性。之后,通过沉积阴极层制备单一的SOFC。 AFM和EIS用于表征SOFC组件。他们表明,电催化剂表面几乎全部被金属相覆盖,包括阳极的大孔壁。 YSZ相主导整个SOFC组件(阳极/电解质/阴极)的材料电导。用氢气,气态乙醇或天然气对一元SOFC进行了测试;使用乙醇和氢燃料运行的SOFC几乎没有出现过电势。

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