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Effects of dispersed copper nanoparticles on Ni-ceria based dry methanol fuelled low temperature solid oxide fuel cells

机译:分散铜纳米粒子对Ni-Ceria基干燥甲醇的影响燃料低温固体氧化物燃料电池

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Methanol is an attractive energy source due to its portability and thermodynamic coke resistance by its oxygen content. In order to operate dry methanol fuel low temperature solid oxide fuel cells (LT-SOFCs), it is important to solve the problems of carbon formation and its low performance. In this study, copper impregnation was selected to decrease the carbon deposition and enhance the performance at low temperature. The interaction of copper, ceria and nickel improves CO oxidation capacity which improves coke tolerance and nano-sized nickel copper alloys improved durability and catalytic performance under methanol feed. It markedly amplified the performance about 0.4?W cm ~(?2) at 550 °C with the durable operation at 1.4 A cm ~(?2) over 50 h. Loading copper nanoparticles is promising method for Ni-ceria based LT-SOFC using methanol fuel with high performance and stable operation.
机译:由于其氧气含量,甲醇是一种吸引力的能源,通过其氧含量的耐用性和热力学易腐蚀性。为了操作干燥的甲醇燃料低温固体氧化物燃料电池(LT-SOFC),解决碳形成问题及其低性能是重要的。在该研究中,选择铜浸渍以降低碳沉积并在低温下提高性能。铜,二氧化铈和镍的相互作用提高了CO氧化能力,可改善焦炭耐受性和纳米尺寸的镍铜合金提高耐久性和催化性能下的甲醇饲料。它在550℃下,在550℃下,在550℃下,在1.4 a cm〜(Δ2)超过50小时的情况下,它显着放大了约0.4·wcm〜(Δ2)的性能。加载铜纳米粒子是基于Ni-Ceria的LT-SOFC使用具有高性能和稳定运行的Ni-Ceria的有希望的方法。

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