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Plasma sprayed oxygen electrode for solid oxide fuel cells and high temperature water electrolyzers

机译:等离子喷涂氧电极,用于固体氧化物燃料电池和高温水电解槽

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摘要

Perovskite-type LSM and LSCF deposits were developed for oxygen electrode for solid oxide fuel cell and high temperature water electrolyzer by atmospheric plasma spraying (APS) using different feedstock powders. The deposits were tailored to exhibit high oxygen catalytic activity, oxygen surface exchange and diffusion rates, gas permeability and electronic-ionic conductivity. Deposits did not exhibit undesired secondary phases that may form in plasma. Promoting partial melting of the surface of the particles ensured interlayer cohesion and very porous deposit. In SOFC mode cells with LSCF cathodes operating at 800℃ had more than 700 mW/cm{sup}2 power densities at 0.7 V, which was 35% better than that of cells with LSM cathode. When operating in electrolyzer mode at 800℃ the cells with LSCF oxygen electrode also proved significantly enhanced electrochemical performance compared to cells with LSM oxygen electrode. At a current density of 1 A/cm{sup}2 the voltage for water splitting was reduced to around 1.4 V at an operating temperature of 800℃ and to 1.28 V at 850℃.
机译:钙钛矿型LSM和LSCF沉积物是通过使用不同的原料粉末通过大气等离子喷涂(APS)开发的,用于固体氧化物燃料电池的氧电极和高温水电解槽。调整沉积物以显示高的氧气催化活性,氧气表面交换和扩散速率,气体渗透性和电子离子传导性。沉积物未显示出可能在血浆中形成的不良二级相。促进颗粒表面的部分熔融确保了层间内聚力和非常多孔的沉积。在SOFC模式下,具有LSCF阴极且在800℃下工作的电池在0.7 V电压下的功率密度超过700 mW / cm {sup} 2,比具有LSM阴极的电池高35%。与具有LSM氧电极的电池相比,当在800℃的电解槽模式下运行时,具有LSCF氧电极的电池还具有显着增强的电化学性能。在1 A / cm {sup} 2的电流密度下,用于水分解的电压在800℃的工作温度下降低至1.4 V左右,在850℃的条件下降低至1.28V。

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