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Mixed proton and electron conducting double perovskite anodes for stable and efficient tubular proton ceramic electrolysers

机译:用于稳定高效管状质子陶瓷电解器的混合质子和电子传导双钙钛矿阳极

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摘要

Hydrogen production from water electrolysis is a key enabling energy storage technology for the large-scale deployment of intermittent renewable energy sources. Proton ceramic electrolysers (PCEs) can produce dry pressurized hydrogen directly from steam, avoiding major parts of cost-driving downstream separation and compression. However, the development of PCEs has suffered from limited electrical efficiency due to electronic leakage and poor electrode kinetics. Here, we present the first fully operational BaZrO3-based tubular PCE, with 10 cm(2) active area and a hydrogen production rate above 15 Nml min(-1). The novel steam anode Ba1-xGd0.8La0.2+xCo2O6-delta exhibits mixed p-type electronic and protonic conduction and low activation energy for water splitting, enabling total polarization resistances below 1 Omega cm(2) at 600 degrees C and Faradaic efficiencies close to 100% at high steam pressures. These tubular PCEs are mechanically robust, tolerate high pressures, allow improved process integration and offer scale-up modularity.
机译:水电解的氢气产生是一个关键,使能量存储技术能够进行间歇性可再生能源的大规模部署。质子陶瓷电解器(PCE)可以直接从蒸汽生产干加压氢气,避免成本驱动下游分离和压缩的主要部分。然而,由于电子泄漏和电极动力学差,PCE的开发已经受到电气效率有限。在这里,我们介绍了第一个完全运行的Bazro3型管状PCE,10厘米(2)个有源区和高于15 nml min(-1)的氢气产生率。新型蒸汽阳极BA1-XGD0.8LA0.2 + XCO2O6-DELTA表现出混合的P型电子和质子传导,用于水分裂的低激活能,使得在600摄氏度和法拉第效率下低于1ωCM(2)以下的总偏振电阻在高蒸汽压力下接近100%。这些管状PCE是机械稳健的,容忍高压,允许改进的工艺集成并提供扩展模块化。

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  • 来源
    《Nature Materials》 |2019年第7期|752-759|共8页
  • 作者单位

    Univ Oslo Dept Chem Ctr Mat Sci & Nanotechnol SMN Oslo Norway|SINTEF Ind Sustainable Energy Technol Oslo Norway;

    Univ Oslo Dept Chem Ctr Mat Sci & Nanotechnol SMN Oslo Norway;

    Univ Politecn Valencia CSIC Inst Tecnol Quim Valencia Spain;

    Univ Politecn Valencia CSIC Inst Tecnol Quim Valencia Spain;

    SINTEF Ind Sustainable Energy Technol Oslo Norway;

    CoorsTek Membrane Sci AS Oslo Norway;

    Univ Oslo Dept Chem Ctr Mat Sci & Nanotechnol SMN Oslo Norway|CoorsTek Membrane Sci AS Oslo Norway;

    Univ Politecn Valencia CSIC Inst Tecnol Quim Valencia Spain;

    Univ Oslo Dept Chem Ctr Mat Sci & Nanotechnol SMN Oslo Norway;

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