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Solid Oxide Electrolysis for Hydrogen Production: From Oxygen Ion to Proton Conducting Cells

机译:用于氢气产生的固体氧化物电解:从氧离子到质子传导细胞

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Electrochemical splitting of water, using solid oxide electrolysis cells (SOEC), offers an economic and efficient pathway for large-scale hydrogen production that not only utilizes renewable energy but also allows both distributed and centralized hydrogen production to accelerate and enable hydrogen infrastructure for mobility. In this technical contribution, two types of electrochemical systems using conventional oxygen ion conducting (O-SOEC) and newly developed proton conducting (P-SEOC) has been compared in terms of hydrogen purity, electrochemical performance, and stability (structural and electrochemical). The observations on dopant exsolution, solid-solid (electrode/electrolyte interface) and solid-gas (electrode-H_2O, O_2, and H_2) interactions have been presented. The composition, structure, and morphology changes and their roles on electrochemical performance and electrode stability in oxidizing (O_2) and reducing (H_2) atmospheres has been discussed.
机译:使用固体氧化物电解细胞(SOEC)的电化学分裂提供了一种经济和有效的大型氢生产途径,不仅利用可再生能源,而且允许分布式和集中的氢气产生加速和使氢基础设施能够进行移动性。在这种技术贡献中,在氢纯度,电化学性能和稳定性(结构和电化学)方面,已经比较了使用常规氧导电(O-SOEC)和新开发的质子传导(P-SEOC)的两种类型的电化学系统。已经介绍了对掺杂剂exolution,固体固体(电极/电解质界面)和固液(电极-H_2O,O_2和H_2)相互作用的观察结果。已经讨论了组合物,结构和形态变化及其对氧化(O_2)和还原(H_2)大气中的电化学性能和电极稳定性的作用。

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