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Solid Oxide Steam Electrolysis with Integration of Solar Heat

机译:太阳能集成固体氧化物蒸汽电解

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The experimental coupling of a commercial high-temperature steam electrolyzer and a solar thermal steam generator has been realized for the first time at the German Aerospace Center (DLR). A high flux solar simulator and a solar steam receiver were used to generate superheated steam which was fed to a commercial 12-cell electrolyzer stack from an industrial supplier (SolidPower, Mezzolombardo, Italy). After optimization of the operating parameters of the different system components the system could be operated properly at 770°C and a steam flow of 12.0 slpm (standard litres per minute), 0.58 kg/h respectively. The open circuit voltage (OCV) of the stack was 10.4 V. Approximately 8.4 slpm hydrogen was produced at a current density of -1.25 A/cm~2 and a voltage of approximately 17 V corresponding to a steam conversion rate of 70%. The electrical efficiency of the electrolyzer was 93% related to the lower heating value. The experimental setup of the prototype system is presented and results with regard to solar steam generation and electrochemical performance of the electrolyzer are reported.
机译:商业高温蒸汽电解器和太阳能热蒸汽发生器的实验耦合是在德国航空航天中心(DLR)的第一次实现的。高磁通太阳能模拟器和太阳能蒸汽接收器用于产生过热的蒸汽,该蒸汽从工业供应商(Solid,Mezzolombardo,Italy)馈送到商业12单元电解柜堆栈。在优化不同系统组件的操作参数之后,系统可以在770°C和12.0 SLPM(每分钟标准升),0.58kg / h的蒸汽流动下正确操作。堆叠的开路电压(OCV)为10.4V。在电流密度为-1.25a / cm〜2的电流密度和约17V的电压相对应蒸汽转化率为70%的电压产生约8.4 slpm氢。电解槽的电效率与较低的加热值相关的93%。提出了原型系统的实验设置,并出现了关于太阳能蒸汽产生和电解质的电化学性能的结果。

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