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Thermochemical Two-step Water-splitting For Hydrogen Production Using Fe-ysz Particles And A Ceramic Foam Device

机译:Fe-ysz颗粒和陶瓷泡沫装置用于制氢的热化学两步分水

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Fe_3O_4 supported on cubic yttria-stabilized zirconia (Fe_3O_4/c-YSZ) is proposed as a promising redox material for the production of hydrogen from water via a thermochemical two-step water-splitting cycle. In this study, the evolution of oxygen and hydrogen during the cyclic reaction was examined using Fe_3O_4/c-YSZ particles in order to demonstrate reproducible and stoichometric oxygen/hydrogen production through a repeatable two-step reaction. Subsequently, a ceramic foam device coated with Fe_3O_4 and c-YSZ particles was prepared and examined as a thermochemical water-splitting device in a directly irradiated receiver/reactor hydrogen production system. The Fe_3O_4/c-YSZ system formed a Fe-containing YSZ (Fe-YSZ) by high-temperature reaction between Fe_3O_4 and the c-YSZ support at 1400 ℃ in an inert atmosphere. The reaction mechanism of the two-step water-splitting cycle is associated with the redox transition of Fe~(2+)-Fe~(3+) ions in the c-YSZ lattice. The Fe-YSZ particles exhibit good reproducibility for reaction with a hydrogen/oxygen ratio of approximately 2.0 throughout repeated cycles. The foam device coated with Fe-YSZ particles was also successful for continual hydrogen production through 32 repeated cycles. A 20-27% ferrite conversion was obtained using 10.5 wt% Fe_3O_4 loading over an irradiation period of 60 min.
机译:提出了负载在立方氧化钇稳定的氧化锆上的Fe_3O_4(Fe_3O_4 / c-YSZ)作为一种有前途的氧化还原材料,可通过热化学两步分水循环从水中生产氢。在这项研究中,使用Fe_3O_4 / c-YSZ颗粒检查了循环反应过程中氧气和氢气的释放,以证明通过可重复的两步反应可再生且化学计量的氧气/氢气产生。随后,制备了涂覆有Fe_3O_4和c-YSZ颗粒的陶瓷泡沫装置,并在直接辐照的接收器/反应器制氢系统中作为热化学水分解装置进行了检查。 Fe_3O_4 / c-YSZ体系是在惰性气氛中,通过Fe_3O_4与c-YSZ载体在1400℃之间的高温反应而形成的含铁YSZ(Fe-YSZ)。两步水分解循环的反应机理与c-YSZ晶格中Fe〜(2 +)-Fe〜(3+)离子的氧化还原转变有关。在整个重复循环中,Fe-YSZ颗粒的氢/氧比约为2.0,具有良好的反应再现性。涂覆有Fe-YSZ颗粒的泡沫装置也成功地通过32个重复循环连续产生氢气。在60分钟的照射时间内使用10.5 wt%的Fe_3O_4负载可获得20-27%的铁素体转化率。

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