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Thermochemical two-step water-splitting reactor with internally circulating fluidized bed for thermal reduction of ferrite particles

机译:具有内部循环流化床的热化学两步分水反应器,用于热还原铁氧体颗粒

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摘要

A thermochemical two-step water-splitting cycle using a redox system of iron-based oxides or ferrites was examined on hydrogen productivity and reactivity of ferrite in order to convert solar energy into hydrogen in sunbelt regions. In the present paper, a new concept is proposed for a windowed thermochemical water-splitting reactor, using an internally circulating fluidized bed of NiFe_2O_4/m-ZrO_2 particles, and thermal reduction of the bed is demonstrated on a laboratory scale by using a solar-simulating Xe-beam irradiation. The concept is that concentrated solar radiation passes through the transparent window and directly heats the internally circulating fluidized bed. The fluidized bed reactor enabled the NiFe_2O_4/m-ZrO_2 sample to remain in powder form without sintering and agglomerating during direct Xe-beam irradiation over 30min. Approximately 45% of the NiFe_2O_4 was converted to the reduced phase by the solar-simulated high-flux beam, and was then completely reoxidized with steam at 1000 ℃ to generate hydrogen.
机译:研究了使用铁基氧化物或铁氧体的氧化还原系统进行的热化学两步分水循环,研究了氢生产率和铁氧体的反应性,以便将太阳能带中的太阳能转化为氢。在本文中,提出了一种使用内部循环NiFe_2O_4 / m-ZrO_2颗粒流化床的开窗式热化学水分解反应器的新概念,并在实验室规模上通过使用日光热解法证明了床的热还原。模拟氙气束辐照。概念是,集中的太阳辐射穿过透明窗口,直接加热内部循环的流化床。流化床反应器使NiFe_2O_4 / m-ZrO_2样品能够保持粉末形式,而在30分钟的直接Xe射线辐照期间不会烧结和结块。太阳能模拟的高通量光束将约45%的NiFe_2O_4转换为还原相,然后在1000℃下用蒸汽完全重氧化以产生氢气。

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