首页> 外文会议>2nd international conference on energy sustainability 2008 >SIMULTANEOUS PRODUCTION OF H_2 AND O_2 WITH ROTARY-TYPE SOLAR REACTOR (TOKYO TECH MODEL) FOR SOLAR HYBRID FUEL
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SIMULTANEOUS PRODUCTION OF H_2 AND O_2 WITH ROTARY-TYPE SOLAR REACTOR (TOKYO TECH MODEL) FOR SOLAR HYBRID FUEL

机译:旋转混合燃料用旋转式太阳能反应器同时生产H_2和O_2(东京技术模型)

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摘要

The rotary-type solar reactor has been developed for solar hydrogen production with the two-step water splitting process using the reactive ceramic (Ni,Mn-ferrite). The rotary-type reactor has the rotating tubular cylinder covered on a reactive ceramic and dual reaction cells for O_2-releasing and Hi-generation reactions. The successive evolutions of O_2 and H_2 gases were observed in the O_2 releasing and H_2 generation reaction cells, respectively, with the prototype (small) reactor (diameter of cylinder ; 4cm). There is an upper limit for the rate of H_2 gas evolution in the case of the prototype reactor because of the slow rotation rate in a small irradiation area. To confirm the practical operation of the rotary-type solar reactor with the two-step water splitting process for the simultaneous production of H_2 and O_2 gases, a scaled-up rotary-type solar reactor with 400cm~2 of the irradiation area was fabricated (diameter; 50cm). The scaled-up reactor made of inner and outer short tubular cylinders (stainless steel) has a quartz glass window for the irradiation of reactive ceramic coated on the inner tubular cylinder (cylindrical rotor) and reaction cells were aligned in the sharing spaces between the inner and outer short tubular cylinders with gas sealing mechanisms. In the reactor, reactive ceramic coated on the inner tubular cylinder was heated up to 1800K by using the infrared imaging lamps (solar simulator) with thermal flux = 600kW/m~2. The solid solution between YSZ and Ni-ferrite was used as reactive ceramic for the scaled-up reactor in order to prevent from sintering at a high temperature in the O_2-releasing reaction, since the sintering of reactive ceramic resulted in lowering thernyield of H_2 gas evolution in the H_2-generation reaction. The amounts of H_2 and O_2 gases evolved at the rotation rate of 0.3rpm were evaluated to 64cm~3 and 30cm~3 for 10min with the scaled-up rotary-type solar reactor, respectively, which were much larger than those with the prototype reactor. The simultaneous evolutions of H_2 and O_2 gases in the two-step water splitting process were repeated by employing the scaled-up reactor with the solid solution between YSZ and Ni-ferrite.
机译:旋转式太阳能反应器已经开发出来,利用反应性陶瓷(Ni,Mn-铁氧体)通过两步水分解工艺生产太阳能氢。旋转式反应器具有覆盖在反应性陶瓷上的旋转管形圆柱体和用于O_2释放和Hi-generation反应的双反应池。使用原型(小型)反应器(圆柱直径4cm),分别在释放O_2和生成H_2的反应池中观察到O_2和H_2气体的连续逸出。在原型反应器的情况下,由于在小照射区域中旋转速度慢,因此H_2气体的逸出速率有上限。为了确认旋转式太阳能反应器具有两步分水工艺同时生产H_2和O_2气体的实际操作,制造了放大面积为400cm〜2的放大型旋转式太阳能反应器(直径; 50厘米)。由内部和外部短管形圆柱体(不锈钢)制成的按比例放大的反应器具有石英玻璃窗,用于辐照在内管形圆柱体(圆柱转子)上的反应性陶瓷,反应池在内部和内部的共享空间中对齐以及带有气体密封机构的外部短管形气缸。在反应器中,使用热通量= 600kW / m〜2的红外成像灯(太阳能模拟器)将涂在内筒形圆筒上的反应性陶瓷加热到1800K。 YSZ和镍铁氧体之间的固溶体被用作放大反应器的反应性陶瓷,以防止在释放O_2的反应中高温烧结,因为反应性陶瓷的烧结会降低H_2气体的产率H_2代反应中的演化。放大后的旋转式太阳能反应器分别以0.3rpm的转速析出的H_2和O_2气体量分别为64cm〜3和30cm〜3,分别比原型反应器大得多。 。通过在YSZ和Ni铁氧体之间使用固溶体的放大反应器,重复进行了两步水分解过程中H_2和O_2气体的同时逸出。

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  • 来源
  • 会议地点 Jacksonville FL(US);Jacksonville FL(US)
  • 作者单位

    Research Center for Carbon Recycling and Energy, Tokyo Institute of Technology Ookayama2-12-1, Meguro-ku, Tokyo 152-8552, Japan;

    Research Center for Carbon Recycling and Energy, Tokyo Institute of Technology Ookayama2-12-1, Meguro-ku, Tokyo 152-8552, Japan;

    Research Center for Carbon Recycling and Energy, Tokyo Institute of Technology Ookayama2-12-1, Meguro-ku, Tokyo 152-8552, Japan;

    Research Center for Carbon Recycling and Energy, Tokyo Institute of Technology Ookayama2-12-1, Meguro-ku, Tokyo 152-8552, Japan;

    Research Center for Carbon Recycling and Energy, Tokyo Institute of Technology Ookayama2-12-1, Meguro-ku, Tokyo 152-8552, Japan;

    Research Center for Carbon Recycling and Energy, Tokyo Institute of Technology Ookayama2-12-1, Meguro-ku, Tokyo 152-8552, Japan;

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