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    • 4. 发明专利
    • Method for steam reforming reaction using microcavity resonance and apparatus for steam reforming reaction used in the same
    • 使用微波共振的蒸汽重整反应方法及其中使用的蒸汽重整反应装置
    • JP2006273686A
    • 2006-10-12
    • JP2005098250
    • 2005-03-30
    • Chiyoda CorpTohoku Univ千代田化工建設株式会社国立大学法人東北大学
    • MARUYAMA SHIGENAOYUGAMI HIROOTANAKA SHINTAROHOZUMI YOSHIKAZU
    • C01B3/38
    • PROBLEM TO BE SOLVED: To provide a method for a steam reforming reaction using microcavity resonance, by which the thermal efficiency can be drastically improved, thereby the energy necessary for the steam reforming reaction can be significantly reduced, the outlet temperature of a reaction area can be largely reduced, and as a result, a reaction apparatus can be simplified or small-sized; and to provide an apparatus for the steam reforming reaction.
      SOLUTION: In the method for the steam reforming reaction using microcavity resonance, comprising subjecting a gaseous raw material containing a raw gas and steam to the steam reforming reaction by heating the gaseous raw material in the presence of a catalyst, the reaction area for reacting the gaseous raw material is formed of a microcavity where electromagnetic waves having wavelengths inherent in substances (electromagnetic waves having specified wave lengths) and causing interaction with the raw gas and/or steam resonate. Further, in the microcavity, an introducing port and an exhausting port for the gaseous raw material are provided and the catalyst is provided at the inside, and the raw gas and/or steam of the gaseous raw material fed into the microcavity, are heated by the electromagnetic waves having specified wave lengths, which resonate in the microcavity.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:为了提供使用微腔共振的蒸汽重整反应的方法,通过该方法可以显着提高热效率,从而可以显着降低蒸汽重整反应所需的能量,出口温度 可以大大降低反应面积,结果可以简化或小型化反应装置。 并提供用于蒸汽重整反应的装置。 解决方案:在使用微腔谐振的蒸汽重整反应的方法中,包括在催化剂存在下,通过加热气态原料使含有原料气体和蒸汽的气态原料进行蒸汽重整反应,反应区域 为了使气态原料反应,由具有物质固有的波长的电磁波(具有规定的波长的电磁波)并引起与原料气体和/或蒸汽的相互作用的微腔形成。 此外,在微腔中,设置用于气态原料的引入口和排气口,并且在内部设置催化剂,并且供给到微腔中的气态原料的原料气体和/或蒸汽被加热 电磁波具有规定的波长,在微腔中共振。 版权所有(C)2007,JPO&INPIT