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    • 7. 发明专利
    • Catalytic reactor
    • 催化反应器
    • JP2011062618A
    • 2011-03-31
    • JP2009214309
    • 2009-09-16
    • Sumitomo Precision Prod Co Ltd住友精密工業株式会社
    • TSUJII JUNICHIKASHI NAOKI
    • B01J35/02
    • B01J19/249B01J23/44B01J23/464B01J23/8913B01J23/894B01J35/026B01J37/0225B01J2219/2453B01J2219/2458B01J2219/2462B01J2219/2465B01J2219/2479B01J2219/2482B01J2219/2497B01J2219/2498C10G2/341
    • PROBLEM TO BE SOLVED: To attain a catalytic reactor 1 that prevents reaction efficiency from being deteriorated by increasing heat exchange efficiency even while achieving miniaturization and weight reduction. SOLUTION: The catalytic reactor includes a pair of partition flat plates 2 that are juxtaposed by spacing out a predetermined distance so as to form a passage 4 through which a fluid is allowed to flow, a channel member 3 that is bonded to the partition flat plates 2 in the passage 4 to compart each channel 31, and a catalyst carrier 7 that is inserted into each channel 31 and is extended along the channel 31. At least one out of a pair of the partition flat plates constitutes a primary heat transfer surface by allowing the same one to heat exchangeably contact a temperature medium different from the interior of the passage in temperature band. The cross section of each channel 31 is constituted such that the aspect ratio (W/H) of width W to height H is not more than 1, and each catalyst carrier 7 is constituted by containing a simple layer-structured and corrugated substrate 71 and a catalyst layer that is formed on the surface of the substrate 71. COPYRIGHT: (C)2011,JPO&INPIT
    • 解决的问题:为了获得即使在实现小型化和减轻重量的同时通过提高热交换效率来防止反应效率劣化的催化反应器1。 解决方案:催化反应器包括一对分隔平板2,它们通过间隔预定距离并列,以形成允许流体流过的通道4;通道构件3,其结合到 在通道4中分隔平板2以分隔每个通道31,以及催化剂载体7,其被插入到每个通道31中并且沿着通道31延伸。一对分隔平板中的至少一个构成一次热 通过允许相同的转移表面在温度带内与通道内部不同的温度介质热交换接触。 每个通道31的横截面被构造成宽度W与高度H的纵横比(W / H)不大于1,并且每个催化剂载体7由包含简单的层状结构的和波纹状的基板71和 形成在基板71的表面上的催化剂层。版权所有(C)2011,JPO&INPIT