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    • 3. 发明公开
    • Plate type reformer assembly
    • PlattenförmigerAufbau einer Reformierungsvorrichtung。
    • EP0430184A2
    • 1991-06-05
    • EP90122675.3
    • 1990-11-27
    • Ishikawajima-Harima Heavy Industries Co., Ltd.
    • Morishima, SatoshiChidiiwa, Sakae
    • H01M8/06C01B3/38
    • H01M8/0631B01J19/249B01J2219/2453B01J2219/2458B01J2219/247B01J2219/2471B01J2219/2481B01J2219/2493B01J2219/2496C01B3/38C01B2203/0233C01B2203/0811C01B2203/1011C01B2203/1058C01B2203/1241H01M8/0625
    • A reformer assembly includes fuel introduction plates (11), combustion chamber plates (12) and reforming chamber plates (13). The fuel introduction plate (11) includes a first plate member (14c) and a first masking frame (15c) on the periphery of the first plate member (14c) . The combustion chamber plate (12) includes a second plate member (14b) and a second masking frame (15b) on the periphery of the second plate member (14b) , and combustion catalyst (46) is placed in the combustion chamber plate (12). The reforming chamber plate (13) includes a third plate member (14a) and a third masking frame (15a) on the periphery of the third plate member (14a), and reforming catalyst (47) is placed in the reforming chamber plate (13). The first masking frame (15c) has a fuel feeding port (16). The second plate member (12) has a number of dispersion holes (19) and the second masking frame (15b) has air feeding and exhaust gas discharging ports (17, 18). The third masking frame (15a) has raw material gas feeding and reformed gas discharging ports (20, 21). These plates (11, 12, 13) are stacked to define a multi-layer unit (10). The peripheries of the adjacent plates (11, 12, 13) are welded to each other. Manifolds (37, 38, 39, 40, 41) for the aligned gas feeding and discharging ports (16, 17, 18, 20, 21) are mounted on lateral faces of the unit (10). Sealing is unnecessary between the plates (11, 12, 13) due to the welding. In addition, the feeding and discharging of the various gases become easy since the manifolds (37, 38, 39, 40, 41) are mounted on the multi-layer unit (10).
    • 重整器组件包括燃料引入板(11),燃烧室板(12)和重整室板(13)。 燃料引入板(11)包括在第一板构件(14c)的周边上的第一板构件(14c)和第一掩蔽框架(15c)。 燃烧室板(12)在第二板构件(14b)的周围包括第二板构件(14b)和第二掩蔽框架(15b),并且燃烧催化剂(46)被放置在燃烧室板(12) )。 重整室板(13)在第三板构件(14a)的周围包括第三板构件(14a)和第三掩模框架(15a),并且重整催化剂(47)被放置在重整室板(13) )。 第一遮蔽框架(15c)具有燃料供给口(16)。 第二板构件(12)具有多个分散孔(19),第二掩模框架(15b)具有空气供给排气口(17,18)。 第三遮蔽框架15a具有原料气体供给和重整气体排出口(20,21)。 这些板(11,12,13)被堆叠以限定多层单元(10)。 相邻板(11,12,13)的周边彼此焊接。 用于对准的气体供给和排出口(16,17,18,20,21)的歧管(37,38,39,40,41)安装在单元(10)的侧面上。 由于焊接,板(11,12,13)之间不需要密封。 此外,由于歧管(37,38,39,40,41)安装在多层单元(10)上,各种气体的进料和排出变得容易。