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    • 3. 发明专利
    • UPRIGHT MULTI-PLATE TYPE REGENERATOR WITH ASSEMBLED BURNER
    • JPH11108498A
    • 1999-04-23
    • JP26886997
    • 1997-10-01
    • TOYO RADIATOR CO LTDHONDA MOTOR CO LTD
    • SAKAI TAIJIONO JUNWADA TSUTOMUTAKAISHI TOSHIMITSUKAGAWA MANABU
    • F25B33/00
    • PROBLEM TO BE SOLVED: To simplify a structure and make an entire small-sized device by a method wherein a chamber defining a radiation heat transferring section is formed in continuous with an opening for forming a combustion chamber formed at a lower part of a plate member and a discharged gas passage in continuous with a convection heat transferring section is formed in continuous with an opening for forming a discharged gas flow passage formed at the upper part of the plate member. SOLUTION: An opening for forming a combustion chamber formed at a plate member forming each of heat exchanger elements 30, 31 and 32 is formed continuously to form a combustion chamber 41 and inn addition an opening forming a discharged gas passage is continuous to form a discharged gas passage 42. Then, a space 43 inside each of the heat exchanger elements 30, 31 and 32 is applied as a space where combustion gas flows, and a space 44 between each of the heat exchanger elements 30, 31 and 32 is applied as a space where the absorbing liquid 52 passes. Then, combustion gas is flowed from a region in the space 43 enclosing the discharged gas passage 42 at a portion where the discharged gas passage 42 communicates the space 43 inside each of the heat exchanger elements 30, 31 and 32 into the discharged gas passage 42, flows n a direction of the discharged gas pipe 55 and then discharged out to the surrounding atmosphere through the discharging gas pipe 55.
    • 5. 发明专利
    • Self-oxidation inside heating type steam reforming system
    • 加热型蒸汽改造系统中的自氧化
    • JP2005149860A
    • 2005-06-09
    • JP2003384390
    • 2003-11-13
    • Toyo Radiator Co Ltd東洋ラジエーター株式会社
    • YOSHINO YASUSHIKUWABARA TAKESHIONO JUNKOBAYASHI SHIGEKI
    • C01B3/38H01M8/06
    • Y02E60/50
    • PROBLEM TO BE SOLVED: To provide a self-oxidation inside heating type steam reforming system, generating steam-rich reformed gas and supplying it to a fuel cell, effectively utilizing anode exhaust gas containing hydrogen exhausted from the fuel cell by recycling it.
      SOLUTION: The system is provided with a first suction and mixing means 4 for obtaining source gas/steam mixture by mixing steam generated by a steam generating means and source gas, and a reforming means 1 oxidizing the source gas contained in the source gas/steam mixture with oxygen-containing gas supplied from outside and generating hydrogen-rich reformed gas by carrying out steam reforming of the source gas with reaction heat by oxidation. The reformed gas generated by the reforming means 1 is supplied to the fuel cell 300 through a piping 105, a CO reducing means 3, and heat exchanging means (12a, 16, 17), and at least part of the anode exhaust gas exhausted from the fuel cell 300 is supplied to the mixing means 4 (123) with a recycling means 122.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供自加热型蒸汽重整系统中的自氧化,产生富含蒸汽的重整气体并将其供应到燃料电池,有效利用含有从燃料电池排出的氢的阳极废气通过再循环 。 解决方案:该系统设置有第一抽吸和混合装置4,用于通过混合由蒸汽发生装置产生的蒸汽和源气体来获得源气体/蒸汽混合物;以及重整装置1,其将包含在源中的源气体氧化 从外部供给的含氧气体的气体/蒸汽混合物,通过氧化反应热进行源气体的蒸汽重整而产生富氢重整气体。 由重整装置1产生的重整气体通过管道105,CO还原装置3和热交换装置(12a,16,17)供应到燃料电池300,并且至少部分阳极废气从 燃料电池300通过再循环装置122提供给混合装置4(123)。版权所有:(C)2005,JPO&NCIPI
    • 10. 发明专利
    • DOUBLE SHELL TYPE DOME-SHAPED REGENERATOR
    • JPH11337224A
    • 1999-12-10
    • JP14893098
    • 1998-05-29
    • TOYO RADIATOR CO LTD
    • WADA TSUTOMUSAKAI TAIJIONO JUN
    • F25B33/00
    • PROBLEM TO BE SOLVED: To provide a double shell type dome-shaped regenerator which achieves a structure of a higher heat efficiency with excellent mass producibility and quality in a double shell type dome-shaped regenerator to be used in a direct fire type absorption refrigerating machine. SOLUTION: A double shell type dome-shaped regenerator 1 is provided with an inner shell 2 and an outer shell 6 and the inner shell 2 comprises an inverted bottomed first inner cylinder part 3 having a dome-shaped ceiling wall 3a, a first outer cylinder part 4 surrounding the inner cylinder part 3 and a first circular connection wall part 5 for linking them at a lower end part while the outer shell 6 comprises a first outer cylinder part 4, a second inner cylinder part 7 surrounding the first circular connection wall part 5, a second outer cylinder part 8 having a ceiling wall 8a surrounding the part 7 and a second circular connection wall part 9 for linking them at a lower end part. The inner shell 2 and the outer shell 6 are connected together with upper open spaces thereof communicating with each other to form a dome-shaped space in the part 3 as combustion chamber A. Spaces C and D between the first outer cylinder part 4 and the part 5 and the part 7 forms a path of a combustion gas and a dense solution is guided out of a bottom part of the inner shell 2 from a guide outlet 10 of a refrigerant vapor of the ceiling wall 8a of the part 8.