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    • 62. 发明专利
    • Humidifier and fuel cell power generation system using this
    • 使用这种湿度计和燃料电池发电系统
    • JP2008210657A
    • 2008-09-11
    • JP2007046533
    • 2007-02-27
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • YAGI KATSUKINAKAGAWA KEIICHIHORI KEIICHIKAJITANI HIROSHI
    • H01M8/04
    • Y02E60/50
    • PROBLEM TO BE SOLVED: To provide a humidifier capable of effectively utilizing thermal energy in spite of its compact size, and a fuel cell power generation system utilizing the same.
      SOLUTION: The humidifier 130 is constituted of a guide hood 131 in which combustion gas 3 is circulated, a heating tube 132 of a bellows shape wound in a spiral shape around an outer face of the guide hood 131 for circulating fuel gas 4 and water 5, an inner vessel 133 connecting a tip side of the heating tube 132 with the outside surrounding the guide hood 131 so as to make an inner face in contact with the heating tube 132 and provide a gap against a tip of the guide hood 131, an exhaust tube 135 provided at a base end side of the inner vessel 133, an outer vessel 134 surrounding the inner vessel 133 so as to provide a gap against the outer face of the inner vessel 133 with the tip side of the heating tube 132 positioned inside, and a fuel gas sending-out tube 136 provided at the base end side of the outer vessel 134.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供能够有效利用其尺寸紧凑的热能的加湿器,以及利用该加湿器的燃料电池发电系统。 解决方案:加湿器130由燃烧气体3循环的引导罩131,围绕引导罩131的外表面缠绕的螺旋状的波纹管状加热管132,用于循环燃料气体4 水5,将加热管132的前端侧与引导罩131连接的内侧容器133,使内侧面与加热管132接触,并与导向罩 131,设置在内容器133的基端侧的排气管135,围绕内容器133的外容器134,以便与加热管的顶端相对的内容器133的外表面提供间隙 132和设置在外容器134的基端侧的燃料气体送出管136。(C)2008,JPO&INPIT
    • 63. 发明专利
    • BURNER
    • CA2656194A1
    • 2008-02-14
    • CA2656194
    • 2007-08-07
    • MITSUBISHI HEAVY IND LTDNIPPON OIL CORP
    • NAKAGAWA KEIICHIMATSUDA NAOHIKONOJIMA SHIGERUGOTO AKIRAYAGI KATSUKI
    • F23D11/12B05B7/30F23D17/00F23D99/00H01M8/06
    • A burner, such as a twin-fluid atomizing burner, which can generate a lar ge amount of combustion exhaust gas with a simple structure, does not cause unburnt gas nor misfire, and can make flame shorter and a combustion exhaust gas flow rate distribution more uniform. The burner comprises a twin-fluid atomizer (12), a tubular combustion air flow path (15) formed between the at omizer and a burner outer tube (48) surrounding the atomizer, a plate (a blo cking plate) (18) partitioning between this combustion air flow path and a c ombustion space (13), and a combustion air flowing hole (52) provided on the outer peripheral side of this plate, wherein combustion air (50) flowing do wnward through the combustion air flow path is intercepted by the plate and guided to the outer peripheral side of the plate to be thereby moved away fr om a twin-fluid atomizing nozzle (38), and then passes through the combustio n air flowing hole to be introduced into the combustion space. In addition, a combustion air supply/storage/delay first cylinder (16) and a stagnation p reventing second cylinder (17) are provided at the bottom of the plate. A th rottle plate having a flowing hole opened in the center is provided in the c ombustion space.
    • 65. 发明申请
    • PULVERIZED COAL INJECTION DEVICE, BLAST FURNACE COMPRISING SAME, AND PULVERIZED COAL SUPPLY METHOD
    • 粉煤喷射装置,包括相同的燃烧炉,以及粉煤供应方法
    • WO2014045946A8
    • 2015-03-12
    • PCT/JP2013074404
    • 2013-09-10
    • MITSUBISHI HEAVY IND LTD
    • SAKAGUCHI MASAKAZUHAMADA TSUTOMUOKADA TAKESHIOMOTO SETSUONAKAGAWA KEIICHI
    • C21B5/00C21B7/00
    • C21B5/003C21B7/16C21B7/163C21B2100/66
    • To reduce operation costs of a blast furnace and reduce pig iron production costs. A pulverized coal injection device (5A) is configured so as to inject pulverized coal together with heated and compressed injection air, from a tuyere (8) in a blast furnace main body (2) and uses, as the raw material for the pulverized coal, modified coal that has been modified from low-quality coal and has self-heating properties. A heat exchanger (25a) is provided as a heat transfer means that transfers heat from the self-heating action of this modified coal to sites that require heat. This heat exchanger (25a) exchanges heat between the heat from the self-heating action of the modified coal that passes through a pulverized coal supply pipe (22) and, for example, air injected into an injection air feed device (23), and heats the injected air. The pulverized coal injection device may also comprise a deactivation means that deactivates the modified coal to a level at which a prescribed amount of self-heating action remains.
    • 降低高炉的运行成本,降低生铁成本。 粉煤喷射装置(5A)被构造成从高炉主体(2)中的风口(8)将粉煤与加压的和压缩的喷射空气一起喷射,并将其用作粉煤的原料 ,由优质煤改性并具有自热性能的改性煤。 提供热交换器(25a)作为传热装置,其将热量从该改性煤的自加热作用传递到需要加热的位置。 该热交换器(25a)从通过粉煤供给管(22)的改性煤的自加热动作和例如喷射到喷射空气供给装置(23)的空气的热量之间进行热交换,以及 加热注入的空气。 粉煤喷射装置还可以包括使改性煤失活到保持规定量的自加热作用的水平的失活装置。
    • 69. 发明专利
    • Carbonization device
    • AU2014258613B2
    • 2016-04-14
    • AU2014258613
    • 2014-04-08
    • MITSUBISHI HEAVY IND LTD
    • NAKAGAWA KEIICHIOMOTO SETSUOSAKAGUCHI MASAKAZU
    • C10B57/00C10B47/30F27B7/42
    • The present invention is provided with: an inner tube (112) through the interior of which flows low-grade charcoal (1); a supply feeder (113) that supplies the low-grade charcoal (1); heating means (111, 117, 118, 119) that heat the low-grade charcoal (1); a shooter (116) that sends out carbonization gas (3) and generated carbonized charcoal (2); a reference gas supply source (115) that adds a reference gas (4) such as nitrogen gas to the carbonization gas (3); a gas concentration measurement device (131) that measures the concentration (Cs) of the reference gas (4) and the concentration (Cc) of carbon dioxide in the mixed gas of the reference gas (4) and the carbonization gas (3) from the shooter (116); and a computation control device (130) that, on the basis of the concentrations (Cc) and (Cs), the supply flow rate (Fs) of the reference gas (4), and the supply weight (Wo) of the low-grade charcoal (1), calculates the amount (Fc) of carbon dioxide generated, determines the carbonization fraction (Dt) of the low-grade charcoal (1) from a map that has been input ahead of time, and controls a heating means (118a) in a manner so as to result in a target carbonization fraction (Dr).
    • 70. 发明专利
    • Carbonization device
    • AU2014266568A1
    • 2015-10-29
    • AU2014266568
    • 2014-04-08
    • MITSUBISHI HEAVY IND LTD
    • NAKAGAWA KEIICHIOMOTO SETSUOSAKAGUCHI MASAKAZU
    • C10B57/00C10B47/30F27B7/42
    • The present invention is provided with: a reference gas supply source (115) that adds a reference gas (4) that is a noble gas to a carbonization gas (3); a combustor (120) that combusts the mixed gas of the carbonization gas (3) and the reference gas (4) and sends out an inspection gas (9); a gas rheometer (132) that measures the flow rate (Fi) of the inspection gas (9); a gas concentration measurement device (131) that measures the concentration (Cr) of the reference gas (4) (noble gas) and the concentration (Cc) of carbon dioxide in the inspection gas (9); and a computation control device (130) that determines the flow rate (Fr) of the reference gas (4) (noble gas) in the mixed gas from the concentration (Cr), determines the amount (Wc) generated of the carbon component in the carbonization gas (3) from the concentration (Cc), flow rates (Fr, Fi), and flow rate (Fs) of the reference gas (4) (noble gas) supplied to the carbonization gas (3), determines the carbonization fraction (Dt) of carbonized charcoal (2) from the concentration (Cg) of the carbon component in low-grade charcoal (1), the amount (Wc) generated, and the weight (Wo) of supplied low-grade charcoal (1), and controls a valve (118a) in a manner so that a target carbonization fraction (Dr) results.