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    • 16. 发明专利
    • Concentration difference power generation system
    • 浓度差异发电系统
    • JP2012041849A
    • 2012-03-01
    • JP2010183016
    • 2010-08-18
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • NAKAMICHI KENJINAGAI MASAHIKOKATO YOSHIKIANDO YOSHIMASA
    • F03G7/00
    • PROBLEM TO BE SOLVED: To provide a closed cycle concentration difference power system which can achieve improvement of power generation efficiency by reducing a calorific value of a heat source required for generation of a solvent.SOLUTION: A closed cycle concentration difference power system which recycles a solvent and concentrated liquid obtained by leading a high concentration side solution passing though a permeator 10 to a concentration cycle 50 while generating power by converting into mechanical energy the osmotic pressure of a solvent penetrating a semipermeable membrane 11 in the permeator 10 and flowing therein, utilizes two solutions having different concentration, which are liquid mixtures formed by combining a solvent having smaller calorific value required for evaporation than water and a solute dissolved in the solvent.
    • 解决的问题:提供一种封闭循环浓度差动力系统,其可以通过降低产生溶剂所需的热源的发热量来实现发电效率的提高。 解决方案:一种封闭循环浓度差动力系统,其将通过将通过渗透器10的高浓度侧溶液引导到浓缩循环50而获得的溶剂和浓缩液体,同时通过转化为机械能而产生动力,其中渗透压为 溶剂穿透渗透器10中的半透膜11并在其中流动,使用两种不同浓度的溶液,这两种溶液是通过将溶解所需蒸发量的溶剂与溶解在溶剂中的溶质组合而成的液体混合物形成的。 版权所有(C)2012,JPO&INPIT
    • 17. 发明专利
    • Power generation device, and hybrid power generation system
    • 发电装置和混合发电系统
    • JP2012013042A
    • 2012-01-19
    • JP2010152269
    • 2010-07-02
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TAKENOBU KOICHIANDO YOSHIMASAMIYAMOTO HITOSHI
    • F02B63/04F02M33/00
    • PROBLEM TO BE SOLVED: To provide a power generation device by which the discharging amount of NOgas is reduced, power generation efficiency is raised, power can be stably fed, and a hybrid power generation system using the same.SOLUTION: The power generation devices 1, 31, 41 include power generating machines 8 for generating power by the rotating energy transmitted from a motor 7. The power generation devices 1, 31, 41 include oxygen ion permeable membranes 5a, 33a having a function to permeating oxygen ion, a reserve tank 14 storing pure oxygen separated from air by feeding the air to the oxygen ion permeable membranes 5a, 33a. The device is characterized by being constituted so as to convert the combustion energy generator by feeding the pure oxygen stored in the reserve tank 14 to the motor 7 together with fuel and combusting them to the rotation energy by the motor 7.
    • 要解决的问题为了提供一种发电装置,其中NO X 气体的排放量减少,发电效率提高,能够稳定地供电, 以及使用该发电系统的混合发电系统。 发电装置1,31,41包括通过从电动机7传递的旋转能量发电的发电机8.发电装置1,31,41包括具有氧离子透过膜5a,33a, 通过向氧离子透过膜5a,33a供给空气而将从氧气分离的纯氧储存在储存罐14中的作用。 该装置的特征在于,通过将储存在储备箱14中的纯氧与燃料一起供给到电动机7并通过电动机7将其燃烧成旋转能量来转换燃烧能量发生器。版权所有: (C)2012,JPO&INPIT
    • 19. 发明专利
    • SOLID ELECTROLYTE TYPE FUEL CELL
    • JPH0922709A
    • 1997-01-21
    • JP17197095
    • 1995-07-07
    • MITSUBISHI HEAVY IND LTD
    • IRINO MITSUHIROTANAKA KAZUHISAANDO YOSHIMASASHIMOGAI TAKESHI
    • H01M8/04H01M8/24H01M8/02
    • PROBLEM TO BE SOLVED: To satisfactorily cool the inside of a cell stack into a small temp. distribution by cooling recirculating gas from a fuel electrode upon introducing to an external wall passage, and feeding it to cooling plates inserted at each stage of reaction layers in the direction perpendicular to a fuel passage. SOLUTION: A power generating layer 3 is provided with an air electrode and fuel electrode on both sides of an electrolytic film in the form of a flat plate, and a plurality of such layers are stacked to form a cell stack 2. Air 8 as oxidator is supplied to the air electrode while a fuel gas 7 is supplied to the fuel electrode, and thereby power generation is conducted. In this solid electrolyte type fuel cell 1, a cooling plate 4 is inserted at each stage of a plurality of power generating layers 3. The cooling plates 4 are furnished with an air passage to form a parallel flow provided at the air electrode and fuel electrode and a cooling passage stretching in the direction approx. perpendicular to a fuel gas passage. The exhaust gas from the fuel electrode is passed through an external wall passage 15 furnished at external wall 6 surrounding the cell stack 2, cooled, and recirculated. Part of this recirculated gas is fed as cooling gas to the cooling passage in the cooling plates 4.