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    • 2. 发明申请
    • CONTROL DEVICE AND CONTROL METHOD, POWER GENERATION DEVICE AND POWER GENERATION METHOD, POWER STORAGE DEVICE AND POWER STORAGE METHOD, AND POWER CONTROL SYSTEM
    • 控制装置和控制方法,发电装置和发电方法,蓄电装置和蓄电方法及功率控制系统
    • US20130134922A1
    • 2013-05-30
    • US13810539
    • 2011-07-15
    • Yuto Takagi
    • Yuto Takagi
    • H02J7/00
    • H02J7/0052H01M10/44H01M10/48H02J3/386H02J5/005H02J7/0013H02J7/025H02J7/35H02J17/00H02J50/00H02J50/40H02J50/80H02J2001/004Y02E10/763
    • The present invention relates to a control device and a control method, a power generation device and a power generating method, a power storage device and a power storing method, and a power control system that are capable of using generated electric power with higher efficiency. A controller (110) acquires information relating to a power storage state and the like from each power storage device (130) and determines a power transmission source and a power transmission destination of electric power generated by a power generation device (120), for example, as denoted by white arrows based on the information. The controller (110) supplies a power transmission instruction including information of the power transmission destination to the power generation device (120) as the power transmission source and supplies a power reception instruction including information of the power transmission source to the power storage device (130) as the power transmission destination. The power generation device (120) and the power storage device (130) perform power transmission and power reception based on the instructions. The present invention can be applied to, for example, a power generation device.
    • 本发明涉及能够以更高效率使用生成电力的控制装置和控制方法,发电装置和发电方法,蓄电装置和蓄电方法以及功率控制系统。 控制器(110)从每个蓄电装置(130)获取与蓄电状态等相关的信息,并且确定由发电装置(120)产生的电力的发电源和发电目的地,例如 ,如基于信息的白色箭头所示。 控制器(110)向发电设备(120)提供包含发送目的地信息的电力传输指令作为电力传输源,并将包含电力传输源的信息的电力接收指令提供给蓄电装置(130) )作为电力传输目的地。 发电装置(120)和蓄电装置(130)基于指示进行电力传输和电力接收。 本发明可以应用于例如发电装置。
    • 4. 发明申请
    • FUEL CELL SYSTEM AND ELECTRONIC DEVICE
    • 燃料电池系统和电子设备
    • US20100209817A1
    • 2010-08-19
    • US12679415
    • 2008-09-25
    • Yuto TakagiKazuaki FukushimaJusuke Shimura
    • Yuto TakagiKazuaki FukushimaJusuke Shimura
    • H01M8/04
    • H01M8/04089H01M8/04074
    • A fuel cell system with which excessive supply or supply shortage of a vaporized fuel is able to be avoided and stable power generation with high output is able to be made, and an electronic device using the same. In a vaporization chamber, a projection is provided as a heat conduction section to conduct heat generated in a power generation section to a liquid fuel supplied to the vaporization chamber. Between the end of the projection and an inner wall face of an inner member, a gap is provided. In the gap, the heat is effectively conducted to the liquid fuel supplied from the end of a fuel supply route, and the liquid fuel is vaporized. It is possible that the projection is contacted with a section in the vicinity of the end section of the fuel supply route in the inner wall face of the inner member, and thereby heat of the power generation section is conducted to the inner member through the projection, heat is conducted to the liquid fuel through the inner member, and the liquid fuel is vaporized. Thereby, it is possible to limit a target region to be heated according to the position of the projection, or to control the amount of heat conducted to the liquid fuel according to the size of the projection.
    • 能够避免能够避免蒸发燃料供应不足或燃料供应不足的燃料电池系统,以及能够实现高输出稳定发电的燃料电池系统,以及使用该燃料电池系统的电子设备。 在蒸发室中,设置有作为导热部的突起,以将在发电部产生的热量供给到供给到蒸发室的液体燃料。 在突起的端部和内部构件的内壁面之间设置有间隙。 在间隙中,有效地将热量传导到从燃料供给路径的端部供给的液体燃料,并且液体燃料蒸发。 突起能够与内部构件的内壁面中的燃料供给路径的端部附近的部分接触,从而发电部分的热量通过突出部被传导到内部构件 通过内部构件对液体燃料进行加热,液体燃料蒸发。 由此,可以根据突起的位置来限制被加热物的区域,或者根据突起的尺寸来控制对液体燃料的传热量。
    • 8. 发明申请
    • Method of treating reformate, apparatus for treating reformate and fuel cell electric power generating system
    • 重整产品处理方法,重整产品及燃料电池发电系统处理设备
    • US20070111052A1
    • 2007-05-17
    • US10566299
    • 2004-07-23
    • Yuto Takagi
    • Yuto Takagi
    • H01M8/06C01B31/20B01J19/00
    • H01M8/0662C01B3/583C01B2203/044C01B2203/047H01M8/0612
    • To provide a method for treating a reformate in which carbon monoxide in the reformate can be removed in a stable and reliable manner for a long period of time. A method for treating a reformate according comprises a temperature elevating step of heating a selective oxidation catalyst 19 to elevate temperature thereof, the selective oxidation catalyst 19 being for selectively oxidizing carbon monoxide in the reformate 44 with air 34 for selective oxidation; a selective oxidation catalyst 19 activating step of, after the temperature of the selective oxidation catalyst 19 has been elevated in the above temperature elevating step, supplying the reformate 44, formed in a reforming step of forming the reformate 44 from a hydrocarbon fuel 42 by steam reforming reaction, to the selective oxidation catalyst 19 for a predetermined time, without supplying the air 34 for selective oxidation, to activate the selective oxidation catalyst 19; and a carbon monoxide removing step of removing carbon monoxide in the reformate 44, formed in the reforming step, by the selective oxidation thereof with the air 34 for selective oxidation using the activated selective oxidation catalyst 19.
    • 提供一种处理重整产物的方法,其中重整产物中的一氧化碳可以长时间稳定可靠地除去。 一种用于处理重整油的方法,包括加热选择性氧化催化剂19升高其温度的升温步骤,选择性氧化催化剂19用于选择性氧化重整产物44中的一氧化碳,用于选择性氧化的空气34; 选择性氧化催化剂19的活化步骤,在上述温度升高步骤中,在选择氧化催化剂19的温度升高之后,供给重整产物44,在由碳氢燃料42通过蒸汽形成重整产物44的重整步骤中形成 重整反应至选择性氧化催化剂19预定时间,而不供应用于选择性氧化的空气34,以活化选择性氧化催化剂19; 和通过使用活化选择氧化催化剂19用选择性氧化空气34选择性氧化在重整步骤中形成的重整产物44中的一氧化碳的一氧化碳去除步骤。
    • 9. 发明申请
    • Fuel cell power generation system
    • 燃料电池发电系统
    • US20060057434A1
    • 2006-03-16
    • US10938879
    • 2004-09-13
    • Yasuhiko OgushiYuto Takagi
    • Yasuhiko OgushiYuto Takagi
    • H01M8/00H01M8/04
    • H01M8/04029H01M8/0612
    • A fuel cell power generation system is provided in which the dew point of a reformate supplied from a fuel processing system to the fuel cell stack is controlled appropriately with a simple configuration. The system comprises: a cell stack 4 for generating electricity using a reformate containing hydrogen as a main ingredient thereof and a water content; a fuel processing system 1 for reforming a hydrocarbon-based fuel into the reformate; a first heat exchanger 6 for cooling, with the use of external coolant, a coolant which cools the cell stack 4; and a second heat exchanger 2 for exchanging heat between the coolant cooled with the first heat exchanger 6 and the fuel gas supplied from the fuel processing system 1 to the cell stack 4, wherein the coolant after exchanging heat with the fuel gas in the second heat exchanger 2 is supplied to the cell stack 4.
    • 提供了一种燃料电池发电系统,其中以简单的结构适当地控制从燃料处理系统向燃料电池堆供应的重整产物的露点。 该系统包括:电池组4,用于使用包含氢作为其主要成分的重整产物和含水量发电; 用于将烃类燃料重整成重整产品的燃料处理系统1; 第一热交换器6,用于使用外部冷却剂冷却冷却细胞堆4的冷却剂; 以及第二热交换器2,用于在由第一热交换器6冷却的冷却剂和从燃料处理系统1供应到燃料处理系统1的燃料气体之间进行热交换,其中在第二热量中与燃料气体交换热量后的冷却剂 交换器2被提供给电池堆4。