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    • 7. 发明授权
    • Internal-resistance measuring device for response-delay type fuel cell
    • 用于响应延迟型燃料电池的内阻测量装置
    • US08426045B2
    • 2013-04-23
    • US12921985
    • 2008-10-29
    • Akira YamazawaYoshiyuki UenoKazuya WatanabeTakefumi Shimoyama
    • Akira YamazawaYoshiyuki UenoKazuya WatanabeTakefumi Shimoyama
    • H01M8/16
    • H01M8/16G01R31/3662H01M8/04544H01M8/04634H01M8/04895Y02E60/527
    • One object is to provide a measuring device configured to evaluate the power generation characteristics of a response-delay type fuel cell automatically, precisely, and with excellent reproducibility with consideration of the response delay against power load fluctuations, and effectively acclimatize and develop microorganisms that are provided to generate power. A potentio-galvanostat is connected to a microbial fuel cell provided as an exemplary response-delay type fuel cell. Further, an automatic measuring device is connected to the potentio-galvanostat. The automatic measuring device has a program function and measures the internal resistance of the microbial fuel cell at set time. The internal resistance measurement is executed through the automatic measuring device that instructs the potentio-galvanostat to change a current value flowing to the microbial fuel cell and that repeatedly executes the process of measuring and recording a voltage value of the microbial fuel cell and the current value while changing a current control value in stages after the voltage value is stabilized.
    • 一个目的是提供一种测量装置,其被配置为考虑到对电力负载波动的响应延迟来自动,精确地且以优异的再现性来评估响应延迟型燃料电池的发电特性,并且有效地适应和开发微生物 提供发电。 电位恒温器连接到作为示例性响应延迟型燃料电池提供的微生物燃料电池。 此外,自动测量装置连接到电位恒流器。 自动测量装置具有程序功能,并在设定的时间测量微生物燃料电池的内部电阻。 通过自动测量装置执行内部电阻测量,该自动测量装置指示电位计电位器改变流向微生物燃料电池的电流值,并且重复执行测量和记录微生物燃料电池的电压值和当前值的过程 同时在电压值稳定后分阶段改变电流控制值。
    • 8. 发明申请
    • MICROBIAL FUEL CELL AND MEMBRANE CASSETTE FOR MICROBIAL FUEL CELLS
    • 用于微生物燃料电池的微生物燃料电池和膜
    • US20120003504A1
    • 2012-01-05
    • US12998383
    • 2008-10-15
    • Akira YamazawaYoshiyuki UenoMasahiro TataraYoji KitajimaKazuya WatanabeTakefumi ShimoyamaToshikazu IshiiShoko Komukai
    • Akira YamazawaYoshiyuki UenoMasahiro TataraYoji KitajimaKazuya WatanabeTakefumi ShimoyamaToshikazu IshiiShoko Komukai
    • H01M8/16H01M8/04H01M8/10
    • H01M8/16Y02E60/527
    • [PROBLEMS] To provide a microbial fuel cell whose parts can be replaced without lowering the energy recovery efficiency and a membrane cassette for microbial fuel cells. [MEANS FOR SOLVING PROBLEMS] A negative electrode (10) supporting anaerobic microorganisms (11) is immersed in an organic substrate (S). A positive electrode (15) sealed together with an electrolyte (D) in a closed hollow cassette (20) having an outer shell (25) at least a part of which is formed of an ion-permeable membrane (21), an inlet (22), and an outlet (23) or connected to the inner side of an ion-permeable membrane (21) is inserted into the organic substrate (S). While oxygen (O) is supplied into the cassette (20) through the inlet (22) and the outlet (23), electricity is taken out through a circuit (18) electrically interconnecting the negative and positive electrodes (10, 15). Preferably, the outer shell (25) of the closed hollow cassette (20) is a hollow outer shell frame (25) having an opening (26) which is closed by stretching an ion-permeable membrane (21), an inlet (22), and an outlet (23), and the ion-permeable membrane (21) is a membrane/electrode assembly (MEA) formed integrally with the positive electrode (15).
    • [问题]提供一种能够在不降低能量回收效率的情况下更换其部件的微生物燃料电池和用于微生物燃料电池的膜盒。 用于解决问题的手段将负载有厌氧微生物(11)的负极(10)浸渍在有机基板(S)中。 一种正电极(15),其与电解质(D)一起封闭在具有外壳(25)的封闭中空盒(20)中,所述外壳(25)的至少一部分由离子透过膜(21),入口 22),并且与离子透过膜(21)的内侧连接的出口(23)插入到有机基板(S)中。 当氧气(O)通过入口(22)和出口(23)供应到盒(20)中时,通过电气互连负极和正电极(10,15)的电路(18)取出电。 优选地,封闭的中空盒(20)的外壳(25)是中空的外壳框架(25),其具有通过拉伸离子透过膜(21)而封闭的开口(26),入口(22) ,和出口(23),离子透过膜(21)是与正极(15)一体形成的膜/电极组件(MEA)。
    • 9. 发明授权
    • Method and apparatus for plate changing in a plate cylinder of a printing press
    • 印刷机印版滚筒中的印版更换方法和装置
    • US06973876B2
    • 2005-12-13
    • US10874248
    • 2004-06-24
    • Takeaki NakanoYoshiyuki UenoKazunori Takeda
    • Takeaki NakanoYoshiyuki UenoKazunori Takeda
    • B41F27/12B41F33/08B41F33/14B41F33/16B41F13/08B41F5/00
    • B41F27/12
    • A plate changing method and an apparatus for rotating all plate cylinders of a plurality of printing units by a drive device, and performing plate changing by plate changing unit provided in correspondence with the plate cylinders has an abnormality detection step of detecting presence or absence of a plate changing abnormality by detectors provided in correspondence with the plate cylinders, a step of stopping the drive device when the plate changing abnormality is detected in the abnormality detection step, a return step of controlling at least one of the drive device and the plate changing unit of a normal unit, other than an error unit in which the plate changing abnormality has been detected, in accordance with the status of progress of plate changing in the normal unit after the stop step, and an error elimination step of eliminating the plate changing abnormality in the error unit after the stop step.
    • 一种换板方法和一种用于通过驱动装置旋转多个印刷单元的所有印版滚筒并通过与印版滚筒相对设置的板更换单元进行板更换的装置具有异常检测步骤,其检测是否存在 通过与印版滚筒相对应地设置的检测器进行换板异常,在异常检测步骤中检测到变更异常时停止驱动装置的步骤,控制驱动装置和换板单元中的至少一个的返回步骤 根据在停止步骤之后的正常单元中的板块变化的进行状态,检测到板块变化异常的误差单元以外的正常单元的除错步骤,以及消除板更换异常 在停止步骤后的错误单元中。