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    • 2. 发明授权
    • Humidifier and a method for producing the same
    • 加湿器及其制造方法
    • US07404848B2
    • 2008-07-29
    • US11133218
    • 2005-05-20
    • Tatsunori OkadaHajimu YoshiyasuTatsuya HayashiHideo Ichimura
    • Tatsunori OkadaHajimu YoshiyasuTatsuya HayashiHideo Ichimura
    • B01D53/22B01D63/08
    • H01M8/04141B01D53/22B01D53/268B01D63/084H01M8/0284H01M8/04149Y02P70/56Y10T156/10
    • A humidifier and a method for producing it can reduce gas leakage through inside the surfaces of humidifying membranes or through interfaces between the humidifying membranes and separators. The humidifier includes water permeable humidifying membranes and gas separators each having one or two channels opened at least one side in a direction of lamination, through which at least one of a dry gas and a wet gas is caused to flow. A humidifying membrane, a gas separator, a humidifying membrane and a gas separator are repeatedly laminated one over another in this order, or a gas separator, a humidifying membrane and a gas separator are repeatedly laminated one over another in this order. Each gas separator has a frame-shaped portion surrounding the one or two channels, and that portion of each humidifying membrane which, when laminated, faces the frame-shaped portion of a corresponding gas separator is filled with a resin.
    • 加湿器及其制造方法可以减少加湿膜表面内的气体泄漏或加湿膜与分离器之间的界面。 加湿器包括水可渗透的加湿膜和气体分离器,每个气体分离器具有一个或两个通道在层压方向上的至少一个侧面打开,使干燥气体和湿气中的至少一个流过。 依次反复层叠加湿膜,气体分离器,加湿膜和气体分离器,或者依次重复层叠气体分离器,加湿膜和气体分离器。 每个气体分离器具有围绕一个或两个通道的框状部分,并且当层叠的每个加湿膜的面对相应的气体分离器的框形部分的部分填充有树脂。
    • 3. 发明申请
    • Humidifier and a method for producing the same
    • 加湿器及其制造方法
    • US20060112827A1
    • 2006-06-01
    • US11133218
    • 2005-05-20
    • Tatsunori OkadaHajimu YoshiyasuTatsuya HayashiHideo Ichimura
    • Tatsunori OkadaHajimu YoshiyasuTatsuya HayashiHideo Ichimura
    • B01D53/22
    • H01M8/04141B01D53/22B01D53/268B01D63/084H01M8/0284H01M8/04149Y02P70/56Y10T156/10
    • A humidifier and a method for producing it can reduce gas leakage A humidifier and a method for producing it can reduce gas leakage through inside the surfaces of humidifying membranes or through interfaces between the humidifying membranes and separators. The humidifier includes water permeable humidifying membranes and gas separators each having one or two channels opened at least one side in a direction of lamination, through which at least one of a dry gas and a wet gas is caused to flow. A humidifying membrane, a gas separator, a humidifying membrane and a gas separator are repeatedly laminated one over another in this order, or a gas separator, a humidifying membrane and a gas separator are repeatedly laminated one over another in this order. Each gas separator has a frame-shaped portion surrounding the one or two channels, and that portion of each humidifying membrane which, when laminated, faces the frame-shaped portion of a corresponding gas separator is filled with a resin.
    • 加湿器及其制造方法可以减少气体泄漏。加湿器及其制造方法可以减少加湿膜表面内的气体泄漏,或通过加湿膜与分离器之间的界面。 加湿器包括水可渗透的加湿膜和气体分离器,每个气体分离器具有一个或两个通道在层压方向上的至少一个侧面打开,使干燥气体和湿气中的至少一个流过。 依次反复层叠加湿膜,气体分离器,加湿膜和气体分离器,或者依次重复层叠气体分离器,加湿膜和气体分离器。 每个气体分离器具有围绕一个或两个通道的框状部分,并且当层叠的每个加湿膜的面对相应的气体分离器的框形部分的部分填充有树脂。
    • 4. 发明授权
    • Display screen control device, display screen control method, and computer readable medium
    • 显示屏控制装置,显示屏控制方法和计算机可读介质
    • US08645768B2
    • 2014-02-04
    • US13051202
    • 2011-03-18
    • Tatsunori Okada
    • Tatsunori Okada
    • G06F11/00
    • G06F11/0793G06F11/0733H04N1/00037H04N1/00082H04N1/00244H04N1/00464H04N2201/0039H04N2201/0081H04N2201/0082H04N2201/0091H04N2201/0093H04N2201/0094
    • A display screen control device comprises: a browser for acquiring a display screen from the web server and displaying on a predetermined display part; an error detection part for detecting whether or not a display error of an image contained in the display screen acquired by the browser is occurred with the display screen being displayed on the display part when instructions on execution of a job given by the user is detected; a confirmation screen creation part for creating a setting confirmation screen including a set value of each of at least one set item corresponding to the image in which the display error is detected when the display error is detected; and a screen change part for changing the display screen displayed on the display part to the setting confirmation screen created by the confirmation screen creation part prior to start of execution of the job.
    • 显示屏控制装置包括:浏览器,用于从所述web服务器获取显示屏并在预定的显示部分上显示; 错误检测部分,用于当检测到由用户给出的作业执行指令时,检测在显示部分上显示的显示画面是否发生由浏览器获取的显示画面中包含的图像的显示错误; 确认画面生成部,其用于创建设定确认画面,所述设定确认画面包含与检测出所述显示错误时检测到所述显示错误的所述图像对应的至少一个设定项目的设定值; 以及屏幕改变部分,用于将显示部分上显示的显示屏幕改变为在开始执行作业之前由确认屏幕创建部分创建的设置确认屏幕。
    • 5. 发明申请
    • Solid polymer fuel cell
    • 固体聚合物燃料电池
    • US20070048587A1
    • 2007-03-01
    • US11443001
    • 2006-05-31
    • Tetsuya YagiTatsunori Okada
    • Tetsuya YagiTatsunori Okada
    • H01M8/02H01M2/08H01M8/10H01M8/04
    • H01M8/0276H01M8/0258H01M8/0263H01M8/0267H01M8/0271H01M8/04067H01M8/2405H01M8/241H01M8/2483H01M2008/1095
    • A solid polymer fuel cell includes a membrane junction unit being provided an electrolyte membrane sandwiched by an oxidant electrode and a fuel electrode and two separators being sandwiched from both surfaces of the electrolyte membrane, the two separators being provided, in central portions of surfaces of the two separators, with gas flow channels, respectively, and a sealing portions being provided between surfaces of the two separators which are opposed to each other and between surfaces of the two separators which are opposed to the outer peripheral edge portion, respectively, in which the sealed surfaces of the two separators, which are opposed to the sealing portions, respectively, are provided with a plurality of depressions, which are independent of one another in a direction of the sealed surfaces, so that the plurality of depressions surround the gas flow channels.
    • 一种固体高分子型燃料电池,其具有膜接合部,该膜接合部设置有由氧化剂电极和燃料电极夹持的电解质膜,并且在所述电解质膜的两面夹着两个隔板,所述两个隔板设置在所述电解质膜的表面的中央部 分别具有气体流动通道的两个分离器和在两个分离器的彼此相对的表面之间以及分别与外周边缘部分相对的两个分离器的表面之间的密封部分,其中, 分别与密封部分相对的两个分离器的密封表面设置有多个凹部,它们在密封表面的方向上彼此独立,使得多个凹陷围绕气体流动通道 。
    • 6. 发明授权
    • Fuel cell
    • 燃料电池
    • US4943495A
    • 1990-07-24
    • US379227
    • 1989-07-13
    • Tatsunori OkadaMasayuki MiyazakiToshihide TanakaChiaki HatohMasahiro Mukai
    • Tatsunori OkadaMasayuki MiyazakiToshihide TanakaChiaki HatohMasahiro Mukai
    • H01M8/02H01M8/14H01M8/24
    • H01M8/0228H01M8/0254H01M8/244H01M2008/147H01M2300/0051Y02E60/526
    • A fuel cell in which the sealed portions formed at the peripheral edges of gas flow passages of a gas separating plate are turned so that they have a U-shaped cross section in the direction of the lamination so as to provide for elasticity. A filling member is filled in the interior of the sealed portions. This gas separating plate is used to respectively form gas flow passages through which different gas fluids are caused to flow so that they are electrochemically reacted in a pair of electrode reacting portions disposed with an electrolyte layer being interposed therebetween. In consequence, the sealed portions provided at the peripheral edges of the gas flow passages deform in accordance with the creep caused in the electrode reacting portions. This enables a balanced, adequate bearing pressure to be kept applied to the electrode reacting portions and the sealed portions, thereby enabling the fuel cell to be operated in an excellent gas sealed state for a long time.
    • 燃料电池,其中形成在气体分离板的气体流路的周边处的密封部分被转动,使得它们在层压方向上具有U形横截面以提供弹性。 填充构件填充在密封部分的内部。 这种气体分离板用于分别形成气体流动通道,不同的气体流体通过该气体流动通道流动,使得它们在设置有电解质层的一对电极反应部分之间电化学反应。 因此,设置在气体流路的周缘处的密封部分根据电极反应部分中产生的蠕变而变形。 由此,能够使电极反应部和密封部保持均匀,适当的轴承压力,能够使燃料电池长期处于良好的气体密封状态。
    • 10. 发明授权
    • Reforming catalyst for fuel cells
    • 燃料电池重整催化剂
    • US4774152A
    • 1988-09-27
    • US34716
    • 1987-04-06
    • Mitsuie MatsumuraTatsunori OkadaYoshihide Gonjo
    • Mitsuie MatsumuraTatsunori OkadaYoshihide Gonjo
    • H01M8/02H01M8/06H01M8/18
    • H01M8/0612H01M8/0625
    • A reforming catalyst adapted for use with fuel cells is disclosed which is free from degradation in catalytic activity even if subjected to a fuel gas containing an electrolyte or substances resulting therefrom, and which has stable and high catalytic activity for an extended period of time. The reforming catalyst includes a catalytically active substance adapted to reform a fuel gas containing hydrocarbons or alcohols into a fuel gas containing hydrogen and carbon monoxide, and an electrolyte-removing substance adapted to remove an electrolyte and/or substances resulting therefrom in the fuel cell. The electrolyte-removing substance has a porous structure and comprises a compound containing at least one of silicon, aluminum and chromium which chemically reacts with the electrolyte and/or the substances resulting therefrom for removal thereof.
    • 公开了一种适用于燃料电池的重整催化剂,其即使经受含有电解质的燃料气体或者由其产生的物质也不会降低催化活性,并且在较长时间内具有稳定和高催化活性。 重整催化剂包括催化活性物质,其适于将含有烃或醇的燃料气体改性为含有氢和一氧化碳的燃料气体,以及适于除去电解质和/或由燃料电池产生的物质的电解质去除物质。 电解质去除物质具有多孔结构,并且包含含有与电解质发生化学反应的硅,铝和铬中的至少一种的化合物和/或由其导致的物质的去除。