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    • 5. 发明授权
    • Fuel cell electrode-electrolyte unit
    • 燃料电池电极 - 电解质单元
    • US06242122B1
    • 2001-06-05
    • US09297886
    • 1999-08-03
    • Hendrik DohleVolker PeineckeIlona BusenbenderThorsten Kels
    • Hendrik DohleVolker PeineckeIlona BusenbenderThorsten Kels
    • H01M810
    • H01M8/1009H01M8/0289H01M2008/1095
    • An electrode-electrolyte unit for a fuel cell which prevents the permeation of the fuel used or the permeation of water through the electrolyte layer. An electrolyte is subdivided into two electrolyte layers with a barrier layer disposed between them. The barrier layer is permeable only to protons and may be coated with a catalytically active porous layer having a high effective surface area. A porous layer on the side of the unit facing the cathode increases the electrochemically active surface area and a porous layer on the side of the unit facing the anode ensures that a sufficient amount of hydrogen is dissolved. The fuel used can be hydrogen or methanol and suitable electrolytes include membranes or other solid or liquid electrolytes.
    • 一种用于燃料电池的电极 - 电解质单元,其防止所使用的燃料渗透或渗透通过电解质层。 电解质被细分为两个电解质层,其间设置有阻挡层。 阻挡层仅可渗透质子,并且可以涂覆有具有高有效表面积的催化活性多孔层。 面向阴极的单元侧的多孔层增加了电化学活性表面积,并且面向阳极的单元侧面上的多孔层确保了足够量的氢溶解。 使用的燃料可以是氢气或甲醇,合适的电解质包括膜或其它固体或液体电解质。
    • 8. 发明授权
    • Gas distributor for a fuel cell
    • 燃料电池的气体分配器
    • US06455184B1
    • 2002-09-24
    • US09642602
    • 2000-08-22
    • Volker Peinecke
    • Volker Peinecke
    • H01M802
    • H01M8/0258H01M4/8626
    • In a fuel cell comprising two electrodes, an electrolyte disposed between the electrodes and fluid conducting means for supplying an operating fluid to the electrodes and removing the depleted operating fluid from the electrodes, the flow conducting means include fluid supply passages supplying the operating fluid to the electrodes in a direction normal to the electrode surface and depleted fluid discharge passages for removing the depleted operating fluid from the electrode surfaces also in a direction normal to the electrode surfaces.
    • 在包括两个电极的燃料电池中,设置在电极之间的电解质和用于向电极供应工作流体并从电极去除耗尽的工作流体的流体传导装置,流动传导装置包括将工作流体供应到 电极在垂直于电极表面的方向上,以及耗尽的流体排出通道,用于在垂直于电极表面的方向上从电极表面除去耗尽的工作流体。
    • 9. 发明授权
    • Method of electrolysis
    • 电解方法
    • US6033549A
    • 2000-03-07
    • US965225
    • 1997-11-06
    • Volker PeineckePaul Mohr
    • Volker PeineckePaul Mohr
    • C25B1/04C25B15/02C25C1/00
    • C25B1/04C25B15/02Y02E60/366
    • In order to provide a method of electrolysis for the electrolysis of water, in which water is decomposed electrolytically from an electrolysis medium and the electrolysis gases hydrogen and oxygen obtained are each separated from the liquid electrolysis medium in a gas separator, wherein a supply of water to balance out the water consumption resulting from the electrolysis is controlled by a determination of an electrolysis medium volume which is determined by the total amount of electrolysis medium in the method of electrolysis, and by means of which the total volume of the electrolysis medium in the plant can be maintained constant, it is proposed that at least one physical quantity which is characteristic of the electrolysis, and whose variation causes a change in the electrolysis medium volume in addition to the change in the electrolysis medium volume resulting from the water consumption, is measured and there is calculated from a deviation of this quantity from a predetermined reference value for this quantity an associated change in the electrolysis medium volume and said calculated change is allowed for in the control of the water supply.
    • 为了提供一种电解水的电解方法,其中水从电解介质中电解分解,并且电解气体中的氢气和氧气分别与气体分离器中的液体电解介质分离,其中提供水 为了平衡由电解产生的耗水量,通过电解介质体积的测定来控制,该电解介质体积由电解方法中的电解介质的总量确定,并且电解介质的总体积 植物可以保持恒定,建议除了由耗水量导致的电解介质体积的变化之外,至少一种电解特性的物理量,其变化导致电解介质体积的变化,是 并且从该数量与预定重量的偏差计算 对于该数量的电量值,电解介质体积的相关变化和所述计算出的变化被允许用于控制供水。