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    • 2. 发明授权
    • System and method for storing hydrogen and electrical energy
    • 用于储存氢和电能的系统和方法
    • US07576970B2
    • 2009-08-18
    • US10745354
    • 2003-12-24
    • William Paul MinnearLuke Nathaniel Brewer
    • William Paul MinnearLuke Nathaniel Brewer
    • H01G9/00
    • H01M8/04216
    • A hybrid capacitive storage system and method for storing electrical energy and hydrogen comprising at least a first dielectric layer, which dielectric layer is substantially impermeable to hydrogen. The hybrid storage system further comprises at least a first catalytic electrode layer disposed on at least a portion of a first surface of said first dielectric layer, which first catalytic electrode layer converts molecular hydrogen into atomic hydrogen, an electrode layer disposed on at least a portion of a second surface of said first dielectric layer, which electrode layer is selectively electrically connected to said first catalytic electrode layer; and at least one field generator for selectively applying a field to said storage system. Upon introduction of hydrogen to the storage system and activation of the at least one field generator, the hydrogen is converted to protons and electrons, wherein the electrons are permitted to flow through electrical connection to the electrode layer and the protons remain at the first catalytic electrode layer.
    • 提供了一种用于存储电能和氢的混合电容性存储系统和方法。 混合存储系统包括至少一部分基本上不可渗透氢的第一电介质层。 混合存储系统还包括至少一个设置在所述第一电介质层的第一表面的至少一部分上的第一催化电极层,设置在所述第一介电层的第二表面的至少一部分上的电极层, 至少一个场发生器,用于选择性地将场施加到所述存储系统。 第一催化剂电极层将分子氢转化为原子氢,电极层选择性地电连接到所述第一催化电极层。 在向存储系统引入氢气并激活至少一个场发生器时,氢转化为质子和电子,其中电子被允许流过电连接到电极层,并且质子保留在第一催化电极 层,为此。