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    • 2. 发明授权
    • Hydrogen furnace system and method
    • 氢炉系统及方法
    • US08663448B2
    • 2014-03-04
    • US11969868
    • 2008-01-04
    • Glenn A Eisman
    • Glenn A Eisman
    • F27D7/00C25B1/02B01D59/40C25B11/04C25B9/00H01M8/04H01M8/06C25C1/02C25D17/00
    • F27D7/02C21D1/767F27D7/06H01M2008/1095Y02P10/262
    • Apparatus and operating methods are provided for controlled atmosphere furnace systems. In one possible embodiment, hydrogen is injected from a hydrogen source to an enclosure. The hydrogen is circulated within the enclosure from a gas inlet to a gas outlet. A temperature is raised within the enclosure to a predetermined threshold. Hydrogen is pumped from the gas outlet to the gas inlet with an electrochemical hydrogen pump. The electrochemical hydrogen pump has a first electrode in fluid communication with the gas outlet, and a second electrode in fluid communication with the gas inlet. An electrical potential is provided between the first and second electrodes, wherein the first electrode has a higher electrical potential with respect to zero than the second electrode. Various methods, features and system configurations are discussed.
    • 为受控气氛炉系统提供设备和操作方法。 在一个可能的实施方案中,氢从氢源注入外壳。 氢气在外壳内从气体入口循环到气体出口。 将外壳内的温度升高到预定的阈值。 氢气通过电化学氢泵从气体出口泵送到气体入口。 电化学氢泵具有与气体出口流体连通的第一电极和与气体入口流体连通的第二电极。 在第一和第二电极之间提供电位,其中第一电极相对于第二电极具有比零更高的电位。 讨论了各种方法,特征和系统配置。