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    • 3. 发明公开
    • CIHT动力系统
    • CN104521046A
    • 2015-04-15
    • CN201380038878.8
    • 2013-05-21
    • 布莱克光电有限公司
    • 兰德尔·L·米尔斯
    • H01M4/86H01M8/22H01M8/14
    • H01M8/143H01M8/00H01M8/06H01M8/0656H01M8/144H01M8/146Y02E60/366
    • 本发明提供一种电化学动力系统,其由氢至较低能量(分数氢)态的催化反应产生电动势(EMF),从而使自分数氢反应释放的能量直接转换成电,该系统包含至少两种选自以下物质的成分:H2O催化剂或H2O催化剂来源;原子氢或原子氢来源;形成H2O催化剂或H2O催化剂来源和原子氢或原子氢来源的反应物;和引发原子氢的催化的一种或多种反应物。形成分数氢和电的电化学动力系统可还包括包含阴极的阴极隔室、包含阳极的阳极隔室、可选的盐桥、在电池工作期间利用单独的电子流动和离子物质输送构成分数氢反应物的反应物、氧来源和氢来源。由于氧化还原电池的半反应,因此产生分数氢的反应混合物利用经由外部电路的电子迁移和经由单独的路径(诸如电解质)的离子质量输送以完成电路而构成。还提供一种为动力系统供能的电源和氢化物反应器,该动力系统包含:(i)用于催化原子氢以形成分数氢的反应电池;(ii)化学燃料混合物,其包含至少两种选自以下物质的成分:H2O催化剂来源或H2O催化剂、原子氢来源或原子氢、形成H2O催化剂来源或H2O催化剂和原子氢来源或原子氢的反应物、引发原子氢的催化的一种或多种反应物和使该催化可行的载体;(iii)用于逆转交换反应由反应产物热再生燃料的热系统;(iv)接受来自产生动力的反应的热量的散热器;和(v)动力转换系统。
    • 8. 发明公开
    • CIHT POWER SYSTEM
    • CIHT功耗系统
    • EP2852995A2
    • 2015-04-01
    • EP13799132.9
    • 2013-05-21
    • Blacklight Power, Inc.
    • MILLS, Randell, L.
    • H01M4/86H01M8/22H01M8/14
    • H01M8/143H01M8/00H01M8/06H01M8/0656H01M8/144H01M8/146Y02E60/366
    • An electrochemical power system is provided that generates an electromotive force (EMF) from the catalytic reaction of hydrogen to lower energy (hydrino) states providing direct conversion of the energy released from the hydrino reaction into electricity, the system comprising at least two components chosen from: H
      2 O catalyst or a source of H
      2 O catalyst; atomic hydrogen or a source of atomic hydrogen; reactants to form the H
      2 O catalyst or source of H
      2 O catalyst and atomic hydrogen or source of atomic hydrogen; and one or more reactants to initiate the catalysis of atomic hydrogen. The electrochemical power system for forming hydrinos and electricity can further comprise a cathode compartment comprising a cathode, an anode compartment comprising an anode, optionally a salt bridge, reactants that constitute hydrino reactants during cell operation with separate electron flow and ion mass transport, a source of oxygen, and a source of hydrogen. Due to oxidation-reduction cell half reactions, the hydrino-producing reaction mixture is constituted with the migration of electrons through an external circuit and ion mass transport through a separate path such as the electrolyte to complete an electrical circuit. A power source and hydride reactor is further provided that powers a power system comprising (i) a reaction cell for the catalysis of atomic hydrogen to form hydrinos, (ii) a chemical fuel mixture comprising at least two components chosen from: a source of H
      2 O catalyst or H
      2 O catalyst; a source of atomic hydrogen or atomic hydrogen; reactants to form the source of H
      2 O catalyst or H
      2 O catalyst and a source of atomic hydrogen or atomic hydrogen; one or more reactants to initiate the catalysis of atomic hydrogen; and a support to enable the catalysis, (iii) thermal systems for reversing an exchange reaction to thermally regenerate the fuel from the reaction products, (iv) a heat sink that accepts the heat from the power-producing reactions, and (v) a power conversion system.