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    • 6. 发明公开
    • HETEROGENEOUS HYDROGEN-CATALYST POWER SYSTEM
    • 异构物WASSERSTOFFKATALYSATYSYSTEM
    • EP2966723A1
    • 2016-01-13
    • EP15166272.3
    • 2010-03-18
    • Blacklight Power, Inc.
    • Mills, Randell L.
    • H01M14/00C01B3/00C01B3/06G21B3/00
    • H01M14/00C01B3/0094C01B3/065F01K23/064F22B35/00F24V30/00G21B3/00H01M8/06Y02E30/18Y02E60/324Y02E60/362Y02E60/364Y02P20/129
    • A power source and hydride reactor is 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 catalyst or catalyst; a source of atomic hydrogen or atomic hydrogen; reactants to form the source of catalyst or 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. In an embodiment, the catalysis reaction is activated or initiated and propagated by one or more other chemical reactions such as a hydride-halide exchange reaction between a metal of the catalyst and another metal. These reactions are thermally reversible by the removal of metal vapor in the reverse exchange. The hydrino reactions are maintained and regenerated in a batch mode using thermally-coupled multi-cells arranged in bundles wherein cells in the power-production phase of the cycle heat cells in the regeneration phase. In this intermittent cell power design, the thermal power is statistically constant as the cell number becomes large, or the cells cycle is controlled to achieve steady power.
    • 提供了一种动力源和氢化物反应器,其对动力系统提供动力,该动力系统包括(i)用于催化原子氢以形成水合物的反应池,(ii)包含至少两种组分的化学燃料混合物,所述组分选自:催化剂源或 催化剂; 原子氢或原子氢的来源; 反应物形成催化剂或催化剂的来源以及原子氢或原子氢的来源; 一种或多种反应物来引发原子氢的催化; 和(iii)用于反转交换反应以从反应产物热再生燃料的热系统,(iv)接受来自发电反应的热的散热器,以及(v) 电源转换系统 在一个实施方案中,通过一种或多种其它化学反应(例如催化剂的金属与另一种金属之间的氢化物 - 卤化物交换反应)使催化反应活化或引发并传播。 这些反应通过在反向交换中除去金属蒸汽而是热可逆的。 氢化反应以间歇模式保持和再生,使用排列成束的热耦合多电池,其中循环的电力生产阶段中的电池在再生阶段加热电池。 在这种间歇电池电源设计中,随着电池数量变大,热功率统计不变,或者控制电池循环以实现稳定的功率。