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首页> 外文期刊>Electrical engineering in Japan >Energetically Self-Sustaining Electric Power Generation System Based on the Combined Cycle of Electrostatic Induction Hydrogen Electrolyzer and Fuel Cell
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Energetically Self-Sustaining Electric Power Generation System Based on the Combined Cycle of Electrostatic Induction Hydrogen Electrolyzer and Fuel Cell

机译:基于静电感应氢电解槽与燃料电池联合循环的能量自持发电系统

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Toward achieving a breakthrough in self-sustaining electric power generation systems consisting of a hydrogen energy cycle, we demonstrate an electrostatic induction potential superposed hydrogen electrolyzer to produce stoichiometric H-2-O-2 fuel for fuel cells. This electrolytic system operates by a mechanism in which the total power requirement is given by the product of the electrolytic current and the additional voltage over the decomposition voltage. In order to achieve the highest energy efficiency for the fuel cell and full sustainability for the fuel, a combined cycle of an H-2-O-2 fuel cell and this type of electrolyzer is introduced. Part of the power delivered by the fuel cell is returned to the electrolyzer, and the remainder represents the net power output. According to theoretical calculations, the net power output exceeds 70% of that delivered by the H-2-O-2 fuel cell, without violating the laws of thermodynamics. (C) 2015 Wiley Periodicals, Inc.
机译:为了在由氢能循环组成的自持式发电系统中取得突破,我们展示了一种静电感应势叠加氢电解器,可生产化学计量比的H-2-O-2燃料电池。该电解系统通过一种机制进行操作,其中总功率需求由电解电流和分解电压之上的附加电压的乘积给出。为了实现燃料电池的最高能量效率和燃料的完全可持续性,引入了H-2-O-2燃料电池和这种类型的电解槽的联合循环。燃料电池输送的部分功率返回到电解槽,其余部分代表净功率输出。根据理论计算,在不违反热力学定律的情况下,净输出功率超过H-2-O-2燃料电池输出功率的70%。 (C)2015年Wiley Periodicals,Inc.

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