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首页> 外文期刊>International journal of hydrogen energy >Towards a 'proton flow battery': Investigation of a reversible PEM fuel cell with integrated metal-hydride hydrogen storage
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Towards a 'proton flow battery': Investigation of a reversible PEM fuel cell with integrated metal-hydride hydrogen storage

机译:迈向“质子流电池”:研究带有集成金属氢化物氢存储的可逆PEM燃料电池

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摘要

An innovative concept for integrating a metal hydride storage electrode into a reversible proton exchange membrane (PEM) fuel cell is described and investigated experimentally. This new concept has the potential to increase roundtrip efficiency compared to the conventional hydrogen-based electrical energy storage system by eliminating the intermediate steps of hydrogen gas production, storage, and recovery. As only an inflow of water is needed in the charge mode, and air in discharge mode, the system is called a 'proton flow battery'. A hydrogen storage electrode was fabricated from a novel composite metal hydride-nafion material, and found to have acceptably high proton and electron conductivities. Its hydrogen storage capacity was measured to be 0.6 wt% of hydrogen, although the amount of hydrogen recovered to run the device in fuel cell mode was much lower. These results provide initial confirmatory evidence that the proton flow battery concept is technically feasible, though additional research is still required to enhance both storage capacity and reversibility.
机译:描述和实验研究了将金属氢化物存储电极集成到可逆质子交换膜(PEM)燃料电池中的创新概念。与传统的基于氢的电能存储系统相比,该新概念通过消除氢气生产,存储和回收的中间步骤,具有提高往返效率的潜力。由于在充电模式下仅需要流入水,而在放电模式下则需要流入空气,因此该系统称为“质子流电池”。储氢电极由新型的复合金属氢化物-nafion材料制成,并具有可接受的高质子和电子电导率。尽管为使该装置以燃料电池模式运行而回收的氢气量要低得多,但据测得其氢气存储量为氢气的0.6 wt%。这些结果提供了初步的验证性证据,表明质子流电池的概念在技术上是可行的,尽管仍需要进行更多的研究以增强存储容量和可逆性。

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