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Integrating hydrogen generation and storage in a novel compact electrochemical system based on metal hydrides

机译:将氢的产生和存储整合到基于金属氢化物的新型紧凑型电化学系统中

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The development of efficient and reliable energy storage systems based on hydrogen technology represents a challenge to seasonal storage based on renewable hydrogen. State of the art renewable energy generation systems include separate units such as electrolyzer, hydrogen storage vessel and a fuel cell system for the conversion of H_2 back into electricity, when required. In this work, a novel electrochemical system has been developed which integrates hydrogen production, storage and compression in only one device, at relatively low cost and high efficiency. The developed prototype comprises a six-electrode cell assembly using an AB_5-type metal hydride and Ni plates as counter electrodes, in a 35-wt% KOH solution. Metal hydride electrodes with chemical composition LaNi_(4.3)Co_(0.4)Al_(0.3) were prepared by high frequency vacuum melting followed by high temperature annealing. X-ray phase analysis showed typical hexagonal structure and no traces of other intermetallic compounds belonging to the La-Ni phase diagram. Thermodynamic study has been performed in a Sieverts type of apparatus produced by Labtech Int. During cycling, the charging/discharging process was studied in situ using a gas chromatograph from Agilent. It is anticipated that the device will be integrated as a combined hydrogen generator and storage unit in a stand-alone system associated to a 1 -kW fuel cell.
机译:基于氢技术的高效可靠的储能系统的发展对基于可再生氢的季节性储能构成了挑战。最先进的可再生能源发电系统包括单独的单元,例如电解器,氢气存储容器和燃料电池系统,用于在需要时将H_2转换回电能。在这项工作中,已经开发出了一种新颖的电化学系统,该系统以相对较低的成本和较高的效率将氢气的产生,存储和压缩集成在一个设备中。开发的原型包括一个六电极电池组件,该组件使用AB_5型金属氢化物和Ni板作为反电极,在35 wt%的KOH溶液中使用。化学成分为LaNi_(4.3)Co_(0.4)Al_(0.3)的金属氢化物电极是通过高频真空熔化然后高温退火制备的。 X射线相分析显示典型的六边形结构,没有痕迹属于La-Ni相图的其他金属间化合物。热力学研究是在Labtech Int生产的Sieverts型设备中进行的。在循环过程中,使用安捷伦的气相色谱仪对充电/放电过程进行了现场研究。预计该设备将作为氢气发生器和存储单元的组合集成在与1 kW燃料电池相关的独立系统中。

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