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Hybrid fuel cell-based energy system with metal hydride hydrogen storage for small mobile applications

机译:基于混合燃料电池的能源系统,具有金属氢化物氢存储功能,适用于小型移动应用

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摘要

This paper describes the general architecture of a hybrid energy system, whose main components are a proton exchange membrane fuel cell, a battery pack and an ultracapacitor pack as power sources, and metal hydride canisters as energy storage devices, suitable for supplying power to small mobile non-automotive devices in a flexible and variable way. The first experimental results carried out on a system prototype are described, showing that the extra components, required in order to manage the hybrid system, do not remarkably affect the overall system efficiency, which is always higher than 36% in all the test configurations examined. in fact, the system allows the fuel cell to work most often at quasi-optimal conditions, near its maximum efficiency (i.e. at low/medium loads), because high external loads are met by the combined effort of the fuel cell and the ultracapacitors. For the same reason, the metal hydride storage system can be used also under highly dynamic operating conditions, notwithstanding its usually poor kinetic performance. (C) 2009 International Association for Hydrogen Energy. Published by Elsevier Ltd. All rights reserved.
机译:本文描述了混合能源系统的总体架构,其主要组件是质子交换膜燃料电池,电池组和超级电容器组作为电源,金属氢化物罐作为储能装置,适用于向小型移动电话供电。非汽车设备以灵活可变的方式。描述了在系统原型上执行的第一个实验结果,表明管理混合系统所需的额外组件不会显着影响整体系统效率,在所有检查的测试配置中,总效率始终高于36% 。实际上,该系统允许燃料电池在接近其最大效率的准最佳条件下(即在低/中负载下)最频繁地工作,因为燃料电池和超级电容器的共同努力可以满足较高的外部负载。出于同样的原因,尽管金属氢化物存储系统通常动力学性能较差,但也可以在高动态操作条件下使用。 (C)2009国际氢能协会。由Elsevier Ltd.出版。保留所有权利。

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