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首页> 外文期刊>Journal of power sources >Aluminum and aluminum alloys as sources of hydrogen for fuel cell applications
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Aluminum and aluminum alloys as sources of hydrogen for fuel cell applications

机译:铝和铝合金作为燃料电池应用中的氢源

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摘要

Production of hydrogen using aluminum and aluminum alloys with aqueous alkaline solutions is studied. This process is based on aluminum corrosion, consuming only water and aluminum which are cheaper raw materials than other compounds used for in situ hydrogen generation, such as chemical hydrides. In principle, this method does not consume alkali because the aluminate salts produced in the hydrogen generation undergo a decomposition reaction that regenerates the alkali. As a consequence, this process could be a feasible alternative for hydrogen production to supply fuel cells. Preliminary results showed that an increase of base concentration and working solution temperature produced an increase of hydrogen production rate using pure aluminum. Furthermore, an improvement of hydrogen production rates and yields was observed varying aluminum alloys composition and increasing their reactive surface, with interesting results for Al/Si and Al/Co alloys. The development of this idea could improve yields and reduce costs in power units based on fuel cells which use hydrides as raw material for hydrogen production.
机译:研究了使用铝和铝合金与碱性水溶液生产氢的方法。此过程基于铝腐蚀,仅消耗水和铝,这些水和铝比用于原位生成氢的其他化合物(例如化学氢化物)便宜。原则上,该方法不消耗碱,因为在氢产生中产生的铝酸盐会发生分解反应,从而使碱再生。结果,该方法对于向燃料电池供应氢气的生产可能是可行的替代方法。初步结果表明,使用纯铝可提高碱浓度和工作溶液温度,从而提高制氢速率。此外,观察到氢气产生速率和产率的提高,改变了铝合金的组成并增加了它们的反应性表面,对于Al / Si和Al / Co合金来说,结果令人感兴趣。这种想法的发展可以提高基于燃料电池的动力装置的发电量并降低成本,该燃料电池使用氢化物​​作为生产氢气的原料。

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