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Effect of storage environment on hydrogen generation by the reaction of Al with water

机译:储存环境对铝与水反应制氢的影响

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摘要

Al powder was stored in saturated water vapor, oxygen, nitrogen and drying air separately for a time period of up to six months, the degradation behavior of Al activity was characterized by the reaction of Al with water. It was found that water vapor decreased the induction time for the beginning of Al-water reaction and reduced the total hydrogen generation per unit weight of Al, while oxygen increased the induction time and retarded the Al-water reaction. In contrast, the effect of nitrogen and drying air on Al activity was weak. The mechanism analyses indicated that water vapor promoted the hydration of the Al surface passive oxide film and sped up the reaction of Al with water, while oxygen thickened the passive oxide film of the Al surface and prolonged its hydration process. These results imply that water vapor rather than oxygen is responsible for the degradation of Al activity during storage in the atmospheric environment.
机译:将铝粉分别储存在饱和水蒸气,氧气,氮气和干燥空气中长达六个月的时间,铝活性的降解行为通过铝与水的反应来表征。发现水蒸气减少了Al-水反应开始的诱导时间并且减少了每单位重量的Al的总氢产生,而氧气增加了诱导时间并阻碍了Al-水反应。相反,氮和干燥空气对Al活性的影响很弱。机理分析表明,水蒸气促进了Al表面钝化氧化膜的水合作用,加速了Al与水的反应,而氧气使Al表面钝化氧化膜变厚,延长了其水化过程。这些结果表明,在大气环境中储存期间,水蒸气而非氧气是导致铝活性下降的原因。

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