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Hydrogen generation of Al-La-Bi alloy in aqueous inorganic salt solutions

机译:无机盐水溶液中Al-La-Bi合金的氢生成

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摘要

A method for obtaining hydrogen from Al-La-Bi alloy in different solutions was investigated for the production of inexpensive, pure, and safe hydrogen for micro-fuel cells. The hydrogen generation amount and rate could be regulated by changing composition design or salt solutions. Combined with X-ray diffraction (XRD), scanning electron microscopy (SEM) and hydrogen generation experiments, the hydrolysis byproduct La(OH) _3 and inorganic salt solution stimulated the hydrolysis reaction of Al-La-Bi alloy and water, which was mostly based on micro galvanic cell between Al and Bi in the previous work. Increasing La content led to decrease particle size in the milling process which led to large special surface area and contact area of aluminum and water. Using inorganic salt solution such as Na _2SnO _3 solution might produce metal Sn which covered on Al surface and functioned as a cathode of a micro galvanic cell. The Al-13 wt%La-10 wt%Bi alloy yielded 1113 ml/g hydrogen with 100 % efficiency with 60 min at 343 K.
机译:研究了一种在不同溶液中从Al-La-Bi合金中获得氢气的方法,用于生产廉价,纯净,安全的微型燃料电池氢气。可以通过改变组成设计或盐溶液来调节氢的产生量和速率。结合X射线衍射(XRD),扫描电子显微镜(SEM)和制氢实验,水解副产物La(OH)_3和无机盐溶液刺激了Al-La-Bi合金与水的水解反应,其中基于先前工作中Al和Bi之间的微型原电池。 La含量的增加导致研磨过程中粒度的减小,这导致较大的比表面积以及铝与水的接触面积。使用诸如Na _2SnO _3溶液之类的无机盐溶液可能会生成金属Sn,该金属Sn覆盖在Al表面上,并充当微型原电池的阴极。 Al-13 wt%La-10 wt%Bi合金在343 K下以60分钟的效率产生了1113 ml / g的氢气,效率为100%。

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