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Studies on microstructure of activated aluminum and its hydrogen generation properties in aluminum/water reaction

机译:铝/水反应中活性铝的微观结构及其产氢性能的研究

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Aluminum is a prospective material,for hydrogen generation during metal/water reaction due to its high efficiency (1.241 of H-2 from 1 g of Al), availability, low price, and safety. To realize its reactivity towards water at ambient conditions the metal activation is needed. The samples of aluminum activated by Ga-In alloy (70:30 wt%) at low-energy (LE) and high-energy (HE) treatment are considered. HE treatment (mechanochemical activation of aluminum in ball mill) allows to get high reactivity powders having H2 generation rate in two orders of magnitude higher than for LE-activated aluminum. The values of activation energy for reactions of activated aluminum with water were calculated: E-a = 55 +/- 5 kJ/mol for LE-activated aluminum; E-a = 35 +/- 5 kJ/mol for HE-activated aluminum. The microstructure and composition of the samples of activated aluminum were determined by means of scanning electron microscope with energy dispersive X-ray spectrometer, differential scanning calorimeter and X-ray powder diffraction method. The depth profiles of the activated aluminum components have been measured by Auger electron spectroscopy. Possible mechanism of aluminum/activator interaction was proposed. (C) 2016 Elsevier B.V. All rights reserved.
机译:铝是一种潜在的材料,由于其高效率(1 g Al中的H-2为1.241),可用性,低廉的价格和安全性,在金属/水反应过程中会产生氢气。为了实现其在环境条件下对水的反应性,需要金属活化。考虑了Ga-In合金(70:30 wt%)在低能(LE)和高能(HE)处理下活化的铝样品。 HE处理(在球磨机中对铝进行机械化学活化)可以得到高活性粉末,其H2生成速率比LE活化铝高出两个数量级。计算活化铝与水反应的活化能值:LE活化铝的E-a = 55 +/- 5 kJ / mol;对于HE活化的铝,E-a = 35 +/- 5 kJ / mol。用扫描电子显微镜,能量色散X射线能谱仪,差示扫描量热仪和X射线粉末衍射法测定了活性铝样品的显微组织和组成。活性铝组分的深度分布已经通过俄歇电子能谱法测量。提出了铝/活化剂相互作用的可能机理。 (C)2016 Elsevier B.V.保留所有权利。

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