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Activation Energy for the Corrosion of Aluminum Powders in Water

机译:铝粉在水中腐蚀的活化能

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摘要

The self passivation of aluminum in water generally prevents the generation of hydrogen from an aluminum-water reaction, in conditions preferred for portable systems. However, the potential for corroding aluminum to produce quantities of hydrogen at a lower total system mass compared to compressed storage tanks is spurring research into accelerating aluminum corrosion by ball milling, and mixing with other powders. This allows commercially useful amounts of hydrogen to be generated at moderate temperatures and neutral pH regions. To further study the mechanism behind the increased rate, the activation energies were calculated for hydrogen evolution from pure aluminum, aluminum that had been ball milled, and aluminum mixed with alumina powder. Overall, aluminum that is in contact with higher amounts of aluminum hydroxide, either grown or added, showed a drop in activation energy from approximately 80 kJ/mole down to 24 kJ/mole.
机译:在便携式系统优选的条件下,铝在水中的自钝化通常可防止铝与水的反应产生氢。但是,与压缩储罐相比,腐蚀铝以较低的总系统质量产生氢气的潜力正推动着通过球磨加速铝腐蚀以及与其他粉末混合的研究。这允许在中等温度和中性pH范围内产生商业上有用量的氢气。为了进一步研究提高速率背后的机理,计算了从纯铝,球磨铝和铝与氧化铝粉混合中析出氢的活化能。总体而言,与生长或添加的更高量的氢氧化铝接触的铝显示出活化能从约80 kJ / mol下降至24 kJ / mol。

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  • 来源
  • 会议地点 Boston MA(US)
  • 作者

    J. Skrovan;

  • 作者单位

    Department of Mechanical Engineering, King Fahd University Of Petroleum Minerals, Dhahran, 31261, Saudi Arabia;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
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