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Oxidation kinetics of micron-sized aluminum powder in high-temperature boiling water

机译:微米级铝粉在高温沸水中的氧化动力学

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摘要

A new efficient method of hydrogen, heat and aluminum oxide/hydroxide co-production is proposed. Only micron-sized aluminum powder (without any chemical activation) and usual water are used as initial reagents. For aluminum to be effectively oxidized, water is converted into the high-temperature boiling state that creates high pressure inside oxidation reactor. Paper describes the oxidation kinetics of aluminum micron powder in high-temperature boiling water depending on powder size and reactor temperature (pressure). Kinetic experiments were carried out using four types of aluminum powders with different dispersity. Due to kinetic experiments it was established that micron-sized aluminum powder intensively oxidizes in boiling water at temperatures above 230 ℃. Aluminum powders with average particle size of 4.1 μm, 7.2 μm and 22.5 μm were fully oxidized at 296 ℃, 308 ℃ and 350 ℃ respectively. Aluminum powder with average particle size of 77.5 μm after 10 min staying under about 364 ℃ was 95% oxidized. Reaction times for 4.1 μm, 7.2 μm and 22.5 μm aluminum powders decreased from 870 s at 237 ℃ to 33 s at 359 ℃, from 800 s at 273 ℃ to 41s at 355 ℃ and from 780 s at 286 ℃ to 66 s at 350 ℃ respectively. Aluminum oxidation product X-ray analysis showed that aluminum oxidized to aluminum hydroxide AlOOH - boehmite. Microstructure analysis showed that micron-sized aluminum powder oxidation product represents nano-sized aluminum hydroxide.
机译:提出了一种新的氢,热和氧化铝/氢氧化物联产的有效方法。仅将微米级的铝粉(无任何化学活化)和普通水用作初始试剂。为了有效地氧化铝,水会转变成高温沸腾状态,从而在氧化反应器内部产生高压。论文描述了铝微粉在高温沸水中的氧化动力学,取决于粉的大小和反应器温度(压力)。使用四种具有不同分散度的铝粉进行了动力学实验。通过动力学实验,可以确定微米级的铝粉在230℃以上的沸水中能强烈氧化。平均粒径分别为4.1μm,7.2μm和22.5μm的铝粉分别在296℃,308℃和350℃下被完全氧化。在约364℃下停留10分钟后,平均粒径为77.5μm的铝粉被氧化95%。 4.1μm,7.2μm和22.5μm铝粉的反应时间从237℃的870 s减少到359℃的33 s,从273℃的800 s缩短到355℃的41 s,从286℃的780 s缩短到350℃的66 s ℃分别。铝氧化产物的X射线分析表明,铝被氧化成氢氧化铝AlOOH-勃姆石。显微组织分析表明,微米级的铝粉氧化产物代表纳米级的氢氧化铝。

著录项

  • 来源
    《International journal of hydrogen energy》 |2011年第11期|p.6484-6495|共12页
  • 作者单位

    The Joint Institute for High Temperatures, Ijorskaya st. 13/2, 125412 Moscow, Russia;

    The Joint Institute for High Temperatures, Ijorskaya st. 13/2, 125412 Moscow, Russia;

    The Joint Institute for High Temperatures, Ijorskaya st. 13/2, 125412 Moscow, Russia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    aluminum; hydrogen; water steam; boehmite;

    机译:铝;氢;水蒸气勃姆石;

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