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Impacts of Particle Size and Pressure on Reactivity of Boron Oxidation

机译:粒径和压力对硼氧化反应性的影响

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Thermogravimetric measurements were conducted on the oxidation of boron particles to elucidate the influence of particle size and pressure on the reaction process and mechanism. The experimental results showed that the initial temperature increased slightly as the particle size of boron powder increased and increased greatly as the total ambient pressure decreased. The boron oxide covering on the surface of the boron particles had a significant effect on the reactivity of the boron powder. For the particles in the studied size range, the reaction efficiency showed an incremental trend as the particle size increased. High pressure could decrease the reaction efficiency greatly because the evaporation rate of boron oxide would slow down as the ambient pressure increased. Furthermore, it was found that the effect of O_2 partial pressure on the reaction efficiency was not only related to the total ambient pressure but also to the O_2 mole fraction. Both a higher O_2 mole fraction and smaller ambient pressure were favorable for oxidation efficiency. The experimental results also revealed that boron particles with a smaller size or at high pressure had relatively low effective activation energy.
机译:对硼颗粒的氧化进行热重分析,以阐明颗粒大小和压力对反应过程和机理的影响。实验结果表明,随着硼粉粒径的增加,初始温度略有升高;随着总环境压力的降低,初始温度也大大提高。覆盖在硼颗粒表面上的氧化硼对硼粉的反应性具有显着影响。对于所研究尺寸范围内的颗粒,随着颗粒尺寸的增加,反应效率显示出增加的趋势。高压会大大降低反应效率,因为随着环境压力的增加,氧化硼的蒸发速度会降低。此外,发现O 2分压对反应效率的影响不仅与总环境压力有关,而且与O 2摩尔分数有关。较高的O_2摩尔分数和较小的环境压力均有利于氧化效率。实验结果还表明,较小尺寸或处于高压下的硼颗粒具有相对较低的有效活化能。

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  • 来源
    《Journal of propulsion and power》 |2013年第5期|1207-1213|共7页
  • 作者单位

    Zhejiang University, 310027 Hangzhou, People's Republic of China,Key State Laboratory of Clean Energy Utilization;

    Zhejiang University, 310027 Hangzhou, People's Republic of China,Key State Laboratory of Clean Energy Utilization;

    Zhejiang University, 310027 Hangzhou, People's Republic of China,Key State Laboratory of Clean Energy Utilization;

    Zhejiang University, 310027 Hangzhou, People's Republic of China,Key State Laboratory of Clean Energy Utilization;

    Zhejiang University, 310027 Hangzhou, People's Republic of China,Key State Laboratory of Clean Energy Utilization;

    Zhejiang University, 310027 Hangzhou, People's Republic of China;

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