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Oxidation, ignition, and combustion of Al-I_2 composite powders

机译:Al-I_2复合粉末的氧化,燃烧和燃烧

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Materials combining high energy density of metals with the biocidal activity of halogens are of interest for applications aiming to inactivate harmful aerosolized microorganisms by combined thermal and chemical effects. This effort develops nanocomposite Al-halogen materials to replace pure Al as a fuel additive in energetic formulations. Cryogenic milling of elemental aluminum and iodine is used to prepare powder-like composite materials for laboratory tests. In such materials, iodine is stabilized in aluminum matrix and is released when the materials are heated and ignited. All2 composite powders with the iodine concentration from 10 to 30 wt.% were prepared. Iodine release by and oxidation of such materials were investigated using thermo-gravimetric analysis. Ignition temperatures of the prepared powders were determined at the heating rates of 1000-22,000 K/s using an electrically heated filament. Composite powders ignite at lower temperatures compared to pure Al powders. Combustion characteristics of the prepared materials were investigated using a constant volume explosion test for aerosolized powders and laser ignition test for individual particles. In both combustion experiments pure Al served as a reference. Higher combustion rate and greater total pressure were observed for the aerosolized clouds of composite powders with 15 and 20 wt.% of iodine. For individual particles, the burn times were slightly longer and flame temperatures were slightly lower compared to those of pure aluminum. Both overall iodine concentration and its stability in the composite powders affected their ignition and combustion characteristics.
机译:将金属的高能量密度与卤素的生物杀灭活性结合在一起的材料对于旨在通过热和化学作用的结合使有害的气溶胶化微生物失活的应用中非常有用。这项工作开发了纳米复合铝卤化物材料,以替代纯铝作为高能配方中的燃料添加剂。元素铝和碘的低温研磨用于制备粉末状复合材料,用于实验室测试。在这种材料中,碘稳定在铝基质中,并在加热和点燃材料时释放出来。制备碘浓度为10至30重量%的全部2种复合粉末。使用热重分析法研究了这种材料释放出的碘和氧化了碘。使用电加热的灯丝以1000-22,000 K / s的加热速率测定所制备粉末的着火温度。与纯铝粉相比,复合粉在较低的温度下点燃。使用恒容爆炸试验对气溶胶粉末和激光点火试验对单个颗粒进行了研究,研究了所制备材料的燃烧特性。在两个燃烧实验中,纯铝都作为参考。对于具有15和20重量%的碘的复合粉末的气雾化,观察到更高的燃烧速率和更大的总压力。与纯铝相比,单个颗粒的燃烧时间略长,火焰温度略低。复合粉末中的总碘浓度及其稳定性都会影响其着火和燃烧特性。

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