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Stabilized microparticle aggregates of oxygen-containing nanoparticles in kerosene for enhanced droplet combustion

机译:煤油中含氧纳米颗粒的稳定微粒聚集体,可增强液滴燃烧

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Metallizing and gelling hydrocarbons has received attention since the 1960s, but slurry fuels utilizing micron particles suffer from long particle burning times and problematic agglomeration. This study investigates single droplet combustion of kerosene with oxygen-containing nanoparticle additives, assembled by electrospray into nitrocellulose (NC)-bound composite "mesoparticle" (MP) structures (on the order of 5 pm). We find significantly improved dispersion properties of these materials compared to unassembled nanoparticles. Droplet combustion is characterized with a free-falling droplet experiment utilizing high speed videography. The MP pre-assembly strategy demonstrated previously by this group to improve burning rate effects and suspension stability of nanoaluminum is extended to oxygen -containing nanoparticles of CuO, KIO4, MgO, and Al2O3 added to kerosene as NC-bound MPs. Burning rate enhancements of up to 40% are seen for CuO and KIO4 MPs. Direct observation of droplet combustion disruptions is used to propose active mechanisms for each additive. (C) 2017 Published by Elsevier Inc. on behalf of The Combustion Institute.
机译:自从1960年代以来,金属化和胶凝化的碳氢化合物就受到了关注,但是利用微米级颗粒的浆状燃料却存在着较长的颗粒燃烧时间和成块问题。这项研究研究了煤油与含氧纳米粒子添加剂的单滴燃烧,通过电喷雾将其组装成硝酸纤维素(NC)结合的复合“中粒子”(MP)结构(约5 pm)。我们发现与未组装的纳米颗粒相比,这些材料的分散性能得到了显着改善。液滴燃烧的特征是利用高速摄像技术进行的自由落体液滴实验。该小组先前证明的提高MP燃烧速率效果和悬浮铝稳定性的MP预组装策略扩展到了含CuO,KIO4,MgO和Al2O3的含氧纳米颗粒,这些颗粒作为NC结合的MP加入煤油中。 CuO和KIO4 MP的燃烧速率提高了40%。直接观察液滴燃烧破坏可为每种添加剂提出活性机制。 (C)2017由Elsevier Inc.代表燃烧研究所出版。

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