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Synthesis of aluminum nanoparticles as additive to enhance ignition and combustion of high energy density fuels

机译:合成铝纳米粒子作为添加剂以增强高能量密度燃料的着火和燃烧

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High energy density fuels are critical for hypersonic aerospace propulsion but suffer from difficulties of ignition delay and incomplete combustion. This research reports aluminum nanoparticles (Al NPs) assisted ignition and combustion of high energy density JP-10 fuel. Al NPs with a size of 16 nm were fabricated through a mild and simple method by decomposing AlH3Et2O with the addition of a surfactant ligand. The uniform size distribution, nanoscaled size and surface ligand make Al NPs stably suspend in JP-10, with 80% NPs being dispersed in the liquid fuel after six months. A shock tube test shows that the presence of 1 wt-% Al NPs can significantly shorten ignition delay time at temperature of 1500 to 1750 K, promote the combustion, and enhance energy release of JP-10. This work demonstrates the potential of Al NPs as ignition and combustion additive for high energy density fuel in hypersonic applications.
机译:高能量密度燃料对高超音速航空航天推进至关重要,但存在着点火延迟和不完全燃烧的困难。这项研究报告了铝纳米颗粒(Al NPs)辅助点火和燃烧高能量密度的JP-10燃料。通过温和简单的方法,通过添加表面活性剂配体分解AlH3Et2O,可以制备出大小为16 nm的Al NP。均匀的尺寸分布,纳米级尺寸和表面配体使Al NPs稳定地悬浮在JP-10中,六个月后80%NPs分散在液体燃料中。冲击管测试表明,存在1 wt%的Al NP可以显着缩短1500至1750 K温度下的点火延迟时间,促进燃烧,并增强JP-10的能量释放。这项工作证明了铝纳米颗粒作为高超声速应用中高能量密度燃料的点火和燃烧添加剂的潜力。

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