首页> 外文会议>Energy Nanotechnology International Conference; 20070905-07; Santa Clara,CA(US) >THE EFFECTS OF PARTICLE SIZE, MORPHOLOGY, AND MASS LOADING ON THE REACTIVITY OF NANOCATALYTIC PARTICLES
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THE EFFECTS OF PARTICLE SIZE, MORPHOLOGY, AND MASS LOADING ON THE REACTIVITY OF NANOCATALYTIC PARTICLES

机译:颗粒大小,形态和质量负荷对纳米催化颗粒反应性的影响

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摘要

Nanocatalytic particles of Gold (Au), Platinum (Pt), and Palladium (Pd) are highly reactive at room-temperature and can be used to generate heat in micro-scale devices for portable power generation. No pre-heating is required for light-off and high steady-state operating temperatures can be sustained with high density alcohol-air premixtures. Preliminary experiments conducted in our lab and those reported by Hu and co-workers at Oak Ridge National Lab have measured peak operating temperatures ~ 300 - 500 degrees Celsius using near-stoichiometric methanol/air and ethanol/air premixtures at ambient initial temperature and atmospheric pressure. The effect of particle size, morphology, mass loading, and flow residence time are reported for different mixture stoichiometries. Temperature measurements and gas species analyses are also tabulated. Interestingly, smaller particles were observed to be less reactive than larger particles for the same mass loadings for select conditions. Materials characterization of the particles has also been conducted to characterize the specific surface area of the catalyst and evaluate the importance of particle sintering, morphology changes, and particle distribution.
机译:金(Au),铂(Pt)和钯(Pd)的纳米催化颗粒在室温下具有高反应活性,可用于在微型设备中产生热量,以进行便携式发电。起燃不需要预热,并且高密度的醇-空气预混合物可以维持较高的稳态工作温度。我们实验室进行的初步实验以及胡和橡树岭国家实验室的同事所报告的实验,已在环境初始温度和大气压下使用接近化学计量的甲醇/空气和乙醇/空气预混合物测量了峰值工作温度〜300-500摄氏度。对于不同的化学计量比,报告了粒径,形态,质量负载和流动停留时间的影响。温度测量和气体种类分析也被制成表格。有趣的是,对于选择的条件,在相同的质量负载下,观察到较小的颗粒比较大的颗粒具有较小的反应性。还已经进行了颗粒的材料表征以表征催化剂的比表面积并评估了颗粒烧结,形态变化和颗粒分布的重要性。

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