首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Process scale-up considerations for non-thermal atmospheric-pressure plasma synthesis of nanoparticles by homogenous nucleation
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Process scale-up considerations for non-thermal atmospheric-pressure plasma synthesis of nanoparticles by homogenous nucleation

机译:通过均质成核来处理非热大气压血浆合成纳米颗粒的扩大考虑因素

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摘要

Scale-up of non-thermal atmospheric-pressure plasma reactors for the synthesis of nanoparticles by homogeneous nucleation is challenging because the active volume is typically reduced to facilitate gas breakdown, enhance discharge stability, and limit particle size and agglomeration, but thus limits throughput. Here, we introduce a dielectric barrier discharge reactor consisting of a coaxial electrode geometry for nanoparticle production that enables a simple scale-up strategy whereby increasing the outer and inner electrode diameters, the plasma volume is increased approximately linearly, while maintaining a sufficiently small electrode gap to maintain the electric field strength. We show with two test reactors that for a given residence time, the nanoparticle production rate increases linearly with volume over a range of precursor concentrations, while having minimal effect on the shape of the particle size distribution. However, our study also reveals that increasing the total gas flow rate in a smaller volume reactor leads to an enhancement of precursor conversion and a comparable production rate to a larger volume reactor. These results suggest that scale-up requires better understanding of the influence of reactor geometry on particle growth dynamics and may not always be a simple function of reactor volume.
机译:通过均匀成核来合成纳米颗粒的非热大气压浆反应器的扩大症是挑战性的,因为通常会降低,以促进气体分解,增强放电稳定性和限制粒度和附聚,但因此限制了产量。这里,我们介绍一个由用于纳米颗粒产生的同轴电极几何形状组成的介质阻挡放电反应器,其能够实现简单的扩大策略,从而增加外部电极和内部电极直径,等离子体体积大致线性增加,同时保持足够小的电极间隙保持电场强度。我们用两个测试反应器显示给定的停留时间,纳米颗粒生产速率随着一系列前体浓度的体积而导致线性增加,同时对粒度分布的形状具有最小的影响。然而,我们的研究还揭示了增加较小体积反应器中的总气体流速导致前体转化的增强和对较大体积反应器的比较生产速率。这些结果表明,扩大规模需要更好地理解反应器几何形状对粒子生长动力学的影响,并且可能并不总是是反应堆体积的简单功能。

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