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Characteristics of spray flames and the effect of group combustion on the morphology of flame-made nanoparticles

机译:喷雾火焰的特性和团簇燃烧对火焰纳米颗粒形貌的影响

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摘要

Characteristics of burning and non-burning sprays generated by a coaxial air-assist nozzle, previously used for the synthesis of ceramic nanoparticles by flame spray pyrolysis (FSP), are studied using phase Doppler anemometry. Also, the effect of droplet interaction on the overall combustion behavior of the spray (group combustion) and, consequently, on the characteristics of flame-made ceramic particles is investigated. A physical model is proposed which correlates the formation of inhomogeneous mixtures of micron-sized hollow particles and solid nanoparticles to the combustion mode: the precursor droplets which entirely evaporate in the hot flame are responsible for the formation of nanoparticles. The vapor species react, forming intermediate and product molecules and clusters that quickly grow to nanosized ceramic particles. On the other hand, under certain conditions, a small number of the droplets, particularly with large initial sizes, escape from the spray boundaries and become extinguished, producing large hollow ceramic particles. It is also possible that some of the large droplets, which lie within the spray core, do not entirely evaporate. These surviving droplets then form large particles which are usually hollow but can collapse to solid particles at sufficiently high temperatures. Also, a criterion for the formation of homogeneous ceramic nanoparticles is presented.
机译:使用相位多普勒风速仪研究了同轴空气辅助喷嘴产生的燃烧和非燃烧喷雾的特性,该特性以前用于通过火焰喷雾热解法(FSP)合成陶瓷纳米颗粒。此外,还研究了液滴相互作用对喷雾整体燃烧行为(群燃烧)的影响,并因此对火焰陶瓷颗粒的特性产生了影响。提出了一种物理模型,该模型将微米级中空颗粒和固体纳米颗粒的不均匀混合物的形成与燃烧模式相关:在热火焰中完全蒸发的前体液滴负责纳米颗粒的形成。蒸气物质发生反应,形成中间分子和产物分子以及簇,这些簇和簇迅速生长为纳米尺寸的陶瓷颗粒。另一方面,在某些条件下,少量的液滴,特别是初始尺寸较大的液滴,从喷雾边界逸出并熄灭,从而产生大的空心陶瓷颗粒。位于喷芯内的一些大液滴也有可能没有完全蒸发掉。然后,这些幸存的液滴形成通常为空心的大颗粒,但在足够高的温度下会坍塌成固体颗粒。此外,提出了形成均质陶瓷纳米颗粒的标准。

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