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Thermal Flow Characteristics of the Triple Plasma Torch System for Nanoparticle Synthesis

机译:纳米粒子合成三重等离子体炬系统的热流特性

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摘要

Triple dc plasma torch system was used for the synthesis of nanoparticles. Three thermal plasma jets are ejected from each plasma torch and they are merged into a strong single plasma plume. Since the feedstock is injected into the jet merging area, this system is suitable for refractory nanoparticle synthesis and enable to high production yield caused by the complete evaporation is possible. In this paper, numerical simulation was carried out to analyze thermal plasma characteristic inside a reactor according to the plasma-forming gas and carrier gas compositions: Ar, Ar-H-2, and Ar-N-2 plasma; Ar, He, and N-2 carrier gas. Then, it was comparatively interpreted with the actually synthesized nanoparticle in order to understand the condensation process of nanoparticles. It was revealed that the thermal environment is able to control readily in the triple torch system by the operating condition depending on the target materials.
机译:三重直流等离子体炬系统用于合成纳米粒子。从每个等离子炬中喷出三个热等离子流,它们合并成一个坚固的单等离子羽流。由于将原料注入到射流合并区,因此该系统适用于难熔的纳米粒子合成,并可以通过完全蒸发而实现高产量。本文根据形成等离子体的气体和载气的组成:Ar,Ar-H-2和Ar-N-2等离子体;进行了数值模拟,以分析反应器内部的热等离子体特性。 Ar,He和N-2载气。然后,将其与实际合成的纳米粒子进行比较解释,以了解纳米粒子的缩合过程。揭示了根据目标材料,通过操作条件在三炬炬系统中热环境能够容易地控制。

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