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Analytical estimation of particle shape formation parameters in a plasma-chemical reactor

机译:等离子体化学反应器中颗粒形状形成参数的分析估计

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Analytical estimation of particle shape formation parameters in a plasma-chemical reactor implementing the process of thermochemical decomposition of liquid droplet agents (precursors) in the flow of a high-temperature gaseous heat-transfer medium was obtained. The basic factor which determines the process is the increase of concentration of a dissolved salt precursor component at the surface of a liquid particle due to solvent evaporation. According to the physical concept of the method of integral balance the diffusion process of concentration change is divided into two stages: the first stage is when the size of gradient layer does not reach the center of a spherical droplet and the second stage when the concentration at the center of a liquid droplet begins to change. The solutions for concentration fields were found for each stage using the method of integral balance taking into account the formation of salt precipitate when the concentration at the surface of the droplet reaches certain equilibrium value. The results of estimation of the influence of various reactor operation parameters and characteristics of initial solution (precursor) on the morphology of particles formed – mass fraction and localization of salt precipitate for various levels of evaporation.
机译:对进行高温气态传热介质流动中的液滴剂(前体)进行热化学分解的等离子体化学反应器中的颗粒形状形成参数进行了分析估算。决定该过程的基本因素是由于溶剂蒸发导致液体颗粒表面溶解的盐前体组分浓度增加。根据积分平衡法的物理概念,浓度变化的扩散过程分为两个阶段:第一阶段是当梯度层的大小未达到球形液滴中心时,第二阶段是当浓度为液滴的中心开始改变。使用积分平衡的方法,考虑了液滴表面的浓度达到一定平衡值时盐沉淀的形成,针对每个阶段找到了浓度场的解决方案。估算各种反应堆运行参数和初始溶液(前体)特性对所形成颗粒形态(质量分数和各种蒸发水平下的盐析出物的局部分布)的影响的结果。

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