首页> 外文期刊>International Journal of Heat and Mass Transfer >A Mathematical Model For The Spray Freeze Drying Process: The Drying Of Frozen Particles In Trays And In Vials On Trays
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A Mathematical Model For The Spray Freeze Drying Process: The Drying Of Frozen Particles In Trays And In Vials On Trays

机译:喷雾冷冻干燥过程的数学模型:干燥托盘中和托盘中小瓶中的冷冻颗粒

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摘要

A mathematical model is presented that can be used to study the heat and mass transfer mechanisms that determine the dynamic behavior of the primary and secondary drying stages of spray freeze drying (freeze drying of particle based materials) in trays and in vials on trays. Simulation results indicate that particle based materials require longer primary drying times than solution based materials (conventional freeze drying) due to (a) reductions in the heat and mass transfer capabilities of particle based materials, and (b) the development of a secondary porous dried layer near the surface of the lower heating plate during the primary drying stage of the spray freeze drying process. The results of spray freeze drying for the systems studied in this work indicate that the drying rate during the primary drying stage increases as (ⅰ) the product height decreases, (ⅱ) the particle diameter increases, and (ⅲ) the value of the packing porosity increases. The mathematical model presented in this work is considered to offer a necessary and essential capability that could be used for the design, optimization, and control of the spray freeze drying process as well as of a process involving the drying of frozen particles in packed beds.
机译:提出了可用于研究传热和传质机制的数学模型,该传热和传质机制确定了托盘和托盘中小瓶中喷雾冷冻干燥(基于颗粒的材料的冷冻干燥)的一级和二级干燥阶段的动态行为。仿真结果表明,基于颗粒的材料比基于溶液的材料(常规冷冻干燥)需要更长的一次干燥时间,这是因为(a)降低了基于颗粒的材料的传热和传质能力,以及(b)二次多孔干燥的发展在喷雾冷冻干燥过程的初次干燥阶段,在下部加热板表面附近形成一层涂层。这项工作中所研究系统的喷雾冷冻干燥结果表明,随着(drying)产品高度的降低,(ⅱ)粒径的增加和(ⅲ)填料的值,初次干燥阶段的干燥速率增加。孔隙率增加。这项工作中提出的数学模型被认为提供了必要的和必不可少的功能,可用于设计,优化和控制喷雾冷冻干燥过程以及涉及干燥填充床中冷冻颗粒的过程。

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