THE INFLUENCE OF A VIAL STOPPER ON FLOW AND MASS TRANSFER CONDITIONS INSIDE A VIAL

M. Hriberšek, M. Zadravec, Ziga Casar, J. Ravnik
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引用次数: 2

Abstract

In the process industry, vacuum-type dryers are becoming increasingly important. A special case of vacuum drying is lyophilization, where a solution, containing up to 90% of solvent (typically water), is dried under the conditions of very low temperatures and extremely low system pressures. As a container type, in which the solution is dried, a vial is frequently used. The intensity of drying is to a large extent controlled by the pressure conditions above the drying surface. The vial and the rubber stopper geometry present a significant pressure drop in the flow of sublimated solvent, but are experimentally difficult to determine. In order to produce realistic pressure conditions for the mass transfer computation, a CFD analysis of flow inside the vial-stopper channel is performed. The influence of imposing the no-slip and slip conditions on the solid surfaces on the pressure drop in the system is studied under the typical sublimation conditions. The effect of the increased partial pressure of the solvent on the sublimation rate is calculated by implementing the Maxwell–Stefan diffusion model.
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瓶塞对瓶内流动和传质条件的影响
在过程工业中,真空干燥机变得越来越重要。真空干燥的一种特殊情况是冻干,其中含有高达90%溶剂(通常是水)的溶液在极低温度和极低系统压力的条件下干燥。作为一种容器类型,其中的溶液是干燥的,小瓶是经常使用。干燥的强度在很大程度上是由干燥表面上的压力条件控制的。小瓶和橡胶塞几何形状在升华溶剂的流动中呈现显着的压降,但实验上难以确定。为了给传质计算提供真实的压力条件,对小塞管内的流动进行了CFD分析。在典型升华条件下,研究了固体表面施加无滑移和滑移条件对系统压降的影响。采用麦克斯韦-斯蒂芬扩散模型计算了溶剂分压升高对升华速率的影响。
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