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How vial geometry variability influences heat transfer and product temperature during freeze-drying

机译:样品瓶几何形状变化如何影响冷冻干燥期间的传热和产品温度

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摘要

Vial design features can play a significant role in heat transfer between the shelf and the product and, consequently, in the final quality of the freeze-dried product. Our objective was to investigate the impact of the variability of some geometrical dimensions of a set of tubing vials commonly used for pharmaceuticals production on the distribution of the vial heat transfer coefficients (Kv) and its potential consequence on product temperature. Sublimation tests were carried out using pure water and 8 combinations of chamber pressure (4-50 Pa) and shelf temperature ( 40C and 0C) in 2 freeze-dryers. Kv values were individually determined for 100 vials located in the center of the shelf. Vial bottom curvature depth and contact area between the vial and the shelf were carefully measured for 120 vials and these data were used to calculate Kv distribution due to variability in vial geometry. At low pressures commonly used for sensitive products (below 10 Pa), the vial-shelf contact area appeared crucial for explaining Kv heterogeneity and was found to generate, in our study, a product temperature distribution of approximately 2C during sublimation. Our approach provides quantitative guidelines for defining vial geometry tolerance specifications and product temperature safety margins.
机译:样品瓶的设计特征可在架子和产品之间的热传递中发挥重要作用,因此,在冻干产品的最终质量中也可以发挥重要作用。我们的目标是研究通常用于药品生产的一组管形瓶的某些几何尺寸的可变性对瓶形传热系数(Kv)的分布及其对产品温度的潜在影响。在2台冻干机中,使用纯净水和8个腔室压力(4-50 Pa)和搁板温度(40C和0C)的组合进行升华测试。分别确定了位于货架中央的100个样品瓶的Kv值。仔细测量了120个样品瓶的样品瓶底部曲率深度和接触面积,这些数据由于样品瓶几何形状的变化而用于计算Kv分布。在通常用于敏感产品的低压(低于10 Pa)下,样品瓶与样品架的接触面积对于解释Kv的异质性至关重要,并且在我们的研究中发现该样品在接触升华过程中会产生大约2C的产品温度分布。我们的方法为定义样品瓶几何尺寸公差规格和产品温度安全裕度提供了定量指导。

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