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Heat and mass transfer scale-up issues during freeze-drying, III: Control and characterization of dryer differences via operational qualification tests

机译:冷冻干燥过程中的传热和传质放大问题,III:通过运行资格测试控制和表征干燥机差异

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摘要

The objective of this research was to estimate differences in heat and mass transfer between freeze dryers due to inherent design characteristics using data obtained from sublimation tests. This study also aimed to provide guidelines for convenient scale-up of the freeze-drying process. Data obtained from sublimation tests performed on laboratory-scale, pilot, and production freeze dryers were used to evaluate various heat and mass transfer parameters: nonuniformity in shelf surface temperatures, resistance of pipe, refrigeration system, and condenser. Emissivity measurements of relevant surfaces such as the chamber wall and the freeze dryer door were taken to evaluate the impact of atypical radiation heat transfer during scale-up. “Hot” and “cold” spots were identified on the shelf surface of different freeze dryers, and the impact of variation in shelf surface temperatures on the primary drying time and the product temperature during primary drying was studied. Calculations performed using emissivity measurements on different freeze dryers suggest that a front vial in the laboratory lyophilizer received 1.8 times more heat than a front vial in a manufacturing freeze dryer operating at a shelf temperature of −25°C and a chamber pressure of 150 mTorr during primary drying. Therefore, front vials in the laboratory are much more atypical than front vials in manufacturing. Steady-state heat and mass transfer equations were used to study a combination of different scaleup issues pertinent during lyophilization cycles commonly used for the freeze-drying of pharmaceuticals.
机译:这项研究的目的是使用从升华测试获得的数据来估算由于固有的设计特性而导致的冷冻干燥机之间的传热和传质差异。这项研究还旨在为方便扩大冷冻干燥工艺提供指导。从实验室规模,中试和生产冷冻干燥机进行的升华测试获得的数据用于评估各种传热和传质参数:架子表面温度的不均匀性,管道的阻力,制冷系统和冷凝器。进行了相关表面(例如室壁和冷冻干燥器门)的发射率测量,以评估放大过程中非典型辐射热传递的影响。在不同的冷冻干燥机的货架表面上识别出“热点”和“冷点”,并研究了货架表面温度变化对初次干燥时间和初次干燥过程中产品温度的影响。在不同的冷冻干燥机上使用发射率测量进行的计算表明,实验室冷冻干燥机中的前瓶接收的热量是制造冷冻干燥机中的前瓶接收的热量的1.8倍,在货架温度为-25°C且腔室压力为150 mTorr时初步干燥。因此,实验室中的前瓶比制造中的前瓶更不典型。稳态传热和传质方程用于研究通常用于药物冷冻干燥的冻干循环期间相关的不同放大问题的组合。

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