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Evaluation of Heat Flux Measurement as a New Process Analytical Technology Monitoring Tool in Freeze Drying

热电偶 热流密度 焊剂(冶金) 传热 热力学 传热系数 温度测量 材料科学 冷冻干燥 显热 化学 色谱法 复合材料 冶金 物理
作者
Ilona Vollrath,Victoria Pauli,Wolfgang Frieß,Angelika Freitag,Andrea Hawe,Gerhard Winter
出处
期刊:Journal of Pharmaceutical Sciences [Elsevier BV]
卷期号:106 (5): 1249-1257 被引量:17
标识
DOI:10.1016/j.xphs.2016.12.030
摘要

This study investigates the suitability of heat flux measurement as a new technique for monitoring product temperature and critical end points during freeze drying. The heat flux sensor is tightly mounted on the shelf and measures non-invasively (no contact with the product) the heat transferred from shelf to vial. Heat flux data were compared to comparative pressure measurement, thermocouple readings, and Karl Fischer titration as current state of the art monitoring techniques. The whole freeze drying process including freezing (both by ramp freezing and controlled nucleation) and primary and secondary drying was considered. We found that direct measurement of the transferred heat enables more insights into thermodynamics of the freezing process. Furthermore, a vial heat transfer coefficient can be calculated from heat flux data, which ultimately provides a non-invasive method to monitor product temperature throughout primary drying. The end point of primary drying determined by heat flux measurements was in accordance with the one defined by thermocouples. During secondary drying, heat flux measurements could not indicate the progress of drying as monitoring the residual moisture content. In conclusion, heat flux measurements are a promising new non-invasive tool for lyophilization process monitoring and development using energy transfer as a control parameter.
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