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首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Fast freeze-drying cycle design and optimization using a PAT based on the measurement of product temperature
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Fast freeze-drying cycle design and optimization using a PAT based on the measurement of product temperature

机译:基于产品温度测量,使用PAT的快速冷冻干燥循环设计和优化

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摘要

This paper is focused on the use of an innovative Process Analytical Technology for the fast design and optimization of freeze-drying cycles for pharmaceuticals. The tool is based on a soft-sensor, a device that uses the experimental measure of product temperature during freeze-drying, a mathematical model of the process, and the Extended Kalman Filter algorithm to estimate the sublimation flux, the residual amount of ice in the vial, and some model parameters (heat and mass transfer coefficients). The accuracy of the estimations provided by the soft-sensor has been shown using as test case aqueous solutions containing different excipients (sucrose, polyvinylpyrrolidone), processed at various operating conditions, pointing out that the soft-sensor allows a fast estimation of model parameters and product dynamics without involving expensive hardware or time consuming analysis.The possibility of using the soft-sensor to calculate in-line (or off-line) the design space of the primary drying phase is here presented and discussed. Results evidences that by this way, it is possible to identify the values of the heating fluid temperature that maintain product temperature below the limit value, as well as the operating conditions that maximize the sublimation flux. Various experiments have been carried out to test the effectiveness of the proposed approach for a fast design of the cycle, evidencing that drying time can be significantly reduced, without impairing product quality.
机译:本文专注于采用创新过程分析技术,以便对药品进行快速设计和优化冷冻干燥循环。该工具基于软传感器,一种使用冻干期间产品温度的实验措施的装置,该过程的数学模型以及扩展的卡尔曼滤波算法来估计升华通量,冰块的剩余量小瓶和一些模型参数(热量和传质系数)。通过在各种操作条件下处理的含有不同赋形剂(蔗糖,聚乙烯吡咯烷酮)的测试壳水溶液,用作含有不同赋形剂(蔗糖,聚乙烯吡咯烷酮)的测试壳水溶液,指出软传感器允许快速估计模型参数和模型参数的快速估计产品动态而不涉及昂贵的硬件或耗时的分析。使用软传感器计算在线(或离线)的可能性在此提出并讨论了初级干燥阶段的设计空间。结果证明,通过这种方式,可以识别维持在极限值以下的产品温度的加热流体温度的值,以及最大化升华通量的操作条件。已经进行了各种实验来测试所提出的方法的效果,以便快速设计循环,证明干燥时间可以显着降低,而不会损害产品质量。

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