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使用红外摄像机监测和建模批量冷冻干燥过程的温度/终点。

Temperature/end point monitoring and modelling of a batch freeze-drying process using an infrared camera.

机构信息

Dipartimento di Scienza Applicata e Tecnologia, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Turin, Italy.

Dipartimento di Scienza Applicata e Tecnologia, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Turin, Italy.

出版信息

Eur J Pharm Biopharm. 2021 Jan;158:113-122. doi: 10.1016/j.ejpb.2020.10.023. Epub 2020 Nov 7.

Abstract

Temperature monitoring and accurate drying end time determination are crucial for final product quality in vacuum freeze-drying of pharmaceuticals. Whether crystalline or amorphous solutes are used in the formulation, product temperature during ice sublimation should be kept below a threshold limit to avoid damage to the product structure. Hence, there is a need to continuously monitor product temperature throughout this process. Current monitoring tools, such as thermocouples and Pirani gauge pressure sensors, have several limitations such as affecting product dynamics or imprecise end point determination. In this work, a monitoring tool based on infrared (IR) thermography is used for batch freeze-drying processes. Batches using three different vial sizes, with up to 157 vials, were studied, allowing to extend and better describe the representativeness of IR thermography for this application. The detailed axial temperature profiles obtained through IR imaging allowed not only a comprehensive non-invasive temperature monitoring of the product, but also tracking of the sublimation interface. IR temperature measurements and primary drying end point determination were compared to standard methods and thus verified. Parameters important for freeze drying design space calculation, namely the global heat coefficient (K) and cake resistance to vapor flow (R), were also accurately estimated with the proposed method.

摘要

在药物的真空冷冻干燥中,温度监测和准确的干燥终点确定对于最终产品质量至关重要。无论配方中使用结晶性还是无定形溶质,冰升华过程中的产品温度都应保持在低于阈值的水平,以避免产品结构受损。因此,需要在整个过程中持续监测产品温度。当前的监测工具,如热电偶和皮拉尼计压力传感器,存在一些限制,例如影响产品动力学或不准确的终点确定。在这项工作中,使用基于红外(IR)热成像的监测工具来进行批量冷冻干燥过程。研究了三种不同瓶大小的批次,最多有 157 个瓶子,这使得 IR 热成像在该应用中的代表性得到了扩展和更好的描述。通过 IR 成像获得的详细轴向温度曲线不仅允许对产品进行全面的非侵入式温度监测,还可以跟踪升华界面。IR 温度测量和初步干燥终点的确定与标准方法进行了比较,从而得到了验证。对于冷冻干燥设计空间计算很重要的参数,即全局热系数(K)和蛋糕对蒸汽流动的阻力(R),也可以通过该方法准确估计。

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