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Process analysis of fluidized bed granulation

机译:流化床制粒工艺分析

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摘要

This study assesses the fluidized bed granulation process for the optimization of a model formulation using in-line near-infrared (NIR) spectroscopy for moisture determination. The granulation process was analyzed using an automated granulator and optimization of the verapamil hydrochloride formulation was performed using a mixture design. The NIR setup with a fixed wavelength detector was applied for moisture measurement. Information from other process measurements, temperature difference between process inlet air and granules (Tdiff), and water content of process air (AH), was also analyzed. The application of in-line NIR provided information related to the amount of water throughout the whole granulation process. This information combined with trend charts of Tdiff and AH enabled the analysis of the different process phases. By this means, we can obtain in-line documentation from all the steps of the processing. The choice of the excipient affected the nature of the solid-water interactions; this resulted in varying process times. NIR moisture measurement combined with temperature and humidity measurements provides a tool for the control of water during fluid bed granulation.
机译:这项研究评估了流化床制粒工艺,以使用在线近红外(NIR)光谱确定水分,从而优化了模型配方。使用自动制粒机分析制粒过程,并使用混合物设计对维拉帕米盐酸盐配方进行优化。将具有固定波长检测器的NIR设置用于水分测量。还分析了来自其他过程测量的信息,过程进气和颗粒之间的温差(Tdiff)以及过程空气中的水分(AH)。在线NIR的应用提供了与整个制粒过程中的水量有关的信息。该信息与Tdiff和AH的趋势图相结合,可以分析不同的工艺阶段。通过这种方式,我们可以从处理的所有步骤中获取在线文档。赋形剂的选择影响了固水相互作用的性质。这导致了不同的处理时间。近红外水分测量与温度和湿度测量相结合,为流化床制粒过程中的水控制提供了一种工具。

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