GEA-NUS Pharmaceutical Processing Research Laboratory, Department of Pharmacy, National University of Singapore, 18 Science Drive 4, Singapore, 117543, Singapore.
Pharm Res. 2010 May;27(5):756-66. doi: 10.1007/s11095-009-0046-5. Epub 2010 Mar 5.
This study aims to classify annular bed flow patterns in the bottom spray fluid bed coating process, study their influence on coat uniformity and investigate the feasibility of developing real-time annular bed flow pattern detection as a PAT tool.
High-speed imaging and particle image velocimetry were used to visualize annular bed flow. Color coating and subsequent tristimulus colorimetry were employed to determine influence of annular bed flow pattern on coat uniformity. Feasibility of monitoring annular bed flow pattern through an observation window was tested using miniaturized particle velocity field and time series particle velocity orientation information.
Three types of annular bed flow patterns were identified. Plug flow gave the best coat uniformity followed by global and localized fluidization. Plug flow may be advantageous for high spray-rate conditions, large-scale coating and prevention of particle segregation. Plug flow could be differentiated from the other flow patterns through a simulated observation window.
Annular bed flow patterns were classified and found to influence particle coat uniformity noticeably. Availability of annular bed flow information for large-scale coaters would enable adjustments for process optimization. This study highlights the potential of monitoring annular bed flow pattern as a PAT tool.
本研究旨在对底部喷雾流化床包衣过程中的环形床流型进行分类,研究其对涂层均匀性的影响,并探讨开发实时环形床流型检测作为 PAT 工具的可行性。
高速摄像和粒子图像测速用于可视化环形床流。采用彩色涂层,随后进行三刺激值比色法,以确定环形床流型对涂层均匀性的影响。通过小型化的粒子速度场和时间序列粒子速度方向信息,测试通过观察窗监测环形床流型的可行性。
确定了三种类型的环形床流型。塞流的涂层均匀性最佳,其次是整体流化和局部流化。塞流可能有利于高喷雾速率条件、大规模涂层和防止颗粒分离。通过模拟观察窗可以将塞流与其他流型区分开来。
对环形床流型进行了分类,发现其对颗粒涂层均匀性有显著影响。为大型包衣机提供环形床流信息将能够进行工艺优化调整。本研究强调了将监测环形床流型作为 PAT 工具的潜力。