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Particle Size, Moisture, and Fluidization Variations Described by Indirect In-line Physical Measurements of Fluid Bed Granulation

机译:通过流化床造粒的间接在线物理测量描述的粒度,水分和流化变化

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摘要

The aim of this study was to evaluate an instrumentation system for a bench scale fluid bed granulator to determine the parameters expressing the changing conditions during the spraying phase of a fluid bed process. The study focused mainly on four in-line measurements (dependent variables): fluidization parameter (calculated by inlet air flow rate and rotor speed), pressure difference over the upper filters, pressure difference over the granules (lower filter), and temperature of the fluidizing mass. In-line particle size measured by the spatial filtering technique was an essential predictor variable. Other physical process measurements of the automated granulation system, 25 direct and 12 derived parameters, were also utilized for multivariate modeling. The correlation and partial least squares analyses revealed significant relationships between various process parameters highlighting the particle size, moisture, and fluidization effect. Fluidization parameter and pressure difference over upper filters were found to correlate with in-line particle size and therefore could be used as estimates of particle size during granulation. The pressure difference over the granules and the temperature of the fluidizing mass expressed the moisture conditions of wet granulation. The instrumentation system evaluated here is an invaluable aid to gaining more control for fluid bed processing to obtain repeatable granules for further processing.
机译:这项研究的目的是评估一种用于台式流化床制粒机的仪器系统,以确定在流化床工艺喷涂阶段表达变化条件的参数。该研究主要集中在四个在线测量(因变量)上:流化参数(由进气流量和转子速度计算),上部过滤器上的压力差,颗粒(下部过滤器)上的压力差以及过滤器的温度。流化质量。通过空间过滤技术测量的在线粒径是必不可少的预测变量。自动制粒系统的其他物理过程测量(25个直接参数和12个衍生参数)也用于多变量建模。相关性和偏最小二乘分析显示出各种工艺参数之间的显着关系,从而突出了粒径,水分和流化效果。发现上部过滤器的流化参数和压差与在线粒径相关,因此可以用作制粒过程中粒径的估计。颗粒上的压力差和流化物料的温度表示湿法制粒的水分条件。此处评估的仪器系统是获得更多控制流化床加工以获得可重复颗粒用于进一步加工的宝贵帮助。

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