School of Pharmacy, De Montfort University, Leicester LE1 9BH, UK.
Int J Pharm. 2013 May 20;448(2):329-38. doi: 10.1016/j.ijpharm.2013.03.057. Epub 2013 Apr 9.
In this work, the influence factors of pulsed frequency, binder spray rate and atomisation pressure of a top-spray fluidised bed granulation process were studied using the Box-Behnken experimental design method. Different mathematical models were developed to predict the mean size of granules, yield, relative width of granule distribution, Hausner ratio and final granule moisture content. The study has supported the theory that the granule size can be controlled through the liquid feed pulsing. However, care has to be taken when the pulsed frequency is chosen for controlling the granule size due to the nonlinear quadratic relation in the regression model. The design space of the ranges of operating parameters has been determined based on constraints of the mean size of granules and granule yield. High degree of prediction obtained from validation experiments has shown the reliability and effectiveness of using the Box-Behnken experimental design method to study a fluidised bed granulation process.
在这项工作中,采用 Box-Behnken 实验设计方法研究了顶喷流化床制粒过程中脉冲频率、粘结剂喷雾速率和雾化压力的影响因素。开发了不同的数学模型来预测颗粒的平均粒径、收率、颗粒分布的相对宽度、Hausner 比和最终颗粒水分含量。研究支持了通过液体进料脉冲控制颗粒尺寸的理论。然而,由于回归模型中的非线性二次关系,在选择用于控制颗粒尺寸的脉冲频率时需要小心。基于对颗粒平均粒径和颗粒收率的约束,确定了操作参数范围的设计空间。验证实验获得的高度预测表明,使用 Box-Behnken 实验设计方法研究流化床制粒过程是可靠和有效的。