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Parametric Study of Residence Time Distributions and Granulation Kinetics as a Basis for Process Modeling of Twin-Screw Wet Granulation

机译:居住时间分布和造粒动力学的参数研究作为双螺杆湿造粒工艺建模的基础

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摘要

Twin-screw wet granulation is a crucial unit operation in shifting from pharmaceutical batch to continuous processes, but granulation kinetics as well as residence times are yet poorly understood. Experimental findings are highly dependent on screw configuration as well as formulation, and thus have limited universal validity. In this study, an experimental design with a repetitive screw setup was conducted to measure the effect of specific feed load (SFL), liquid-to-solid ratio (L/S), and inclusion of a distributive feed screw on particle size distribution (PSD) and shape as well as residence time distribution of a hydrophilic lactose/microcrystalline cellulose based formulation. An intermediate sampling point was obtained by changing inlet ports along the screw axis. Camera-based particle size analysis (QICPIC) indicated no significant change of PSD between the first and second kneading section, except for low L/S and low SFL where fines increase. Mean residence time was approximated as a bilinear fit of L/S and SFL. Moreover, large mass flow pulsations were observed by continuous camera measurements of residence time distribution and correlated to hold-up of the twin-screw granulator. These findings indicate fast granulation kinetics and process instabilities for high mean residence times, questioning current standards of two kneading compartments for wet granulation. The present study further underlines the necessity of developing a multiscale simulation approach including particle dynamics in the future.
机译:双螺杆湿造粒是从药物批次转移到连续过程的关键单元操作,但肉芽动力学以及住宅时间尚未理解。实验结果高度依赖于螺杆配置以及配方,因此具有有限的通用有效性。在该研究中,进行了一种具有重复螺杆设置的实验设计,以测量特定进料载荷(SFL),液体比率(L / S)的效果,并在粒度分布上包含分配馈电螺钉( PSD)和形状及其基于亲水性乳糖/微晶纤维素的分布的分布。通过沿螺杆轴改变入口端口获得中间采样点。基于相机的粒度分析(QICPIC)在第一和第二捏合部分之间没有显着变化PSD,除了低L / S和低SFL,其中罚款增加。平均停留时间近似为L / S和SFL的双线性拟合。此外,通过连续的摄像机测量的停留时间分布和与双螺杆造粒机的保持相关来观察大的质量流量脉动。这些发现表明了高平均停留时间的快速造粒动力学和工艺稳定性,质疑两个用于湿造粒的捏合隔室的当前标准。本研究进一步强调了在未来开发多尺度模拟方法的必要性,包括在未来的粒子动态。

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