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Influence of Binder Droplet Dimension on Granulation Rate during Fluidized Bed Granulation

机译:粘合剂液滴尺寸对流化床造粒过程中造粒速率的影响

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Here, we statistically identified the critical factor of the granulation rate during the fluidized bed granulation process. Lactose was selected as the excipient and was granulated with several binders, including hydroxypropyl cellulose, hydroxypropyl methyl cellulose, and polyvinylpyrrolidone. The viscosity, density, and surface tension of the binder solution, contact angle, and the work done during adhesion and cohesion between the binder and lactose, mist diameter, Stokes number, and the dimension of the droplet were considered. The Stokes number was defined as the ratio of the inertial force to the viscous-damping force of a particle. We confirmed that droplet diameter after adhesion had the highest correlation coefficient with the granulation rate constant in our investigated parameters. Partial least squares regression revealed two critical principal components of the granulation rate: one relating to the droplet dimension, which is composed of mist diameter and diameter and thickness of the droplet after adhesion of the binder to the lactose surface; and the other relating to wettability, which involves the work done during adhesion and cohesion, surface tension, and the thickness of the droplet after adhesion of the binder to the lactose surface.
机译:在这里,我们从统计角度确定了流化床造粒过程中造粒速率的关键因素。选择乳糖作为赋形剂,并与几种粘合剂制粒,这些粘合剂包括羟丙基纤维素,羟丙基甲基纤维素和聚乙烯吡咯烷酮。考虑了粘合剂溶液的粘度,密度和表面张力,接触角以及在粘合剂与乳糖之间的粘合和内聚过程中所做的功,雾直径,斯托克斯数和液滴尺寸。斯托克斯数被定义为颗粒的惯性力与粘滞阻尼力之比。我们证实在我们研究的参数中,附着后的液滴直径与造粒速率常数具有最高的相关系数。偏最小二乘回归揭示了造粒速率的两个关键主要成分:一个与液滴尺寸有关,它由雾的直径以及粘合剂与乳糖表面粘附后液滴的直径和厚度组成;另一个涉及润湿性,涉及在粘附和内聚过程中完成的工作,表面张力以及将粘合剂粘附到乳糖表面后液滴的厚度。

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