首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Experimental studies on distributions of granule size, binder content and porosity in batch drum granulation: Inferences on process modelling requirements and process sensitivities
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Experimental studies on distributions of granule size, binder content and porosity in batch drum granulation: Inferences on process modelling requirements and process sensitivities

机译:分批转鼓制粒中粒度,粘合剂含量和孔隙率分布的实验研究:对过程建模要求和过程敏感性的推论

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摘要

Batch granulation experiments on a lab-scale drum granulator for a Calcite/Polyvinyl alcohol in water (Calcite/PVOH-H2O) system are presented in this study. Experimental studies were carried out to study the aggregation kinetics and mechanism for this granulation recipe, whilst investigating the effects of binder-to-solids ratio and drum load on the granule size, binder content and porosity distributions. In particular, the effect of formulation properties and the granulation operating conditions on the batch process dynamics and the end-granule properties are studied. The formulation properties considered include liquid surface tension, powder-liquid contact angle, dynamic yield stress, powder shape and liquid viscosity. The operating variables include the binder-to-solids ratio, binder addition duration and the binder addition mode. The sensitivity in the process and the non-homogeneity of key particle attributes (size, binder content, and porosity) is evident. The important process manipulations for feedback control and potential disturbances are identified, formulating a comprehensive control configuration for batch and continuous granulation, with the latter case being exemplified in Glaser et al. [T., Glaser, C.F.W., Sanders, F.Y., Wang, I.T., Cameron, R., Ramachandran, J.D., Litster, J.M.-H., Poon, CD., Immanuel, F.J. Doyle, III, 2007. Model predictive control of drum granulation. Manuscript in preparation.]. The importance of multi-scale process models that link fundamental material properties with the granulation mechanisms and end-granule properties is also evident from the experiments. A three-dimensional population balance equation structure in terms of the particle size, binder content and porosity is confirmed to be an ideal framework for the process model.
机译:在这项研究中,提出了在实验室规模的鼓式制粒机上对方解石/聚乙烯醇(Calcite / PVOH-H2O)系统进行分批制粒实验。进行了实验研究,以研究这种制粒配方的聚集动力学和机理,同时研究了粘合剂与固体的比率和鼓负载对颗粒尺寸,粘合剂含量和孔隙率分布的影响。特别地,研究了制剂性质和制粒操作条件对分批过程动力学和最终颗粒性质的影响。考虑的配方特性包括液体表面张力,粉末-液体接触角,动态屈服应力,粉末形状和液体粘度。操作变量包括粘合剂与固体的比率,粘合剂添加持续时间和粘合剂添加模式。过程中的灵敏度以及关键颗粒属性(尺寸,粘合剂含量和孔隙率)的不均匀性显而易见。确定了用于反馈控制和潜在干扰的重要过程操作,从而制定了用于分批和连续造粒的综合控制配置,Glaser等人举例说明了后者。 [T.,Glaser,CFW,Sanders,FY,Wang,IT,Cameron,R.,Ramachandran,JD,Litster,JM-H。,Poon,CD。,Immanuel,FJ Doyle,III,2007。模型预测控制鼓式制粒。准备的手稿。]。从实验中也可以看出,将基本材料特性与造粒机理和最终颗粒特性联系起来的多尺度工艺模型的重要性。在粒度,粘合剂含量和孔隙率方面的三维人口平衡方程结构被证实是该过程模型的理想框架。

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