Powder flow from an intermediate bulk container – Discharge predictions and experimental evaluation

[Display omitted] •The flow behavior of excipients was characterized using several techniques.•Flowability was predicted using, e.g., Jenike’s hopper design methodology.•The results were experimentally validated using IBC discharge measurements.•The Erweka flow test provided the best prediction of t...

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Veröffentlicht in:International journal of pharmaceutics 2021-03, Vol.597, p.120309-120309, Article 120309
Hauptverfasser: Wikström, Håkan, Remmelgas, Johan, Solin, Sara, Marucci, Mariagrazia, Sandler, Niklas, Boissier, Catherine, Tajarobi, Pirjo
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Sprache:eng
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Zusammenfassung:[Display omitted] •The flow behavior of excipients was characterized using several techniques.•Flowability was predicted using, e.g., Jenike’s hopper design methodology.•The results were experimentally validated using IBC discharge measurements.•The Erweka flow test provided the best prediction of the IBC discharge rate.•A simple model predicted the IBC discharge rate of the five excipients. Powders are usually dispensed, blended, and transferred between different manufacturing steps in so-called Intermediate Bulk Containers (IBCs), and discharge from an IBC plays a critical role in the ability to manufacture high-quality tablets. To better understand IBC discharge, the flow behavior of selected excipients was comprehensively characterized using a number of techniques including the Hausner ratio/Carr’s index, Erweka flow test, FlowPro flow test, shear test and wall friction test as well as FT4 powder rheometer experiments. Jenike’s hopper design methodology was then used to predict the minimum non-arching outlet diameter and the mode of flow. Furthermore, the discharge rate from an IBC was predicted using a simple model that takes into account gravity and aerodynamic drag. The predictions were experimentally verified by measuring the discharge rate from a 20 L IBC using five commonly-used excipients. The small-scale Erweka flow test provided the best prediction of the full-scale IBC discharge experiment. Furthermore, a simple model that relied only on the particle size of the material and the diameter of the discharge opening was found to predict the IBC discharge rate remarkably well.
ISSN:0378-5173
1873-3476
DOI:10.1016/j.ijpharm.2021.120309