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Importance of Small Pores in Microcrystalline Cellulose for Controlling Water Distribution during Extrusion–Spheronization

机译:小孔在微晶纤维素中控制挤出-滚圆过程中水分布的重要性

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摘要

The purpose of this research was to investigate the effects of particle size on the wet massing behavior of microcrystalline cellulose (MCC). In this study, a series of six fractionated MCC grades were customized and specially classified to yield different particle size varieties of the standard grade, Comprecel M101. All seven MCC grades were extensively characterized for the physical properties and wet massing behavior using mixer torque rheometry. Effects of MCC physical properties on the maximum torque (Torquemax) were determined using partial least squares (PLS) analysis. Most physical properties varied systematically with particle size and morphological changes. Marked differences were observed in the small pore volumes (VhighP) and BET surface areas of the MCC grades. Variables that exerted dominant influences on Torquemax were identified. In particular, the significance of VhighP in governing wet mass consistency was established. The role of VhighP has not been reported in any study because this small but significant variation is likely to be obliterated or compensated by variation in other physical properties from MCC grades from different suppliers. The findings demonstrated the role of small pores in governing the wet mass consistency of MCC and provide a better understanding of MCC’s superior performance as a spheronization aid by the ability to fulfill the function as a molecular sponge to facilitate pellet formation during wet granulation processes.
机译:这项研究的目的是研究粒径对微晶纤维素(MCC)湿质量行为的影响。在这项研究中,定制了一系列六个分级的MCC等级,并对其进行了特殊分类,以产生标准等级Comprecel M101的不同粒度品种。使用混合器扭矩流变仪对所有七个MCC等级的物理性能和湿质量行为进行了广泛的表征。使用部分最小二乘(PLS)分析确定MCC物理性能对最大扭矩(Torquemax)的影响。大多数物理性质会随粒径和形态变化而系统地变化。在MCC级的小孔体积(VhighP)和BET表面积中观察到明显差异。确定了对Torquemax产生主要影响的变量。特别是,建立了VhighP在控制湿质量一致性方面的重要性。 VhighP的作用尚未在任何研究中报道,因为这种微小但显着的变化很可能会被来自不同供应商的MCC等级的其他物理性能的变化所抵消或弥补。这些发现证明了小孔在控制MCC的湿质量稠度中的作用,并通过履行作为分子海绵的功能来促进在湿法制粒过程中形成颗粒,从而更好地理解了MCC作为球形助剂的优越性能。

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