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Polymer–Magnesium Aluminum Silicate Composite Dispersions for Improved Physical Stability of Acetaminophen Suspensions

机译:聚合物-镁铝硅酸盐复合分散体可改善对乙酰氨基酚悬浮液的物理稳定性

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摘要

The aims of this study were to characterize the morphology and size of flocculates and the zeta potential and rheological properties of polymer–magnesium aluminum silicate (MAS) composite dispersions and to investigate the physical properties of acetaminophen (ACT) suspensions prepared using the composite dispersions as a flocculating/suspending agent. The polymers used were sodium alginate (SA), sodium carboxymethylcellulose (SCMC), and methylcellulose (MC). The results showed that SA, SCMC, and MC could induce flocculation of MAS by a polymer-bridging mechanism, leading to the changes in the zeta potential of MAS and the flow properties of the polymer dispersions. The microscopic morphology and size of the flocculates was dependent on the molecular structure of the polymer, especially ether groups on the polymer side chain. The residual MAS from the flocculation could create a three-dimensional structure in the SA–MAS and SCMC–MAS dispersions, which brought about not only an enhancement of viscosity and thixotropic properties but also an improvement in the ACT flocculating efficiency of polymers. The use of polymer–MAS dispersions provided a higher degree of flocculation and a lower redispersibility value of ACT suspensions compared with the pure polymer dispersions. This led to a low tendency for caking of the suspensions. The SCMC–MAS dispersions provided the highest ACT flocculating efficiency, whereas the lowest ACT flocculating efficiency was found in the MC–MAS dispersions. Moreover, the added MAS did not affect ACT dissolution from the suspensions in an acidic medium. These findings suggest that the polymer–MAS dispersions show good potential for use as a flocculating/suspending agent for improving the rheological properties and physical stability of the suspensions.
机译:这项研究的目的是表征絮凝剂的形态和大小,以及聚合物-硅酸铝铝(MAS)复合分散液的zeta电位和流变性质,并研究使用该复合分散液制备的对乙酰氨基酚(ACT)悬浮液的物理性质。絮凝剂/悬浮剂。所用的聚合物是藻酸钠(SA),羧甲基纤维素钠(SCMC)和甲基纤维素(MC)。结果表明,SA,SCMC和MC可以通过聚合物桥联机制诱导MAS的絮凝,从而导致MAS的Zeta电位变化和聚合物分散体的流动性。絮凝物的微观形态和尺寸取决于聚合物的分子结构,特别是聚合物侧链上的醚基。絮凝中残留的MAS可能在SA–MAS和SCMC–MAS分散体中形成三维结构,这不仅提高了粘度和触变性,而且还提高了ACT的絮凝效率。与纯聚合物分散体相比,使用聚合物-MAS分散体可提供更高的絮凝度和较低的ACT悬浮液再分散性值。这导致悬浮液结块的可能性很小。 SCMC-MAS分散液具有最高的ACT絮凝效率,而MC-MAS分散液却具有最低的ACT絮凝效率。而且,添加的MAS不影响ACT从酸性介质中的悬浮液中溶解。这些发现表明,聚合物-MAS分散体显示出良好的潜力,可用作絮凝剂/悬浮剂,可改善悬浮液的流变性和物理稳定性。

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