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首页> 外文期刊>Journal of Membrane Science >Barrier properties of nylon 6-montmorillonite nanocomposite membranes prepared by melt blending: Influence of the clay content and dispersion state Consequences on modelling
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Barrier properties of nylon 6-montmorillonite nanocomposite membranes prepared by melt blending: Influence of the clay content and dispersion state Consequences on modelling

机译:熔融共混制备的尼龙6-蒙脱土纳米复合膜的阻隔性能:黏土含量和分散状态的影响对模型的影响

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摘要

Polyamide 6-montmorillonites membranes have been prepared and studied for a large range of clay content (from 0 to 18wt.%). The barrier properties of these systems have been determined for different diffusing molecules varying by their kinetic diameter and their interaction capacity. The relative permeability has been found to be independent on the diffusing molecule showing that a tortuosity effect is at the origin of the improved barrier properties. The crystalline morphology of the polyamide matrix has been shown to be only slightly dependent on the nanocomposite composition. Consequently, the permeation properties have been related to the clay content and dispersion. From a quantitative description of the montmorillonite particle dispersion, the ability of different geometrical models to describe the experimental relative permeability data is discussed. This modelling leads to the conclusion that it is necessary to consider the polydispersity of the impermeable filler shapes and to take into account the presence of surfactant located at the inorganic surface to appropriately model the transport properties of the nanocomposites in a large range of nanoclay contents.
机译:已经制备了聚酰胺6-蒙脱土膜,并研究了其在大范围内的粘土含量(0至18wt。%)。对于不同的扩散分子,已经确定了这些系统的阻隔性能,这些扩散分子的动力学直径和相互作用能力不同。已经发现相对渗透率不依赖于扩散分子,这表明曲折效应是改善的阻挡性能的起源。已显示聚酰胺基质的晶体形态仅稍微依赖于纳米复合材料的组成。因此,渗透性能与粘土含量和分散性有关。通过对蒙脱石颗粒分散体的定量描述,讨论了不同几何模型描述实验相对渗透率数据的能力。该模型得出的结论是,有必要考虑不可渗透填料形状的多分散性,并考虑到位于无机表面的表面活性剂的存在,以适当地模拟纳米复合材料在大范围的纳米粘土含量中的传输性能。

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