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Synthesis and characterisation of MOF/ionic liquid/chitosan mixed matrix membranes for CO2/N2 separation

机译:用于分离CO2 / N2的MOF /离子液体/壳聚糖混合基质膜的合成与表征

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摘要

Mixed matrix membranes (MMMs) have been prepared by combining a small amount of highly absorbing non-toxic ionic liquid, [emim][Ac] (IL) (5 wt%), a biopolymer from renewable abundant natural resources, chitosan (CS), and nanometre-sized metal-organic framework (MOF) ZIF-8 or HKUST-1 particles to improve the selectivity of the IL-CS hybrid continuous polymer matrix. The TGA revealed that the thermal stability has been enhanced by the influence of both IL and ZIF-8 or HKUST-1 fillers, while keeping a water content of around 20 wt%, which suggests the potential of such materials for developing high temperature water resistant membranes for CO2 separation. The CO2 and N2 single gas permeation performance was tested at temperatures in the range of 25-50 C, to compare with the previously reported IL-CS hybrid membranes. The best CO2 permeability and CO2/N2 selectivity performance is obtained for 10 wt% ZIF-8 and 5 wt% HKUST-1/IL-CS membranes, as high as 5413 191 Barrer and 11.5, and 4754 1388 Barrer and 19.3, respectively. This is attributed to a better adhesion and smaller particle size of ZIF-8 than HKUST-1 nanoparticles with respect to the IL-CS continuous matrix, as interpreted by Hansen solubility parameters and Maxwell-based models, modified to account for rigidification, pore blockage and crystallinity of the CS matrix, with very accurate predictions.
机译:混合基质膜(MMM)是通过将少量高吸收性无毒离子液体[emim] [Ac](IL)(5 wt%)(一种来自可再生的丰富自然资源的生物聚合物),壳聚糖(CS)混合而制备的,以及纳米级的金属有机骨架(MOF)ZIF-8或HKUST-1颗粒,以提高IL-CS杂化连续聚合物基质的选择性。 TGA显示,IL和ZIF-8或HKUST-1填料的影响都提高了热稳定性,同时保持约20 wt%的水含量,这表明此类材料具有开发耐高温水的潜力。用于CO2分离的膜。在25-50°C的温度下测试了CO2和N2单气体的渗透性能,以与先前报道的IL-CS混合膜进行比较。对于10 wt%的ZIF-8和5 wt%的HKUST-1 / IL-CS膜,分别达到5413 191 Barrer和11.5,以及4754 1388 Barrer和19.3,可获得最佳的CO2渗透性和CO2 / N2选择性。这是因为相对于IL-CS连续基质,与HKUST-1纳米颗粒相比,ZIF-8纳米颗粒具有更好的附着力和更小的粒径,这是由Hansen溶解度参数和基于Maxwell的模型所解释的,这些模型经过修改以解决刚性,孔隙阻塞的问题和CS矩阵的结晶度,具有非常准确的预测。

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