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首页> 外文期刊>Journal of Applied Polymer Science >Gas-permeation performance of metal organic framework/polyimide mixed-matrix membranes and additional explanation from the particle size angle
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Gas-permeation performance of metal organic framework/polyimide mixed-matrix membranes and additional explanation from the particle size angle

机译:金属有机骨架/聚酰亚胺混合基质膜的气体渗透性能和粒径角度的附加说明

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摘要

With MOFs of Cu-3(BTC)(2) and ZIF-8 as the dispersed phases and four polyimides with CO2 permeabilities ranging from 1.36 to 564 barrer as the continuous phase, the influence of metal organic frameworks on the gas-separation properties of mixed-matrix membranes (MMMs) was investigated. The results show that the gas permeabilities of all of the prepared MMMs greatly increased and even largely exceeded the predicted value of the Bruggeman model; for example, with the same Cu-3(BTC)(2) loading of 21.3 vol %, the O-2 permeability increase rate of our prepared Cu-3(BTC)(2)/Matrimide 5218-20 MMMs was 2.26 times, whereas that predicted by the Bruggeman model was only 1.05 times. In addition, when the gas permeability of the polymeric phase was far lower than the dispersed phase of ZIF-8 or Cu-3(BTC)(2) compared with ZIF-8, which had a particle size (R) around 150 nm, Cu-3(BTC)(2) of 5-15 mm showed a little better enhancing effect on the gas-permeation performance of the MMMs. In addition to the properties of the dispersed and continuous phases, we speculated that the ratio between R of the dispersed phase to the membrane thickness (L) played an important role for MMMs; the larger R/L was, the greater the gas permeability of the MMMs was. This speculation was initially evidenced by the ZIF-8/ODPA/TMPDA-20 MMMs with different Ls. (C) 2017 Wiley Periodicals, Inc.
机译:用Cu-3(BTC)(2)和ZIF-8的MOFS作为分散相和四种聚酰亚胺,CO 2渗透率为1.36至564个禁止,作为连续相,金属有机框架对气体分离性能的影响研究了混合基质膜(MMM)。结果表明,所有制备的MMM的气体渗透性大大增加,甚至很大程度上超过了Bruggeman模型的预测值;例如,用相同的Cu-3(BTC)(2)载荷为21.3Vol%,我们制备的Cu-3(BTC)/ romimide 5218-20mmms的O-2渗透率提高率为2.26倍,而Brugmeman模型预测的是只有1.05倍。另外,与ZIF-8相比,聚合物相的气体渗透率远低于ZIF-8或Cu-3(BTC)(2)的分散相时,其粒径(R)约为150nm, 5-15 mm的Cu-3(BTC)(2)显示出对MMMS气体渗透性能的影响较大。除了分散和连续相的性质之外,我们推测分散相与膜厚度(L)的r之间的比率对MMMS起重要作用;较大的R / L是,MMMS的透气性越大。该粉丝最初由ZIF-8 / ODPA / TMPDA-20MMM具有不同LS的猜测。 (c)2017 Wiley期刊,Inc。

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