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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Polymeric ionic liquid membranes containing IL-Ag~+ for ethylene/ethane separation via olefin-facilitated transport
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Polymeric ionic liquid membranes containing IL-Ag~+ for ethylene/ethane separation via olefin-facilitated transport

机译:包含IL-Ag〜+的聚合物离子液体膜,用于通过烯烃促进的运输分离乙烯/乙烷

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This work focuses on the separation of light olefins from their corresponding paraffins using membranes due to their lower energy consumption and operating costs in comparison to the traditionally used methods which are highly energy intensive. Although polymeric ionic liquids (PILs) have attracted much attention as interesting materials to prepare improved gas separation membranes, their exploitation for light olefin/paraffin separation has never been attempted before. In this work, we propose the use of PILs as alternative polymer matrices for olefin/paraffin separation. A new series of facilitated transport membranes of poly([pyr_(11)][NTf2]) incorporating different amounts of the ionic liquid ([pyr_(14)][NTf2]) and the silver salt (AgNTf2) were prepared by a film casting process and their ethane and ethylene permeation properties were measured at 293 K using a time-lag apparatus. The results show that the preparation of PIL/IL composite membranes increases the permeability of both C2H4 and C2H6, overcoming the hindered gas diffusion in the pure PIL Nevertheless, the presence of the IL in the composite membrane promotes reduced C2H4/C2H6 permselectivity. The addition of the silver satt greatly boosts the solubility of the olefin in the membranes. Furthermore, increasing the silver ion concentration in the PIL/40% IL system leads to enhanced overall C2H4/C2H6 permselectivity surpassing the upper bound for polymeric membranes, indicating that PILs have interesting potential as polymer matrices for olefin-facilitated transport membranes.
机译:这项工作着重于使用膜将轻质烯烃与相应的链烷烃分离,因为与传统的高能耗方法相比,它们的能耗和运行成本较低。尽管聚合离子液体(PIL)作为制备改进的气体分离膜的有趣材料已引起了广泛关注,但之前从未尝试过将其用于轻质烯烃/石蜡分离。在这项工作中,我们建议使用PIL作为烯烃/石蜡分离的替代聚合物基质。通过薄膜制备了一系列新的聚([pyr_(11)] [NTf2])的便利运输膜,其中掺入了不同量的离子液体([pyr_(14)] [NTf2])和银盐(AgNTf2)使用时滞设备在293 K下测量了铸造过程及其乙烷和乙烯的渗透性能。结果表明,PIL / IL复合膜的制备增加了C2H4和C2H6的渗透性,克服了纯PIL中气体扩散的阻碍。然而,复合膜中IL的存在促进了C2H4 / C2H6选择性渗透的降低。银盐的添加极大地提高了烯烃在膜中的溶解度。此外,增加PIL / 40%IL系统中的银离子浓度会导致C2H4 / C2H6的选择性渗透率提高,超过聚合物膜的上限,这表明PIL作为烯烃促进传输膜的聚合物基质具有令人感兴趣的潜力。

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