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Effect of Ionic Liquid Additives on CO2 Permeation and CO2/N2 Selectivity through Facilitated Transport Membranes

机译:离子液体添加剂对促进转运膜的CO2渗透和CO2 / N2选择性的影响

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摘要

To improve the CO2 permeability of facilitated transport membranes, we investigated the effect of ionic liquid additives into the membrane. In this study, glycine was used as a CO2 carrier and polyvinyl alcohol as a gel matrix to contain the CO2 carrier and additives. To investigate the effect of the water vapor absorbability of the gel membrane on the CO2 permeability, ionic liquids with various degrees of hydrophilicity were examined as additives. When the highly hydrophilic ionic liquids were added to the membrane, a large amount of water was absorbed in the membrane under humid conditions. With the aid of water, glycine dissolved in a fully water stained gel membrane could react with CO2 under humid conditions and elevated temperatures from 110 to 130 °C. Because of the high liquidity of the ionic liquid within a wide temperature range, the formed CO2 complex could easily diffuse into the membrane from the feed side to the permeate side. Thus, CO2 permeability and CO2/N2 selectivity were highly improved; e.g., at 110 °C , the CO2 permeance was increased from 3.6 X 10~(-6) to 6.4 X 10~(-5) mol/(m~2skPa) and CO2/N2 selectivity from 17.3 to 192 (-). Moreover, the non-volatility and thermal stability of an ionic liquid enabled improved CO2 permeation for extended periods under elevated temperature conditions. Therefore, the addition of ionic liquid was useful to enhance the gas permeation properties whilst maintaining high stability.
机译:为了提高便利运输膜的CO2渗透性,我们研究了离子液体添加剂进入膜的影响。在这项研究中,甘氨酸用作CO2载体,聚乙烯醇用作凝胶基质,以包含CO2载体和添加剂。为了研究凝胶膜的水蒸气吸收能力对CO2渗透性的影响,研究了具有不同亲水度的离子液体作为添加剂。当将高度亲水的离子液体添加到膜中时,在潮湿条件下大量的水被吸收在膜中。借助于水,溶解在完全染过水的凝胶膜中的甘氨酸可以在潮湿条件下以及110至130°C的高温下与CO2反应。由于离子液体在较宽的温度范围内具有较高的流动性,因此形成的CO2络合物很容易从进料侧向渗透侧扩散到膜中。因此,大大提高了CO2的渗透性和CO2 / N2的选择性。例如,在110°C下,CO2渗透率从3.6 X 10〜(-6)mol /(m〜2skPa)增加到6.4 X 10〜(-5)mol /(m〜2skPa),CO2 / N2选择性从17.3提高到192(-)。此外,离子液体的非挥发性和热稳定性使高温条件下CO2的渗透性得以延长。因此,添加离子液体可用于增强气体渗透性同时保持高稳定性。

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