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首页> 外文期刊>Journal of Applied Polymer Science >Polyurethane-based poly (ionic liquid)s for CO2 removal from natural gas
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Polyurethane-based poly (ionic liquid)s for CO2 removal from natural gas

机译:基于聚氨酯的聚(离子液体),用于从天然气中去除

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Carbon dioxide separation from CH4 is important to the environment and natural gas processing. Poly (ionic liquid)s (PILs) based on polyurethane structures are considered as potential materials for CO2 capture. Thus, a series of anionic PILs based on polyurethane were synthesized. The effects of polyol chemical structure and counter-cations (imidazolium, phosphonium, ammonium, and pyridinium) in CO2 sorption capacity and CO2/CH4 separation performance were evaluated. The synthesized PILs were characterized by NMR, DSC, TGA, dinamical mechanical thermo analysis (DMTA), SEM, and AFM. CO2 sorption, reusability, and CO2/CH4 selectivity were assessed by the pressure-decay technique. The counter-cation and polyol chemical structure play an important role in CO2 sorption and CO2/CH4 selectivity. PILs exhibited competitive thermal mechanical properties. Results showed that PILPC-TBP was the best poly (ionic liquid) for CO2/CH4 separation. Moreover, poly (liquid ionic) base polyol (polycarbonate) with phosphonium (PILPC-TBP) demonstrated higher CO2 sorption capacity (21.4 mgCO(2)/g at 303.15K and 0.08MPa) as compared to other reported poly (ionic liquids). (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 47536.
机译:CH4的二氧化碳分离对环境和天然气加工是重要的。基于聚氨酯结构的聚(离子液体)S(PILs)被认为是CO 2捕获的潜在材料。因此,合成了基于聚氨酯的一系列阴离子含量。在CO2吸附能力和CO 2 / CH 4分离性能的多元醇的化学结构和抗衡阳离子(咪唑鎓,鏻,铵,吡啶鎓和)的影响进行了评价。合成的Pils的特征在于NMR,DSC,TGA,Dinamical机械热分析(DMTA),SEM和AFM。通过压力衰减技术评估CO2吸附,可重用性和CO2 / CH4选择性。反阳离子和多元醇的化学结构起到二氧化碳吸附和CO2 / CH4选择性的重要作用。 Pils表现出具有竞争力的热力学性能。结果表明,PilpC-TBP是CO 2 / CH 4分离的最佳聚(离子液体)。此外,聚(离子液体)基础多元醇(聚碳酸酯)与鏻(PILPC-TBP)表现出较高的CO 2吸附能力(21.4碳酸镁(2)/ g的303.15K和0.08MPa)相比于其它报道的聚(离子液体)。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,136,47536。

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