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Towards Biohydrogen Separation Using Poly(Ionic Liquid)/Ionic Liquid Composite Membranes

机译:致力于使用聚离子液体/离子液体复合膜进行生物氢分离

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摘要

Considering the high potential of hydrogen (H2) as a clean energy carrier, the implementation of high performance and cost-effective biohydrogen (bioH2) purification techniques is of vital importance, particularly in fuel cell applications. As membrane technology is a potentially energy-saving solution to obtain high-quality biohydrogen, the most promising poly(ionic liquid) (PIL)–ionic liquid (IL) composite membranes that had previously been studied by our group for CO2/N2 separation, containing pyrrolidinium-based PILs with fluorinated or cyano-functionalized anions, were chosen as the starting point to explore the potential of PIL–IL membranes for CO2/H2 separation. The CO2 and H2 permeation properties at the typical conditions of biohydrogen production (T = 308 K and 100 kPa of feed pressure) were measured and discussed. PIL–IL composites prepared with the [C(CN)3] anion showed higher CO2/H2 selectivity than those containing the [NTf2] anion. All the membranes revealed CO2/H2 separation performances above the upper bound for this specific separation, highlighting the composite incorporating 60 wt % of [C2mim][C(CN)3] IL.
机译:考虑到氢气(H2)作为清洁能源载体的高潜力,高性能和具有成本效益的生物氢(bioH2)净化技术的实施至关重要,特别是在燃料电池应用中。由于膜技术是获得高质量生物氢的一种潜在的节能解决方案,因此最有前途的聚(离子液体)(PIL)-离子液体(IL)复合膜已经由我们的小组进行过CO2 / N2分离研究,选择含吡咯烷鎓基的PIL和氟化或氰基官能化的阴离子作为起点,以探索PIL-IL膜在CO2 / H2分离中的潜力。测量和讨论了在典型的生物氢生产条件下(T = 308 K和进料压力100 kPa)的CO2和H2渗透性能。用[C(CN)3] -阴离子制备的PIL-IL复合材料显示出比包含[NTf2] -阴离子更高的CO2 / H2选择性。所有膜均显示该特定分离的上限以上的CO2 / H2分离性能,突出显示了包含60 wt%[C2mim] [C(CN)3] IL的复合材料。

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