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首页> 外文期刊>RSC Advances >A highly hydrophilic benzenesulfonic-grafted graphene oxide-based hybrid membrane for ethanol dehydration
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A highly hydrophilic benzenesulfonic-grafted graphene oxide-based hybrid membrane for ethanol dehydration

机译:用于乙醇脱水的高度亲水性苯磺酸血管膜氧化石墨烯杂交膜

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摘要

A new type of hybrid membrane was prepared by blending sodium alginate (SA) with benzenesulfonic-grafted graphene oxide (BS@GO), which showed higher hydrophilicity and more defects or edges than GO to create channels for the transfer of water molecules. BS@GO was synthesized by reacting aryl diazonium salts with graphene oxide (GO). The BS@GO sheets were aligned parallelly to the membrane surface and affected the interactions between the SA chains. BS@GO could improve the hydrophilicity and pervaporation properties of SA-based hybrid membranes. Also, compared to GO fillers, BS@GO fillers could supply higher water permeance to improve the pervaporation flux and separation factor. For the pervaporation of 90 wt% aqueous ethanol at 343 K, the optimum hybrid membrane with 1.5 wt% BS@GO in the SA matrix showed the maximum permeate flux of 703 ± 89 g m ~(?2) h ~(?1) (1.4 times higher than that of an SA membrane), and the highest separation factor was 5480 ± 94 (5.6 times higher than that of the SA membrane). Moreover, the hybrid membrane exhibited good stability and separation ability during long-term testing.
机译:通过将藻酸钠(SA)与苯磺酸钠接枝的石墨烯氧化物(BS @ Go)混合而制备一种新型的杂化膜,其显示出更高的亲水性和更多的缺陷或边缘,而不是去产生用于转移水分子的通道。通过用氧化石墨烯(GO)反应芳基重氮盐来合成BS @ Go。 BS @ Go纸张并联对齐膜表面并影响SA链之间的相互作用。 BS @ Go可以改善SA的杂交膜的亲水性和渗透散热性能。此外,与填充物相比,BS @ Go填充物可以提供更高的水渗透以改善渗透透气和分离因子。对于343k的90wt%乙醇的渗透,最佳杂化膜与1.5wt%Bs @在SA基质中显示为703±89 gm的最大渗透通量〜(?2)H〜(?1)(比SA膜的1.4倍),最高分离因子为5480±94(比SA膜高5.6倍)。此外,杂交膜在长期测试期间表现出良好的稳定性和分离能力。

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