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首页> 外文期刊>ACS applied materials & interfaces >The Development of Novel Nexar Block Copolymer/Ultem Composite Membranes for C2-C4 Alcohols Dehydration via Pervaporation
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The Development of Novel Nexar Block Copolymer/Ultem Composite Membranes for C2-C4 Alcohols Dehydration via Pervaporation

机译:新型Nexar嵌段共聚物/ Ultem复合膜的开发,该膜可通过全蒸发作用使C2-C4醇脱水

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摘要

Novel composite membranes comprising sulfonated styrenic Nexar pentablock copolymers were developed by dip-coating on poly(ether imide) hollow fibers for pervaporation dehydration of C2-C4 alcohols. The advantages of using block copolymers as the selective layer are (1) their effectiveness to synergize the physicochemical properties of different chemical and structural moieties and (2) tunable nanoscale morphology and nanostructure via molecular engineering. To achieve high-performance composite membranes, the effects of coating time, ion exchange capacity (IEC) of the copolymer, and solvent systems for coating were investigated. It is revealed that a minimum coating time of 30 s is needed for the formation of a continuous and less-defective top layer. A higher IEC value results in a membrane with a higher flux and lower separation factor because of enhanced hydrophilicity and stretched chain conformation. Moreover, the composite membranes prepared from hexane/ethanol mixtures show higher separation factors and lower fluxes than those from the hexane solvent owing to microdomain segregation induced by ethanol and a smooth and dense top selective layer. These hypotheses were verified by atomic force microscopy and positron annihilation spectroscopy. The newly developed composite membranes demonstrate impressive separation performance with fluxes exceeding 2 kg/m2 h and separation factors more than 200 for isopropyl alcohol and n-butanol dehydration from 85/IS wt % alcohol/water feed mixtures at 50 °C.
机译:通过浸涂在聚(醚酰亚胺)中空纤维上用于C2-C4醇的全蒸发脱水,开发了包含磺化苯乙烯Nexar五嵌段共聚物的新型复合膜。使用嵌段共聚物作为选择层的优点是:(1)协同不同化学和结构部分的物理化学特性的有效性;(2)通过分子工程可调节的纳米级形态和纳米结构。为了获得高性能的复合膜,研究了涂布时间,共聚物的离子交换容量(IEC)和涂布溶剂体系的影响。揭示了形成连续且缺陷较少的顶层需要最少30 s的涂覆时间。更高的IEC值会导致膜具有更高的通量和更低的分离系数,因为亲水性和拉伸链构象增强了。而且,由于乙醇和光滑而致密的顶部选择层引起的微区偏析,由己烷/乙醇混合物制备的复合膜比来自己烷溶剂的复合膜具有更高的分离系数和更低的通量。这些假设通过原子力显微镜和正电子an没光谱法得到了证实。新开发的复合膜表现出令人印象深刻的分离性能,在50°C下,异丙醇和正丁醇从85 / IS wt%的酒精/水进料混合物中脱水的通量超过2 kg / m2 h,分离系数超过200。

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