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Poly(vinylidene fluoride) based mixed matrix membranes comprising metal organic frameworks for gas separation applications

机译:基于聚偏二氟乙烯的混合基质膜,包括用于气体分离应用的金属有机骨架

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摘要

Poly(vinylidene fluoride) (PVDF) based mixed matrix membranes (MMMs) comprising crystalline structures of Metal organic frameworks (MOFs), CuBTC, CuBDC, MIL-53(Al) and NH2-MIL-53(Al) were fabricated and investigated for gas separation applications. MOFs and membranes were extensively characterized by FT-IR, XRD, SEM and TGA techniques. 10 wt% loading of CuBTC in PVDF showed 43.6 and 118.7% permeability enhancement for He and CO2 gases compared to the pure membrane. Moreover, the high selectivity enhancement of 96% was observed for CO2/CH4. In regards to CuBDC, 37.5 and 117% permeability increase for He and CO2 gases was reported for 15% loading. Furthermore, the best selectivity was related to CO2/CH4 in which 109.3% increscent was achieved relative to the pure membrane. Since CuBTC and CuBDC exhibited interesting effects on CO2 transport, they can be promising additives for polymer membranes. The membranes containing 10% wt of NH2-MIL-53(Al) showed 11.25 and 22.41% selectivity enhancement for He/CH4 and CO2/CH4. However, for those membranes containing MIL-53(Al), were decreased by 3.33 and 1.33% compared to the pure PVDF membrane. The different behavior of NH2-MIL-53(Al) and MIL-53(Al) can be explained by their different surface properties related to the existence of amino groups on NH2-MIL-53(Al). (C) 2015 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:制备了聚偏二氟乙烯(PVDF)基的混合基质膜(MMM),该膜包含金属有机骨架(MOF),CuBTC,CuBDC,MIL-53(Al)和NH2-MIL-53(Al)的晶体结构。气体分离应用。 MOF和膜通过FT-IR,XRD,SEM和TGA技术进行了广泛表征。与纯膜相比,PVDF中10wt%的CuBTC负载量显示He和CO2气体的渗透率提高了43.6和118.7%。此外,观察到CO2 / CH4的选择性提高了96%。关于CuBDC,据报道,负载为15%时,He和CO2气体的渗透率分别提高了37.5和117%。此外,最佳选择性与CO2 / CH4有关,相对于纯膜,CO2 / CH4具有109.3%的增量。由于CuBTC和CuBDC对CO2传输表现出有趣的影响,因此它们可以成为聚合物膜的有前途的添加剂。含有10%wt的NH2-MIL-53(Al)的膜对He / CH4和CO2 / CH4的选择性提高了11.25和22.41%。但是,与纯PVDF膜相比,含有MIL-53(Al)的那些膜分别降低了3.33%和1.33%。 NH2-MIL-53(Al)和MIL-53(Al)的不同行为可以通过与NH2-MIL-53(Al)上氨基存在相关的不同表面特性来解释。 (C)2015化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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