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Mixed matrix hollow fibre membrane comprising polyetherimide and modified montmorillonite with improved filler dispersion and CO2/CH4 separation performance

机译:包含聚醚酰亚胺和改性蒙脱土的填料基质分散和CO2 / CH4分离性能得到改善的混合基质中空纤维膜

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Mixed matrix membrane with nano-filler embedded in polymer matrix, is receiving overwhelming attention for gas separation applications due to its attractiveness in providing an economic solution to enhance permselectivity. However, achieving uniform dispersion of nano-filler in host polymer remains a key challenge in developing membrane. In this work, mixed matrix hollow fibre membranes comprising polyetherimide (PEI) with various modified montmorillonite (f-Mt) loading, was developed via phase inversion method for CO2/CH4 separation. The Mt was modified with aminolauric acid to impart organophilicity to enhance compatibility towards organic polymer matrix. The synthesized hollow fibers were characterized using field emission scanning electron microscopy (FESEM), energy dispersive X-ray spectroscopy (EDX), thermal gravimetric analysis (TGA), differential scanning calorimetry (DSC), and permeation test. The permeation tests were carried out with pure gases at ambient temperature with varying pressures of 2 and 4 bars. An increasing trend in ideal selectivity was observed up to 2 wt%f-Mt loading. Thereafter, opposite trend was observed with increasing filler loading due to exfoliated layers that created more tortuous path for the penetrating gas molecules. The maximum ideal selectivity was found with 2 wt%f-Mt loading at 2 bar, which showed 39% increment as compared to neat PEI hollow fibre membrane. This increment in gas selectivity was related to the dispersion state and aspect ratio off-Mt. Various phenomenological models were employed to calculate the aforementioned properties. Adopting to Cussler and Yang-Cussler models, the aspect ratio of thef-Mt was found to be 35 and 50, respectively with 3-4 particles per tactoid. (C) 2017 Elsevier B.V. All rights reserved.
机译:聚合物基质中嵌入纳米填料的混合基质膜,由于在提供经济的解决方案以提高渗透选择性方面具有吸引力,因此在气体分离应用中受到了广泛的关注。然而,实现纳米填料在主体聚合物中的均匀分散仍然是开发膜的关键挑战。在这项工作中,通过相转化方法分离出了包含各种改性蒙脱土(f-Mt)负载量的聚醚酰亚胺(PEI)的混合基质中空纤维膜。 Mt用氨基月桂酸修饰以赋予亲有机性以增强与有机聚合物基质的相容性。使用场发射扫描电子显微镜(FESEM),能量色散X射线光谱(EDX),热重分析(TGA),差示扫描量热法(DSC)和渗透测试对合成的中空纤维进行表征。渗透测试是在环境温度,压力为2和4 bar的纯气体下进行的。达到2 wt%f-Mt负载时,观察到理想选择性的增加趋势。此后,观察到相反的趋势,这是由于剥落的层增加了填充剂的负荷,而剥落的层为穿透的气体分子创造了更多的曲折路径。发现最大理想选择性是在2 bar下2 wt%f-Mt负载下,与纯PEI中空纤维膜相比显示39%的增加。气体选择性的增加与分散状态和长宽比off-Mt有关。采用各种现象学模型来计算上述性质。采用Cussler和Yang-Cussler模型,发现f-Mt的长宽比分别为35和50,每个触基体具有3-4个颗粒。 (C)2017 Elsevier B.V.保留所有权利。

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