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将亲水性超薄ZIF-L引入混合基质膜用于CO/CH分离。

Introducing hydrophilic ultra-thin ZIF-L into mixed matrix membranes for CO/CH separation.

作者信息

Zhu Weifang, Li Xueqin, Sun Yanyong, Guo Ruili, Ding Siyuan

机构信息

School of Chemistry and Chemical Engineering, Key Laboratory for Green Process of Chemical Engineering of Xinjiang Bingtuan, Shihezi University Xinjiang Shihezi 832003 China

出版信息

RSC Adv. 2019 Jul 29;9(40):23390-23399. doi: 10.1039/c9ra04147h. eCollection 2019 Jul 23.

Abstract

Mixed matrix membranes (MMMs) were developed by mixing hydrophilically modified two-dimensional (2D) imidazole framework (named as hZIF-L) flakes into a Pebax MH 1657 (Pebax) matrix, and designed to separate carbon dioxide/methane (CO/CH) mixtures. The hZIF-L flakes were important for increasing the effectiveness of the MMMs. First, the tannic acid (TA) etched hZIF-L flakes have a large number of microporous (1.8 nm) and two-dimensional anisotropic transport channels, which offered convenient gas transport channels and improved the permeability of CO. Second, the TA molecules provide the surface of the ZIF-L flakes with more hydrophilic functional groups such as carbonyl groups (C[double bond, length as m-dash]O) and hydroxyl groups (-OH), which could effectively prevent non-selective interfacial voids and filler agglomeration in the Pebax matrix, and also presented strong binding ability to water and CO molecules. The satisfactory interface compatibility and affinity with the CO molecule promoted its permeability, solubility, and selectivity. As a result, the MMMs exhibited the highest performance of gas separation with the hZIF-L flake weight content of 5%, at which the CO permeability and CO/CH selectivity were 502.44 barrer and 33.82 at 0.2 MPa and 25 °C, respectively.

摘要

通过将亲水性改性的二维(2D)咪唑框架(命名为hZIF-L)薄片混入Pebax MH 1657(Pebax)基质中制备了混合基质膜(MMM),并设计用于分离二氧化碳/甲烷(CO/CH)混合物。hZIF-L薄片对于提高MMM的有效性很重要。首先,单宁酸(TA)蚀刻的hZIF-L薄片具有大量微孔(1.8纳米)和二维各向异性传输通道,这提供了便利的气体传输通道并提高了CO的渗透率。其次,TA分子为ZIF-L薄片的表面提供了更多亲水性官能团,如羰基(C=O)和羟基(-OH),这可以有效防止Pebax基质中的非选择性界面空隙和填料团聚,并且对水和CO分子也具有很强的结合能力。与CO分子令人满意的界面相容性和亲和力促进了其渗透率、溶解度和选择性。结果,当hZIF-L薄片重量含量为5%时,MMM表现出最高的气体分离性能,在0.2MPa和25℃下,此时CO渗透率和CO/CH选择性分别为502.44巴耳和33.82。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d190/9067246/83195c42dd58/c9ra04147h-f1.jpg

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