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首页> 外文期刊>Separation and Purification Technology >MCM-41@ZIF-8/PDMS hybrid membranes with micro- and nanoscaled hierarchical structure for alcohol permselective pervaporation
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MCM-41@ZIF-8/PDMS hybrid membranes with micro- and nanoscaled hierarchical structure for alcohol permselective pervaporation

机译:MCM-41 @ ZIF-8 / PDMS杂化膜,具有微米级和纳米级分级结构,可选择性渗透酒精

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摘要

In the alcohol permselective pervaporation process, the hydrophobicity of the membrane usually plays an important role. The microstructure of membrane surface has significant influence on its hydrophobicity. In this study, a MCM-41@ZIF-8/PDMS hybrid membrane with micro- and nanoscaled hierarchical structure was prepared. ZIF-8 nanocrystal in situ grew on the surface of microscaled MCM-41 to fabricate MCM-41@ZIF-8 hybrid particles. These hybrid particles were modified by hydrophobic silane coupling agent to become superhydrophobic, and dispersed in PDMS matrix to form a composite membrane. The hydrophobicity of MCM-41@ZIF-8/PDMS membrane improved because of its hierarchical structure. The alcohol affinity of the membrane was thus enhanced. Moreover, owing to the porosity of MCM-41 and ZIF-8 particles, the flux of the hybrid membrane was significantly improved. The prepared MCM-41@ZIF-8/PDMS hybrid membranes exhibited a relative high flux (2201 g/m(2) h) with a separation factor of 10.4 in the separation of 5.0 wt% ethanol/water mixtures. In addition, these membranes can also be used in separating n-butanol/water mixtures with excellent separation performance. Therefore, the membrane is expected to have potential application in alcohol permselective pervaporation. (C) 2015 Elsevier B.V. All rights reserved.
机译:在醇的选择性渗透蒸发过程中,膜的疏水性通常起重要作用。膜表面的微观结构对其疏水性有重要影响。在本研究中,制备了具有微米和纳米级分级结构的MCM-41 @ ZIF-8 / PDMS杂化膜。 ZIF-8纳米晶体原位生长在微型MCM-41的表面上,以制造MCM-41 @ ZIF-8杂化颗粒。这些杂化颗粒通过疏水性硅烷偶联剂改性成为超疏水性,并分散在PDMS基质中形成复合膜。 MCM-41 @ ZIF-8 / PDMS膜的疏水性由于其分层结构而得到改善。因此提高了膜的醇亲和力。此外,由于MCM-41和ZIF-8颗粒的孔隙率,杂化膜的通量得到显着提高。制备的MCM-41 @ ZIF-8 / PDMS混合膜在5.0 wt%乙醇/水混合物的分离中表现出相对较高的通量(2201 g / m(2)h),分离系数为10.4。另外,这些膜还可以用于分离具有优异分离性能的正丁醇/水混合物。因此,该膜有望在酒精的选择性渗透蒸发中具有潜在的应用。 (C)2015 Elsevier B.V.保留所有权利。

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