ZIF-8@GO composites incorporated polydimethylsiloxane membrane with prominent separation performance for ethanol recovery

ty10086 提交于 周四, 08/26/2021 - 13:08
文章英文标题
ZIF-8@GO composites incorporated polydimethylsiloxane membrane with prominent separation performance for ethanol recovery
正文
摘要\n本研究通过在氧化石墨烯( GO )纳米片表面原位生长沸石咪唑酸骨架8 ( ZIF-8 )纳米粒子,制备了具有连续内通道的ZIF-8 @ GO乙醇分子复合材料,并填充到聚二甲基硅氧烷( PDMS )基体中,制备了PDMS / ZIF-8 @ GO混合基质膜( MMMs ),用于渗透蒸发回收乙醇。采用多种技术对所制备的ZIF-8 @ GO复合材料和PDMS / ZIF-8 @ GO MMMs进行了表征。结果表明,ZIF-8纳米粒子均匀分散在GO纳米片表面,ZIF-8 @ GO复合材料的疏水性比GO强,这是由于ZIF-8疏水性对GO进行表面修饰。而且,ZIF-8 @ GO复合材料作为填料不仅与PDMS表现出优异的相容性,而且与ZIF-8纳米粒子相比,在PDMS基体中表现出良好的分散性。因此,ZIF-8 @ GO基MMMs比ZIF-8基MMMs表现出更好的分离性能。通过调节填料种类、颗粒负荷、膜厚和进料温度,研究了PDMS / ZIF-8 @ GO MMMs的渗透蒸发性能。优化后的PDMS / ZIF-8 @ GO MMMs与5 wt %乙醇水溶液在40℃下,总通量为443.8 g / m2 h,分离因子为22.2,与大多数PDMS基MMMs相比,渗透汽化性能更优。优异的渗透汽化结果归因于GO纳米片作为强阻隔剂与具有连续内通道的疏水ZIF-8纳米粒子的协同作用。杂化粒子的协同效应可能为开发高性能PDMS基MMMs用于各种有机物的渗透汽化回收提供有价值的指导。
文章内容(英文)
Abstract(#br)In this study, ZIF-8@GO composites with continuous inner channels for ethanol molecules were prepared by the in-situ growth of zeolitic imidazolate framework-8 (ZIF-8) nanoparticles onto the surface of graphene oxide (GO) nanosheets, and filled into polydimethylsiloxane (PDMS) matrix to fabricate PDMS/ZIF-8@GO mixed matrix membranes (MMMs) for ethanol recovery via pervaporation. The as-prepared ZIF-8@GO composites and PDMS/ZIF-8@GO MMMs were characterized by various techniques. The results showed that ZIF-8 nanoparticles were uniformly dispersed on the surface of GO nanosheets and the hydrophobicity of ZIF-8@GO composites was stronger than GO due to the surface modification of GO by hydrophobic ZIF-8. Moreover, ZIF-8@GO composites as the filler not only exhibited the excellent compatibility with PDMS but also showed the good dispersion in PDMS matrix as compared to ZIF-8 nanoparticles. Therefore, ZIF-8@GO-based MMMs showed better separation performance than ZIF-8-based MMMs. The pervaporation performance of PDMS/ZIF-8@GO MMMs was studied by adjusting the filler type, particle loading, membrane thickness, and feed temperature. The optimized PDMS/ZIF-8@GO MMMs displayed a prominent separation factor of 22.2 with a total flux of 443.8 g/m 2 h with 5 wt% ethanol aqueous solution at 40 °C, and therefore the superior pervaporation performance to most other PDMS-based MMMs. The excellent pervaporation results were attributed to the synergistic effect of GO nanosheet as a strong barrier and hydrophobic ZIF-8 nanoparticles with the continuous inner channels. The synergistic effect of hybrid particles may provide valuable guidance to the development of high-performance PDMS-based MMMs for pervaporation recovery of various organic compounds.
来源出处
Journal|[J]Journal of Membrane ScienceVolume 598, 2020.
DOI
https://doi.org/10.1016/j.memsci.2019.117681

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