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二维碳基薄膜及其高分子复合材料的构筑和油水分离性能研究进展 被引量:4

Recent advance of two-dimensional carbon-based films and their polymer functionalized membranes for oil/water separation
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摘要 随着环保意识的提高,含油污水的净化已成为一个重要课题.碳基(石墨烯、碳纳米管)薄膜材料,尤其是高分子功能化的碳基薄膜材料为含油废水等环境污染问题的解决提供了有效途径.本文综述了近年来高分子功能化碳基薄膜在污水处理方面的研究进展.根据润湿性和功能不同,将碳基薄膜材料分为超疏水性碳基薄膜材料、超亲水性碳基薄膜材料、Janus结构碳基薄膜材料、智能性碳基薄膜材料和多功能性碳基薄膜材料5个部分.在每部分中,详细讨论了设计策略、制备方法以及润湿性对含油废水分离性能的影响.最后,对高分子功能化碳基薄膜用作含油废水净化的发展前景和面临的挑战进行了综合讨论. Oily water treatment has become an urgent task in our daily life because of the environmental and economic demands.Traditionally, gravity separation, flotation and filtration are used to separate oil/water mixtures successfully, but these methods have some drawbacks, including energy waste, low efficiency and secondary environmental pollution. In recent years, advanced materials with superwetting property involving superhydrophobic/superoleophilic separation materials,superhydrophilic and under-water superoleophobic separation materials, Janus separation materials, smart separation materials with switchable wettability emerge as a new research direction to address these problems. Because of the convenient separation and low-energy consumption, membrane separation material shows great advantages over conventional separation materials, which has a promising choice in the area of oily water treatment. Despite all these progress, most of the membranes separation materials are suffered from several limits for separating surfactant-stabilized oil/water emulsions and surfactant-free oil/water emulsions with micron or nanometer size, which may bring long-term damage to the natural environment. Furthermore, due to the presence of various harmful substances involving organic solvents, bacterial, heavy metal ions in real sewage system, the water pollution has become more serious and thus the resultant water phase is not suitable to put into the water system even after several separation cycles. From this perspective,to construct novel separation membrane materials with multifunction, good separation efficiency, high recyclability and convenient separation process for the separation of oil/water emulsions is passionately desired.Carbon-based(graphene and carbon nanotubes) membranes materials, especially polymer-functionalized carbon-based membrane materials, have gained increasingly attentions attributing to their outstanding physical and chemical properties,therefore are considered as an important choice for the separation of oily wastewater. Until now, there are tremendous advances on the carbon-based materials for oil/water separation, but most of them are focused on the development of three dimensional carbon-based separation materials, whereas the carbon-based membranes which play an important role on the treatment of oily wastewater have been almost neglected. Based on these, the research progress of polymer modified carbon-based films in wastewater treatment in recent years is reviewed in this paper. According to wettability and functions, the carbon-based membranes are divided into five parts:(1) Superhydrophobic carbon-based separation membranes,(2) superhydrophilic carbon-based separation membranes,(3) Janus carbon-based separation membranes,(4)smart carbon-based separation membranes, and(5) multi-functional carbon-based separation membranes. In each part, the influences of design routes, preparation methods and wetting behaviors on the separation efficiency of oily wastewater are discussed in detail. Finally, the development prospects and challenges of carbon-based membranes used for oil-containing wastewater purification are comprehensively discussed.
作者 谷金翠 张磊 张佳玮 陈涛 Jincui Gu;Lei Zhang;Jiawei Zhang;Tao Chen(Ningbo Institute of Materials Technology and Engineering,Chinese Academy of Sciences,Ningbo 315201,China)
出处 《科学通报》 EI CAS CSCD 北大核心 2019年第22期2316-2331,共16页 Chinese Science Bulletin
基金 国家自然科学基金(51603216,51803226) 海洋材料及相关技术重点实验室开放研究基金(2017K03) 中国科学院前沿科学与教育局(QYZDBSSW-SLH036) 宁波市科技局(2018A610097) 宁波市科技专项基金(2016C50009)资助
关键词 碳基薄膜 高分子功能化 油水分离 润湿性 carbon-based film polymer brush functionalization oil/water separation wetting behavior
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