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Superhydrophilic and underwater superoleophobic membranes - review of synthesis methods

机译:超硫酸和水下超级膜 - 合成方法综述

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Wastewaters containing oil-in-water (O/W) emulsions are generated daily in various industrial processes such as petroleum refining, petrochemical and metal finishing. Environmental and economic concerns related to the disposal of oily wastewaters emphasize demands for materials and methods that can effectively separate oil from water. Pressure-driven membrane processes have been employed for oil/water separations. The major challenge that hinders the suitability of membrane technology for industrial oily wastewater treatment is the adsorption of oil and surfactants onto the membrane surface and/or within the pores of the membrane, which severely deteriorates the membrane performance. Materials with both hydrophobic and oleophilic properties have attracted significant attention in recent years for oil removal from water. These oil-removing type of materials can be used for membrane filtration or selective and efficient absorption of oil from water. The application of oil-removing materials can successfully introduce special wettability to the oily wastewater treatment. However, these materials are fouled quickly by oil droplets because of their intrinsic oleophilic properties. The attached oil droplets on the membrane surface severely affect separation efficiency. Besides, the adhered oil droplets are hardly removable from the surface resulting in reduced life-cycle of oleophilic materials, and this thus necessitates the need for costly post-treatment processes. Therefore, it is essential to develop high-performance materials for oil/water separation with elevated separation efficiency and significant antifouling properties. This study aims to review the state-of-the-art superhydrophilic and underwater superoleophobic (SUS) membranes that are being developed to overcome the aforementioned challenges. This allows to probe the maximal potential of developing such materials, and to explore the feasibility of using these novel membranes for de-oiling processes conventionally performed using expensive and low-performance skim tanks and adsorbents. In this review, according to the various materials that have been used for membrane fabrication, development methods for membrane synthesis with SUS properties based on polymeric SUS membranes and organic-inorganic hybrid SUS membranes including grafting, non-solvent phase separation (NIPS) polymeric membrane with hierarchical glue/tape-free surface, surface coating, in situ mineralization combined with polymeric materials and surface coating of polymeric membranes with inorganic nanoparticles, respectively, are assessed, in view of suggesting the success potential of these methods. (C) 2019 Elsevier B.V. All rights reserved.
机译:含有水式油状(O / W)乳液的废水在各种工业过程中产生,例如石油精炼,石化和金属精加工。与油性废水处置有关的环境和经济问题强调了对可以有效地将油与水分离的材料和方法的要求。已经使用压力驱动的膜方法用于油/水分离。阻碍了膜技术对工业油性废水处理的适用性的主要挑战是将油和表面活性剂吸附到膜表面上和/或膜的孔内,这严重降低了膜性能。近年来,疏水性和疏水性质的材料吸引了来自水的油。这些油去除型材料可用于膜过滤或选择性和有效地吸收来自水的油。除油材料的应用可以成功地对油性废水处理引起特殊的润湿性。然而,由于其内在的疏油性能,这些材料被油滴液体污染。膜表面上的附着油滴严重影响分离效率。此外,粘附的油滴几乎不能从表面中除去,导致更油脂材料的生命周期降低,因此需要需要昂贵的后处理过程。因此,对于具有升高的分离效率和显着的防污性能,必须开发高性能的油/水分离材料。本研究旨在审查正在开发的最先进的超嗜水溶性和水下超细(SUS)膜,以克服上述挑战。这允许探测开发这种材料的最大电位,并探讨使用这些新型膜用于使用昂贵和低性能的脱脂罐和吸附剂进行拆卸过程的可行性。在本文中,根据已经用于膜制造的各种材料,基于聚合物SU膜和有机 - 无机杂交SU膜的SUS性能的膜合成的显影方法包括接枝,非溶剂相分离(NIPS)聚合物膜考虑到暗示这些方法的成功潜力,评估了分别与聚合物纳米颗粒的聚合物材料和聚合物膜的聚合物膜结合的表面涂层。 (c)2019年Elsevier B.V.保留所有权利。

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