具有光催化自清洁特性的超亲水和水下超疏油膜用于高效油水分离:综述

IF 8.3 1区 工程技术 Q1 ENGINEERING, CHEMICAL
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引用次数: 0

摘要

处理不同来源的含油废水一直是全球关注的问题,也是国际法定义务的主题,因为它会对环境造成不利影响。传统的化学、物理和生物油水分离方法存在分离效率低、成本高、需要使用危险化学品和重型设备等不足。膜技术,尤其是基于膜表面油水超强润湿性原理的膜法,已成为一种可行的替代方法。表面润湿性的组合决定了膜是通过油还是通过水,膜表面润湿性的选择取决于含油水样的性质。使用过油膜的主要限制因素是油会堵塞膜,导致油水分离性能下降;虽然过水膜可以在很大程度上消除油堵塞,但油性水中有机污染物的积累会阻碍分离性能。许多研究工作都侧重于在膜涂层的基质中加入光催化材料,并有报告称,只需用紫外线或可见光照射膜,就能成功恢复膜的全部功能。本文综述了具有光催化自清洁特性的水上超亲水膜和水下超疏油膜,这些膜具有高渗透通量、更好的油分离效率和更强的抗污垢能力。重点介绍了不同类型的膜,即金属网支撑膜、聚合物支撑膜和陶瓷支撑膜。对这些膜的超润湿特性、光催化自清洁特性和分离性能进行了深入讨论。更重要的是,为了开发更有效的具有光催化自清洁性能的超亲水和水下超疏油膜用于油水分离,还提出了本课题的结论、目前的局限性和未来展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Super-hydrophilic and underwater super-oleophobic membranes with photocatalytic self-cleaning properties for highly efficient oil-water separation: A review

Super-hydrophilic and underwater super-oleophobic membranes with photocatalytic self-cleaning properties for highly efficient oil-water separation: A review

The treatment of oily wastewater, emerging from different sources has been a global concern, and the subject of international statutory obligation, as it causes adverse environmental repercussions. The conventional chemical, physical and biological methods of oil water separation have inadequacies like low separation efficiency, high cost, and the need for hazardous chemicals and heavy equipment. Membrane based technology, particularly membrane-based methods that work on the principle of super-wettability of oil and water on membrane surface has emerged as a viable alternative. The combination of surface wettability decides whether the membrane is oil passing or water passing, and the choice of the surface wettability of the membrane depends on the nature of oily water sample. The major constraint of using oil passing membrane is that oil clogs the membrane, leading to the deterioration of oil water separation performance; although water passing kind can considerably do away with oil clogging, the accumulation of organic contaminants present in the oily water hampers the performance of separation. There are many research works focusing on incorporating photocatalytic materials in the matrix of the membrane coatings, and reported successful restoration of the full functionality of membrane simply by irradiating the membranes with UV or visible light. This article reviews the water passing super-hydrophilic, and underwater super-oleophobic membranes, possessing photocatalytic self-cleaning properties, which yielded high permeation flux, better oil separation efficiency, and more robust resistance to fouling. An overview of different types of membranes, namely metallic mesh support-based membranes, polymeric support-based membranes, and ceramic support-based membranes has been highlighted. The superwetting characteristics, photocatalytic self-cleaning properties, and separation performance of these membranes have been thoroughly discussed. More importantly, the conclusion, current limitations, and future outlooks on this topic have been put forward for the sake of developing more effective super-hydrophilic and underwater super-oleophobic membranes with photocatalytic self-cleaning properties for oil-water separation.

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来源期刊
Desalination
Desalination 工程技术-工程:化工
CiteScore
14.60
自引率
20.20%
发文量
619
审稿时长
41 days
期刊介绍: Desalination is a scholarly journal that focuses on the field of desalination materials, processes, and associated technologies. It encompasses a wide range of disciplines and aims to publish exceptional papers in this area. The journal invites submissions that explicitly revolve around water desalting and its applications to various sources such as seawater, groundwater, and wastewater. It particularly encourages research on diverse desalination methods including thermal, membrane, sorption, and hybrid processes. By providing a platform for innovative studies, Desalination aims to advance the understanding and development of desalination technologies, promoting sustainable solutions for water scarcity challenges.
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