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Tailoring electrospun nanofibrous materials for oil/water emulsion separation

期刊

JOURNAL OF THE TEXTILE INSTITUTE
卷 113, 期 10, 页码 2285-2298

出版社

TAYLOR & FRANCIS LTD
DOI: 10.1080/00405000.2021.1969158

关键词

Electrospinning; nanofibers; porous materials; selective wettability; oil; water separation; emulsion separation

资金

  1. National Natural Science Foundation of China [51773033, 21961132024]

向作者/读者索取更多资源

Pollution from emulsified oil/water mixtures poses a serious threat to ecosystems and human health, driving the development of advanced separation materials. Electrospun nanofibrous materials are gaining attention due to their controllable wettability, diverse pore structures, and excellent pore connectivity for emulsion separation. Through systematic design and construction, nanofibrous materials categorized into membranes with small pore size, membranes with hierarchical fibers, and aerogel with tortuous microchannels demonstrate potential for effective separation.
The pollution arising from emulsified oil/water mixtures is an issue of great concern owing to its fatal impact on the ecosystems and human health, which has stimulated one to develop advanced separation materials. Electrospun nanofibrous materials featured with controllable wettability, diverse pore structures, and excellent pore connectivity have received tremendous attention. Here we mainly focus on the systematic design and construction of nanofibrous materials by electrospinning for oil/water emulsion separation. Firstly, a comprehensive understanding of emulsion separation is provided, and then we discuss the considerations for nanofibrous materials to realize emulsion separation. Then, the materials will be categorized into three types, involving membranes with small pore size, membranes with hierarchical fibers, and aerogel with tortuous microchannels. In each section, we introduce the representative work, preparation strategies, and the relationship between fibrous structure, material wettability, and separation performance. Finally, the promising perspectives and challenges in the field are summarized.

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