Superoleophobic Polyketone Nanofiber Membranes for Efficient Separation of Oil/water Emulsions

Author:

Hou Jian12ORCID,Choi Jinwon2ORCID,Yun Jaehan23ORCID,Jang Wongi2ORCID,Kim Jun‐Hyun4ORCID,Byun Hongsik2ORCID

Affiliation:

1. School of Intelligent Manufacturing Luoyang Institute of Science and Technology Luoyang 471023 China

2. Department of Chemical Engineering Keimyung University Daegu 42601 South Korea

3. Gyeongbuk Hybrid Technology Institute Yeongcheon 38899 South Korea

4. Department of Chemistry Illinois State University Normal IL 61790 (U.S.A)

Abstract

AbstractElectrospun nanofiber membranes derived from polyketone (PK) are precisely fabricated to exhibit an excellent separation efficiency for oil/water emulsions. The fiber diameter and pore size of the membrane are controlled by introducing NaOH to the precursor solution prior to electrospinning. The surface properties of the nanofibers are then controlled by the removal of NaOH with water and reduction of functional groups with sodium borohydride (NaBH4) to exhibit an air‐water superhydrophilicity and underwater superoleophobicity. This surface conversion process is easily monitored by the water contact angle and the underwater oil contact angle. Oil/water emulsions, including toluene, soybean oil, and hexadecane are filtered through the membranes to examine their separation efficiency and flux using total organic carbon and UV‐Vis measurements. The optimized membrane exhibits the minimum 97 % separation efficiency for all three oil/water emulsions and recyclability without notably losing its flux under gravity‐driven filtration conditions.

Publisher

Wiley

Subject

Materials Chemistry,Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Biomaterials

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