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Journal of Bionic Engineering ›› 2022, Vol. 19 ›› Issue (6): 1615-1624.doi: 10.1007/s42235-022-00231-y

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Fabrication of Durable Superhydrophobic Stainless Steel Mesh with Nano/Micro Flower-Like Morphologies for Self-Cleaning and Efficient Oil/Water Separation

Changlian Xu1; Yitong Luo1; Lu Zhou1; Yiwen Bi1; Hao Sun1   

  1. 1 College of Environmental Sciences, Sichuan Agricultural University-Chengdu Campus, 211 Huimin Road, Chengdu 611130, China
  • Received:2022-03-11 Revised:2022-06-14 Accepted:2022-06-17 Online:2022-11-10 Published:2022-11-10
  • Contact: Changlian Xu E-mail:changlian.xu@sicau.edu.cn
  • About author:Changlian Xu1; Yitong Luo1; Lu Zhou1; Yiwen Bi1; Hao Sun1

Abstract: How to fabricate durable superhydrophobic materials for cyclic oil/water separation to solve oil-induced pollutions is still a problem. Herein, we fabricated a durable Superhydrophobic Stainless Steel Mesh (SH-SSM) with nano/micro flower-like sheets by self-assembly of zinc stearate for the cyclic separation of various oil/water mixtures. The SH-SSM exhibits durable superhydrophobicity against static or dynamic treatments. In virtue of durable superhydrophobicity of the SH-SSM, the dusts on surface of SH-SSM can be removed completely by running water immediately showing excellent self-cleaning performance. Moreover, the SH-SSM can be used to perform gravity-driven separation of heavy oil/water and light oil/water mixtures by utilizing its superhydrophobicity that oil phase penetrates the mesh and water phase is restricted. Separation efficiencies of the SH-SSM can reach 99.99%. After 20 cycles of separation, the separation efficiencies for are?>?97.00% and?>?98.25% for heavy oil/water and light oil/water mixtures, respectively. Flux values of dichloromethane, hexane and petroleum ether are 2.5?×?105 L m?2 h?1, 1.7?×?105 L m?2 h?1, and 1.8?×?105 L m?2 h?1, respectively. This study proposes a facial approach to prepare durable superhydrophobic and self-cleaning material for cyclic and fast separation of oil/water.

Key words: Oil–water separation , · Self-assembly , · Superhydrophobic , · Self-cleaning , · Bioinspired