Superhydrophilic and oleophobic sponges prepared based on Mussel‐Inspired chemistry for efficient oil‐water separation

Author:

Sun Jianteng123,Gao Feng12,Hu Jingwen14,Qi Zhixian14,Huang Yue123,Guo Yonggui143,Chen Ying143,Wei Junfu123,Zhang Huan12,Pang Qianchan5,Wang Huicai143,Zhang Xiaoqing5

Affiliation:

1. State Key Laboratory of Separation Membranes and Membrane Processes Tiangong University Tianjin 300387 China

2. School of Environmental Science and Engineering Tiangong University Tianjin 300387 China

3. Cangzhou Institute of Tiangong University Cangzhou 061000 China

4. School of Chemical Engineering and Technology Tiangong University Tianjin 300387 China

5. Research Center of Modern Analysis Technology Tianjin University of Science & Technology Tianjin 300457 China

Abstract

AbstractSuperhydrophilic/oleophobic materials are considered to be the best materials for achieving oil‐water separation, but their preparation is difficult and the existing methods are not universal. In this paper, a two‐step modification strategy was used to prepare superhydrophilic/oleophobic sponges by adjusting the polar and nonpolar components of the materials using mussel‐inspired chemistry. While remaining superhydrophilic, the modified sponge surface has a maximum contact angle of 135° with different oils in air. The modified sponge exhibited superoleophobicity in water, and the contact angle of oil could reach more than 150°. In addition, the modified sponges were also reusable, chemically stable, and mechanically durable. Its oil‐water separation flux was up to 24900 Lm−2 h−1 bar−1, and the separation efficiency was above 97 %. We believe that this method will provide an environmentally friendly and efficient way to prepare the superhydrophilic/oleophobic materials.

Funder

Tianjin Municipal Science and Technology Program

Publisher

Wiley

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