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具有多尺度分级树枝状结构的仿生铜膜的高效油水分离

Energy-Efficient Oil-Water Separation of Biomimetic Copper Membrane with Multiscale Hierarchical Dendritic Structures.

作者信息

Han Zhiwu, Li Bo, Mu Zhengzhi, Niu Shichao, Zhang Junqiu, Ren Luquan

机构信息

Key Laboratory of Bionic Engineering, Ministry of Education, Jilin University, Changchun, 130022, Jilin, P. R. China.

Department of Chemical Engineering, University of Michigan, Ann Arbor, MI, 48109, USA.

出版信息

Small. 2017 Sep;13(34). doi: 10.1002/smll.201701121. Epub 2017 Jul 17.

Abstract

Membrane-based materials with special surface wettability have been applied widely for the treatment of increasing industrial oily waste water, as well as frequent oil spill accidents. However, traditional technologies are energy-intensive and limited, either by fouling or by the inability of a single membrane to separate all types of oil-water mixtures. Herein, a biomimetic monolayer copper membrane (BMCM), composed of multiscale hierarchical dendritic structures, is cleverly designed and successfully fabricated on steel mesh substrate. It not only possesses the ability of energy-efficient oil-water separation but also excellent self-recovery anti-oil-fouling properties (<150 s). The BMCM even keeps high separation efficiency (>93%) after ten-time cycling tests. More importantly, it retains efficient oil-water separation capacity for five different oils. In fact, these advanced features are benefited by the synergistic effect of chemical compositions and physical structures, which is inspired by the typical nonwetting strategy of butterfly wing scales. The findings in this work may inspire a facile but effective strategy for repeatable and antipollution oil-water separation, which is more suitable for various applications under practical conditions, such as wastewater treatment, fuel purification, separation of commercially relevant oily water, and so forth.

摘要

具有特殊表面润湿性的膜基材料已被广泛应用于处理日益增多的工业含油废水以及频繁发生的石油泄漏事故。然而,传统技术能耗高且存在局限性,要么受到污染,要么单个膜无法分离所有类型的油水混合物。在此,一种由多尺度分级树枝状结构组成的仿生单层铜膜(BMCM)被巧妙设计并成功制备在钢网基底上。它不仅具有高效油水分离能力,还具有出色的自恢复抗油污性能(<150秒)。经过十次循环测试后,BMCM仍保持高分离效率(>93%)。更重要的是,它对五种不同的油都保持高效的油水分离能力。实际上,这些先进特性得益于化学成分和物理结构的协同效应,这是受蝴蝶翅膀鳞片典型的非润湿策略启发。这项工作中的发现可能会激发一种简便而有效的可重复且抗污染油水分离策略,该策略更适用于实际条件下的各种应用,如废水处理、燃料净化、商业相关含油水的分离等。

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