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具有强化传质和抗污染性能的仿生杂化微/纳米结构复合膜用于高盐水膜蒸馏

Bioinspired Hybrid Micro/Nanostructure Composited Membrane with Intensified Mass Transfer and Antifouling for High Saline Water Membrane Distillation.

作者信息

Jiang Xiaobin, Shao Yushan, Li Jin, Wu Mengyuan, Niu Yuchao, Ruan Xuehua, Yan Xiaoming, Li Xiangcun, He Gaohong

机构信息

State Key Laboratory of Fine Chemicals, School of Chemical Engineering, Engineering Laboratory for Petrochemical Energy-efficient Separation Technology of Liaoning Province, Dalian University of Technology, Dalian 116024, P.R. China.

School of Chemical Engineering at Panjin, Dalian University of Technology, Panjin 124221, P.R. China.

出版信息

ACS Nano. 2020 Dec 22;14(12):17376-17386. doi: 10.1021/acsnano.0c07543. Epub 2020 Nov 16.

DOI:10.1021/acsnano.0c07543
PMID:33196181
Abstract

Membrane distillation (MD) holds great promise for high-saline solution treatment, but it is typically impeded by the trade-off between the high mass transfer and antifouling properties of the membrane. Herein, a new MD utilized membrane with bioinspired micro/nanostructure (lotus leaf and fish gill) was constructed on commercial PP membrane, which can simultaneously enhance the permeation flux and antifouling in the hypersaline MD operation. On the basis of the classic nucleation theory and hydrodynamics simulation, the nanoscale structure can intensify the interfacial nanoscale turbulent flow and hinder the crystal deposition, which works like the fish gill. In addition, the optimized nanoscale feature size renders the membrane with the heterogeneous nucleation barrier very similar to the homogeneous system, which works like the lotus leaf and hinders the induced nucleation effectively. The microscale structure as the supporting platform of nanostructure can additionally enlarge the effective evaporative surface with superior hydrophobicity and then promote the permeation transfer through the membrane. The hybrid micro/nanostructures render the fabricated membrane with excellent high-permeation flux and significantly prolonged fouling induction time, which sheds light on a new approach for the development of ideal MD utilized membrane.

摘要

膜蒸馏(MD)在高盐溶液处理方面具有巨大潜力,但通常会受到膜的高传质性能和抗污染性能之间权衡的阻碍。在此,一种具有仿生微/纳米结构(荷叶和鱼鳃)的新型MD用膜构建在商用PP膜上,其能够在高盐度MD操作中同时提高渗透通量和抗污染能力。基于经典成核理论和流体动力学模拟,纳米级结构可以强化界面纳米级湍流并阻碍晶体沉积,其作用类似于鱼鳃。此外,优化的纳米级特征尺寸使膜具有与均相系统非常相似的异相成核屏障,其作用类似于荷叶并有效阻碍诱导成核。作为纳米结构支撑平台的微尺度结构可以额外扩大具有优异疏水性的有效蒸发表面,进而促进透过膜的渗透传递。这种微/纳米结构的组合使制备的膜具有优异的高渗透通量和显著延长的污垢诱导时间,为开发理想的MD用膜提供了一种新方法。

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