膜
膜蒸馏
润湿
成核
材料科学
缩放比例
化学工程
接触角
海水淡化
纳米技术
纳米颗粒
复合材料
化学
有机化学
数学
生物化学
工程类
几何学
作者
Chunlei Su,Thomas Horseman,Hongbin Cao,Kofi S. S. Christie,Yuping Li,Shihong Lin
标识
DOI:10.1021/acs.est.9b04362
摘要
We report in this study a scalable and controllable approach for fabricating robust and high-performance superhydrophobic membranes for membrane distillation (MD). This novel approach combines electro-co-spinning/spraying (ES2) with chemical vapor welding and enables the formation of robust superhydrophobic (r-SH) membranes that are mechanically strong, highly porous, and robustly superhydrophobic. Compared with superhydrophobic membranes obtained using surface deposition of fluorinated nanoparticles, the r-SH membranes have more robust wetting properties and higher vapor permeability in MD. MD scaling experiments with sodium chloride and gypsum show that the r-SH membrane is highly effective in mitigating mineral scaling. Finally, we also discuss the mechanism of scaling resistance enabled by superhydrophobic membranes with a highlight on the roles of the surface-bound air layer in reducing the crystal-membrane contact area, nucleation propensity, and ion-membrane contact time.
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