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Hierarchically Structured Janus Membrane Surfaces for Enhanced Membrane Distillation Performance

机译:分层结构的Janus膜表面,用于增强膜蒸馏性能

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摘要

Commercial hydrophobic poly(vinylidene fluoride) (PVDF) membranes are vulnerable to membrane fouling and pore wetting, hampering the use of membrane distillation (MD) for the treatment of surfactant- and oil-containing feed streams. To address these challenges, we designed novel Janus membranes with multilevel roughness to mitigate foulant adhesion and prevent pore wetting. Specifically, fouling- and wetting-resistant Janus MD membranes with hierarchically structured surfaces were tailored via a facile technique that involved oxidant-induced dopamine polymerization followed by in situ immobilization of silver nanoparticles (AgNPs) on commercial PVDF hollow fiber substrates. These membranes demonstrated outstanding antifouling properties and salt rejection performances in comparison to membranes with single-level structures. We ascribed the membranes' excellent performances to the coupled effects of improved surface hydrophilicity and self-healing mechanism brought about by AgNPs. Furthermore, the newly engineered membranes exhibited antibacterial properties in Bacillus acidicola solutions as evidenced by clear inhibition zones observed on a confocal laser scanning microscope. The development of hierarchically structured Janus MD membranes with multilevel roughness paves a way to mitigate membrane fouling and pore wetting caused by low-surface-tension feed streams in the MD process.
机译:商业疏水聚(偏二氟乙烯)(PVDF)膜容易受膜污垢和孔隙润湿,妨碍使用膜蒸馏(MD)处理表面活性剂和含油的进料流。为了解决这些挑战,我们设计了具有多级粗糙度的新型Janus膜,以减轻污垢的粘附,防止毛孔润湿。具体地,通过涉及氧化剂诱导的多巴胺聚合的容纳技术定制具有分层结构表面的污垢和润湿的Janus MD膜,然后在商业PVDF中空纤维基材上原位固定银纳米粒子(AgNP)。这些膜与单级结构的膜相比,这些膜展现出优异的防污性能和盐排斥性能。我们归因于通过AgNP引起的改善的表面亲水性和自愈机制的耦合效应的膜的优异表现。此外,新工程化膜在甲硝酸溶液溶液中表现出抗菌性质,如在共聚焦激光扫描显微镜上观察到的透明抑制区所证明的。具有多级粗糙度的分层结构Janus MD膜的开发铺设了一种方法来减轻由MD工艺中的低表面张力进料流引起的膜污垢和孔隙润湿。

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