Membrane hydrophobicity enhanced by non-solvent induced separation strategy for improving membrane distillation performance

Ling Yu , Yiqiao Xie , Liangzhong Li , Meng Zhang , Yang Yu
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Abstract

Development of high-performance hydrophobic layer using green and economic method is still urgently on demand for wide applications of membrane distillation (MD). In this study, a novel Janus membrane was prepared by electrospinning polystyrene with the water addition on the surface of hydrophilic electrospun nanofiber substrate. With increasing water content to 3 wt%, the hydrophobic layer is completely converted to be nanofiber-dominate morphology that could be beneficial for water vapor permeation during MD process. The surface roughness, water contact angle value and porosity of the hydrophobic layer are enhanced by the water addition, and the optimized Janus membrane with the hydrophobic layer prepared at the water content of 2 wt% could achieve a high water flux of 33.1 L/m2h and superior salt rejection of >99.9 % when 3.5 wt% NaCl solution was used as the feed solution. The as-prepared Janus membrane shows better performance stability and reusability than the control membrane (without the water addition) within the 24-h continuous operation duration. Our work demonstrates that the proper water addition could be used as a green strategy for fabricating efficient electrospun nanofiber membranes for the direct contact membrane distillation (DCMD) processes.

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通过非溶剂诱导分离策略增强膜疏水性以提高膜蒸馏性能
利用绿色、经济的方法开发高性能疏水层仍是膜蒸馏(MD)广泛应用的迫切需求。本研究通过在亲水性电纺纳米纤维基底表面加水电纺聚苯乙烯,制备了一种新型 Janus 膜。随着水含量增加到 3 wt%,疏水层完全转化为纳米纤维为主的形态,这有利于 MD 过程中水蒸气的渗透。加水后,疏水层的表面粗糙度、水接触角值和孔隙率都得到了提高,在含水量为 2 wt% 时制备的带有疏水层的优化 Janus 膜可以达到 33.1 L/m2h 的高水通量,当使用 3.5 wt% 的 NaCl 溶液作为进料溶液时,盐排斥率高达 99.9%。与对照膜(未加水)相比,制备的 Janus 膜在 24 小时连续运行期间表现出更好的性能稳定性和可重复使用性。我们的工作表明,适当加水可作为一种绿色策略,用于制造直接接触膜蒸馏(DCMD)过程中的高效电纺纳米纤维膜。
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