NUS Graduate School for Integrative Science and Engineering, National University of Singapore, Singapore 119077, Singapore.
Department of Chemical and Biomolecular Engineering, National University of Singapore, Singapore 117585, Singapore.
Environ Sci Technol. 2021 Jun 1;55(11):7654-7664. doi: 10.1021/acs.est.1c01269. Epub 2021 May 20.
Membranes with robust antiwetting and antifouling properties are highly desirable for membrane distillation (MD) of wastewater. Herein, we have proposed and demonstrated a highly effective method to mitigate wetting and fouling by designing nanofiltration (NF)-inspired Janus membranes for MD applications. The NF-inspired Janus membrane (referred to as PVDF-P-CQD) consists of a hydrophobic polyvinylidene fluoride (PVDF) membrane and a thin polydopamine/polyethylenimine (PDA/PEI) layer grafted by sodium-functionalized carbon quantum dots (Na-CQDs) to improve its hydrophilicity. The vapor flux data have confirmed that the hydrophilic layer does not add extra resistance to water vapor transport. The PVDF-P-CQD membrane exhibits excellent resistance toward both surfactant-induced wetting and oil-induced fouling in direct contact MD (DCMD) experiments. The impressive performance arises from the fact that the nanoscale pore sizes of the PDA/PEI layer would reject surfactant molecules by size exclusion and lower the propensity of surfactant-induced wetting, while the high surface hydrophilicity resulted from Na-CQDs would induce a robust hydration layer to prevent oil from attachment. Therefore, this study may provide useful insights and strategies to design novel membranes for next-generation MD desalination with minimal wetting and fouling propensity.
具有强抗湿和抗污性能的膜对于废水的膜蒸馏(MD)是非常理想的。在此,我们提出并展示了一种通过设计纳滤(NF)启发的Janus 膜来减轻 MD 应用中润湿和污染的高效方法。NF 启发的 Janus 膜(简称 PVDF-P-CQD)由疏水性聚偏二氟乙烯(PVDF)膜和通过钠离子功能化碳量子点(Na-CQDs)接枝的薄聚多巴胺/聚乙烯亚胺(PDA/PEI)层组成,以提高其亲水性。蒸汽通量数据证实,亲水性层不会增加水蒸气传输的额外阻力。在直接接触 MD(DCMD)实验中,PVDF-P-CQD 膜表现出优异的抗表面活性剂诱导润湿和油诱导污染的能力。令人印象深刻的性能源于这样一个事实,即 PDA/PEI 层的纳米级孔径通过尺寸排阻排斥表面活性剂分子,并降低表面活性剂诱导润湿的倾向,而源于 Na-CQDs 的高表面亲水性会诱导一个强大的水化层,以防止油附着。因此,这项研究可能为设计新一代 MD 脱盐的新型膜提供有用的见解和策略,以减少润湿和污染的倾向。