Wang Chao, Ma Zhongbao, Qiu Yangbo, Wang Chengyi, Ren Long-Fei, Shen Jiangnan, Shao Jiahui
School of Environmental Science and Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China.
School of Environmental Science and Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China.
Water Res. 2023 Aug 15;242:120308. doi: 10.1016/j.watres.2023.120308. Epub 2023 Jul 4.
Membrane fouling, wetting and scaling are three prominent challenges that severely hinder the practical applications of membrane distillation (MD). Herein, polyamide/polyvinylidene fluoride (PA/PVDF) Janus membrane comprising a hydrophobic PVDF substrate and a patterned dense PA layer by reverse interfacial polymerization (R-IP) was developed. Direct contact MD experiments demonstrated that PA/PVDF Janus membrane could exhibit simultaneously superior resistance towards surfactant-induced wetting, oil-induced fouling and gypsum-induced scaling without compromising flux. Importantly, the size-sieving effect, rather than the breakthrough pressure of the membrane, was revealed as the critical factor that probably endowed its resistance to wetting. Furthermore, a unique possible anti-scaling mechanism was unveiled. The superhydrophilic patterned dense PA layer with strong salt rejection capability not only prevented scale-precursor ions from intruding the substrate but also resulted in the high surface interfacial energy that inhibited the adhesion and growth of gypsum on the membrane surface, while its relatively low surface -COOH density benefited from R-IP process further ensured the membrane with a low scaling propensity. This study shall provide new insights and novel strategies in designing high-performance MD membranes and enable robust applications of MD facing the challenges of membrane fouling, wetting and scaling.
膜污染、润湿和结垢是严重阻碍膜蒸馏(MD)实际应用的三大突出挑战。在此,通过反向界面聚合(R-IP)制备了一种聚酰胺/聚偏氟乙烯(PA/PVDF) Janus膜,该膜由疏水性PVDF基底和图案化致密PA层组成。直接接触MD实验表明,PA/PVDF Janus膜在不影响通量的情况下,能够同时表现出对表面活性剂诱导的润湿、油诱导的污染和石膏诱导的结垢的优异抗性。重要的是,膜的筛分效应而非突破压力被揭示为可能赋予其抗润湿性能的关键因素。此外,还揭示了一种独特的可能的抗结垢机制。具有强拒盐能力的超亲水性图案化致密PA层不仅阻止了结垢前驱体离子侵入基底,而且导致高表面界面能,抑制了石膏在膜表面的粘附和生长,而其相对较低的表面-COOH密度得益于R-IP过程,进一步确保了膜具有低结垢倾向。本研究将为设计高性能MD膜提供新的见解和新颖策略,并使MD在面对膜污染、润湿和结垢挑战时能够稳健应用。