Cai Yahui, Chen Dongyun, Li Najun, Xu Qingfeng, Li Hua, He Jinghui, Lu Jianmei
Collaborative Innovation Center of Suzhou Nano Science and Technology, College of Chemistry Chemical Engineering and Materials Science Soochow University, 199 Ren'ai Road, Suzhou, 215123, P. R. China.
Adv Mater. 2020 Jun;32(25):e2001265. doi: 10.1002/adma.202001265. Epub 2020 May 13.
Lack of clean water is a major global challenge. Membrane separation technology is an ideal choice for the treatment of industrial, domestic sewage owing to its low energy consumption and cost. However, membranes are highly susceptible to contamination, particularly during wastewater treatment, which has limited their practical applications in this field. Similarly, the flux of the membrane decreases with prolonged use due to its reduced interlayer spacing. Preparation of membranes with anticontamination properties and stable flux is the key to addressing this problem. In this study, a 2D heterostructure membrane with visible-light-driven self-cleaning performance is prepared via a self-assembly process. Notably, the addition of palygorskite increases the interlayer spacing of the graphene and heterojunction structures, which increases the flux of the membrane and avoids a decrease of the interlayer spacing of the membrane under pressure. The presence of a heterojunction with visible light catalytic properties effectively avoids membrane fouling and avoids a sharp decrease of the permeation flux. Importantly, the prepared 2D membrane has excellent separation performance for oil-water emulsions with both high flux and efficiency. These features suggest great potential for the prepared 2D membrane in wastewater treatment applications.
缺乏清洁水是一项重大的全球挑战。膜分离技术因其低能耗和低成本,是处理工业和生活污水的理想选择。然而,膜极易受到污染,尤其是在废水处理过程中,这限制了它们在该领域的实际应用。同样,由于膜的层间距减小,其通量会随着使用时间的延长而降低。制备具有抗污染性能和稳定通量的膜是解决这一问题的关键。在本研究中,通过自组装过程制备了具有可见光驱动自清洁性能的二维异质结构膜。值得注意的是,添加坡缕石增加了石墨烯和异质结结构的层间距,这增加了膜的通量,并避免了膜在压力下的层间距减小。具有可见光催化性能的异质结的存在有效地避免了膜污染,并避免了渗透通量的急剧下降。重要的是,所制备的二维膜对油水乳液具有优异的分离性能,通量和效率都很高。这些特性表明所制备的二维膜在废水处理应用中具有巨大潜力。