MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310027, China.
MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310027, China.
Carbohydr Polym. 2019 Oct 15;222:114970. doi: 10.1016/j.carbpol.2019.114970. Epub 2019 Jun 6.
Herein, we report novel macroporous membranes doped with micro-mesoporous β-cyclodextrin polymers (β-CDP), named β-CDP membranes, for water decontamination by the flow-through process. These membranes combine excellent adsorption behavior of β-CDP and the advantages of membranes filtration including low energy consumption and easy scale-up. Filtration adsorption results demonstrated that the optimal β-CDP membrane removed > 99.9% of bisphenol A with ultrahigh water flux (3000 L m h) or high concentration (50 mg L). The dynamic adsorption capacity of the membrane was close to the static maximum adsorption capacity of membrane, suggesting the effective accessibility of adsorption sites. The outstanding adsorption performance was attributed to the synergistic effect of the fast adsorption of β-CDP, abundant β-CDP nanoparticles and large contact area offered by spongy pores. Furthermore, not only single other organic micropollutants but also mixture was completely removed by the β-CDP membranes. In addition, the membranes were easily regenerated by simple ethanol filtration.
在此,我们报告了一种新型的大孔膜,其中掺杂了微介孔β-环糊精聚合物(β-CDP),称为β-CDP 膜,用于通过流动过程对水进行净化。这些膜结合了β-CDP 的优异吸附性能和膜过滤的优点,包括低能耗和易于放大。过滤吸附结果表明,最佳的β-CDP 膜以超高水通量(3000 L m h)或高浓度(50 mg L)去除了超过 99.9%的双酚 A。膜的动态吸附容量接近膜的静态最大吸附容量,表明吸附位点的有效可及性。出色的吸附性能归因于β-CDP 的快速吸附、丰富的β-CDP 纳米粒子和海绵状孔提供的大接触面积的协同作用。此外,不仅是单一的其他有机微量污染物,而且混合物都被β-CDP 膜完全去除。此外,通过简单的乙醇过滤可以轻松地对膜进行再生。