Shao Xingqi, Wu Kai, Xu Jicheng, Yue Xuejie, Jiang Yan, Yurekli Yilmaz, Dai Yuting, Zhang Tao, Yang Dongya, Qiu Fengxian
School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, China.
Jiangsu Province Engineering Research Center of Surface and Interface Functional Composites; Institute of Chemistry and Materials Science, Zhenjiang College, Zhenjiang 212028, China.
Langmuir. 2025 Jul 22;41(28):18664-18673. doi: 10.1021/acs.langmuir.5c01802. Epub 2025 Jul 10.
Purification of oil-in-water emulsion (OIWE) with high efficiency and environmentally friendly is significant but challenging due to the limitation of oil droplet aggregation and antifouling. In this work, an inverse desert beetle-like material (PDA/ZIF-8@wood membrane) is achieved through the modification of polydopamine (PDA) and the loading of zeolite imidazole framework-8 (ZIF-8) on the delignified wood, which combines abundant porous structure (wood), excellent adhesion (PDA), large specific surface area (ZIF-8), and rich surface functional groups. The unique porous structure of wood ensures the high permeability flux of the emulsion, and hydrophobic/oleophilic ZIF-8 can be used as bumps, which is conducive to capturing and aggregating tiny oil-drops from the OIWE. In addition, the in situ growth method used by the PDA-modified wood surface makes ZIF-8 evenly distributed on the wood surface, enhances the interfacial bonding force between ZIF-8 and wood, and improves the stability and performance of the membrane. The synthesized PDA/ZIF-8@wood membrane can effectively demulsify and aggregate oil droplets to achieve a high efficiency (99.3%) and flux (7407 L m h bar) for the OIWE separation. After many cycles, the membrane maintains over a 94.8% retention rate. Its wide source of raw materials, simple synthesis, and high throughput indicate the potential application in the field of OIWE separation.
高效且环保地净化水包油乳液(OIWE)具有重要意义,但由于油滴聚集和防污的限制,这一过程颇具挑战。在本研究中,通过在脱木质素木材上修饰聚多巴胺(PDA)并负载沸石咪唑骨架-8(ZIF-8),制备了一种类似沙漠甲虫的反向材料(PDA/ZIF-8@木材膜),该材料兼具丰富的多孔结构(木材)、优异的附着力(PDA)、大比表面积(ZIF-8)以及丰富的表面官能团。木材独特的多孔结构确保了乳液的高通量渗透率,疏油亲水性的ZIF-8可作为凸起物,有助于捕获和聚集来自OIWE的微小油滴。此外,PDA修饰木材表面所采用的原位生长方法使ZIF-8均匀分布在木材表面,增强了ZIF-8与木材之间的界面结合力,提高了膜的稳定性和性能。合成的PDA/ZIF-8@木材膜能够有效地破乳并聚集油滴,实现OIWE分离的高效率(99.3%)和高通量(7407 L m h bar)。经过多次循环后,该膜的截留率保持在94.8%以上。其原材料来源广泛、合成简单且通量高,表明在OIWE分离领域具有潜在的应用价值。