Key Laboratory for Precision and Non-traditional Machining Technology of the Ministry of Education, Dalian University of Technology, Dalian 116024, P. R. China.
Nanoscale. 2018 Jan 25;10(4):1920-1929. doi: 10.1039/c7nr06756a.
Extreme wettability materials applied for oil/water separation have become a research focus in modern society, owing to the large amounts of oil-containing industrial wastewater emissions and the frequent occurrence of oil spills. However, most of the methods to fabricate the extreme wettability materials involve toxic chemical reagents, complex chemical reaction processes, and dangerous operation processes. A new acid, alkali, and organic reagent-free cement-coated mesh was presented for the sustained separation of oil and water from oil/water mixtures. The meshes were fabricated by dipping porous Cu meshes in the cement paste. The micro/nanostructures and hydroxyl groups of the cement enable the meshes to be superhydrophilic in air and superoleophobic under water. The separation efficiencies for oils with a wide range of kinematic viscosities (0.42-74.4 cSt at 40 °C) were all above 94%. The superhydrophilic cement-coated meshes could separate the oil/water mixture containing hot water, salt, and alkali for at least 30 cycles. The superoleophobicity of the cement-coated meshes was intact under seawater for at least 120 hours, showing good durability and stability. This green fabrication method is easy, cost-effective and environment-friendly.
用于油水分离的超润湿性材料已成为现代社会的研究热点,这主要是因为含油工业废水排放量的增加和溢油事故的频繁发生。然而,大多数制备超润湿性材料的方法都涉及有毒化学试剂、复杂的化学反应过程和危险的操作过程。本文提出了一种新的无酸、碱和有机溶剂的水泥涂层网格,用于持续分离油水混合物中的油和水。通过将多孔 Cu 网浸入水泥浆中制备出网格。水泥的微/纳米结构和羟基使网格在空气中超亲水,在水下超疏油。对运动粘度范围很广的油(40°C 时为 0.42-74.4 cSt)的分离效率均高于 94%。超亲水水泥涂层网格可以分离含有热水、盐和碱的油水混合物至少 30 个循环。水泥涂层网格在海水中的超疏油性至少保持 120 小时,表现出良好的耐久性和稳定性。这种绿色制造方法简单、经济高效且环保。