State Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, PO Box 353, Beijing, 100190, China; University of Chinese Academy of Sciences, No. 19(A) Yuquan Road, Beijing, 100049, China.
Institute of Engineering Technology, University of Science and Technology Beijing, Beijing, 100083, China.
Chemosphere. 2020 Dec;260:127583. doi: 10.1016/j.chemosphere.2020.127583. Epub 2020 Jul 9.
A series of superhydrophobic polycarbonate porous monoliths modified with metal organic framework (Z8/PC) were firstly fabricated through a facile thermally impacted non-solvent induced phase separation method for efficient selective oil/water separation. The performance of the monoliths on oil/water separation was evaluated in terms of selectivity, equilibrium adsorption capacity, corrosion resistance, kinetics, and circulation. The results showed that the use of ZIF-8 significantly compensated for the shortage of pure monolith. Compared with pure PC monolith, the hydrophobic angle of the Z8/PC-2 monolith promoted from 136.18° to 154.25° due to the micro-nano flower surface. Meanwhile, the Z8/PC-2 monolith displayed a more intricate and continuous interconnected 3D hierarchical micro-nano structure, which possessed the monolith a higher specific surface area of 146.84 m g and porosity of 89.5%. What's more, more superior oil/water separation abilities of Z8/PC-2 monolith were manifested by the selective removal of oil or organic solvent from water within 30s, high equilibrium adsorption capacity, and excellent corrosion resistance. In addition, the ten-cycle regeneration of porous monoliths via centrifugation or evaporation displayed additional attractiveness. Therefore, porous Z8/PC monolith will be a promising candidate for the efficient selective oil/water separation of oil spills and organic solvents.
首次通过简便的热冲击非溶剂诱导相分离方法制备了一系列经过金属有机骨架(Z8/PC)改性的超疏水聚碳酸酯多孔整体式,用于高效选择性油水分离。通过选择性、平衡吸附容量、耐腐蚀性、动力学和循环来评估整体式在油水分离方面的性能。结果表明,ZIF-8 的使用显著弥补了纯整体式的不足。与纯 PC 整体式相比,由于微纳花表面,Z8/PC-2 整体式的疏油角从 136.18°增加到 154.25°。同时,Z8/PC-2 整体式具有更复杂和连续的互连 3D 分级微纳结构,使其具有更高的比表面积 146.84 m²/g 和 89.5%的孔隙率。更重要的是,Z8/PC-2 整体式具有优越的油水分离能力,可在 30s 内从水中选择性去除油或有机溶剂,具有较高的平衡吸附容量和优异的耐腐蚀性。此外,通过离心或蒸发对多孔整体式进行十次循环再生显示出额外的吸引力。因此,多孔 Z8/PC 整体式将是一种很有前途的高效选择性油水分离溢油和有机溶剂的候选材料。