i-LABand Nano-Bionics Division, Suzhou Institute of Nano-Tech and Nano-Bionics, Chinese Academy of Sciences, Suzhou 215123 (China).
Angew Chem Int Ed Engl. 2014 Jan 13;53(3):856-60. doi: 10.1002/anie.201308183. Epub 2013 Dec 4.
Conventional polymer membranes suffer from low flux and serious fouling when used for treating emulsified oil/water mixtures. Reported herein is the fabrication of a novel superhydrophilic and underwater superoleophobic poly(acrylic acid)-grafted PVDF filtration membrane using a salt-induced phase-inversion approach. A hierarchical micro/nanoscale structure is constructed on the membrane surface and endows it with a superhydrophilic/underwater superoleophobic property. The membrane separates both surfactant-free and surfactant-stabilized oil-in-water emulsions under either a small applied pressure (<0.3 bar) or gravity, with high separation efficiency and high flux, which is one to two orders of magnitude higher than those of commercial filtration membranes having a similar permeation property. The membrane exhibits an excellent antifouling property and is easily recycled for long-term use. The outstanding performance of the membrane and the efficient, energy and cost-effective preparation process highlight its potential for practical applications.
当用于处理乳化油/水混合物时,传统的聚合物膜通量低且容易严重堵塞。本文报道了一种使用盐诱导相转化方法制备的新型超亲水和水下超疏油的聚(丙烯酸)接枝 PVDF 过滤膜。在膜表面构建了分级的微/纳米结构,赋予其超亲水/水下超疏油特性。该膜在小的施加压力(<0.3 巴)或重力下,能够分离无表面活性剂和表面活性剂稳定的油包水乳状液,具有高分离效率和高通量,比具有相似渗透性能的商业过滤膜高 1 到 2 个数量级。该膜具有优异的抗污染性能,可长期重复使用,易于回收。该膜的出色性能和高效、节能且具有成本效益的制备工艺突出了其在实际应用中的潜力。