School of Chemical and Biological Engineering, Seoul National University, Seoul 151-744, Republic of Korea.
Environ Sci Technol. 2012 Oct 16;46(20):11021-7. doi: 10.1021/es3020309. Epub 2012 Sep 25.
Membrane fouling remains a critical factor limiting the widespread use of membrane processes in water and wastewater treatment. To mitigate membrane fouling, we introduced a patterned morphology on the membrane surface using a lithographic method. A modified immersion precipitation method was developed to relieve the formation of dense layer at the solvent-nonsolvent interface, that is, the opposite side of the patterned surface. Diverse patterned membranes, such as pyramid-, prism-, and embossing-patterned membranes, were prepared and compared with a flat membrane in terms of morphology, permeability, and biofouling. Patterned membrane fidelity was largely dependent on the polymer concentration in cast solution. The patterned surface augmented the water flux in proportion to the roughness factor of the patterned membrane. However, the type of pattern did not affect substantially the mean pore size on the patterned surface. Deposition of microbial cells on the patterned membrane was significantly reduced compared to that on the flat membrane in the membrane bioreactor (MBR) for wastewater treatment. This was attributed to hydraulic resistance of the apex of the patterned surface, which induced local turbulence.
膜污染仍然是限制膜过程在水和废水处理中广泛应用的关键因素。为了减轻膜污染,我们使用光刻法在膜表面引入了图案形态。开发了一种改进的浸没沉淀法来缓解溶剂-非溶剂界面(即图案表面的相反侧)上致密层的形成。制备了各种图案化膜,如金字塔形、棱镜形和压花图案化膜,并将其与平面膜在形态、渗透性和生物污染方面进行了比较。图案化膜的保真度在很大程度上取决于铸膜液中的聚合物浓度。图案化表面的水通量与图案化膜的粗糙度因子成正比增加。然而,图案的类型对图案表面的平均孔径没有显著影响。与在废水处理的膜生物反应器(MBR)中的平面膜相比,微生物细胞在图案化膜上的沉积明显减少。这归因于图案表面顶点的水力阻力,它诱导了局部湍流。