College of Geography and Environmental Sciences, Science Research Institute, Zhejiang Normal University, Jinhua 321004, PR China.
College of Geography and Environmental Sciences, Science Research Institute, Zhejiang Normal University, Jinhua 321004, PR China.
Bioresour Technol. 2017 Nov;244(Pt 1):560-568. doi: 10.1016/j.biortech.2017.07.160. Epub 2017 Jul 29.
Fractal roughness is one of the most important properties of a fractal surface. In this study, it was found that, randomly rough membrane surface was a fractal surface, which could be digitally modeled by a modified two-variable Weierstrass-Mandelbrot (WM) function. Fractal roughness of membrane surfaces has a typical power function relation with the statistical roughness of the modeled surface. Assessment of interfacial interactions showed that an increase in fractal roughness of membrane surfaces will strengthen and prolong the interfacial interactions between membranes and foulants, and under conditions in this study, will significantly increase the adhesion propensity of a foulant particle on membrane surface. This interesting result can be attributed to that increase in fractal roughness simultaneously improves separation distance and interaction surface area for adhesion of a foulant particle. This study gives deep insights into interfacial interactions and membrane fouling in MBRs.
分形粗糙度是分形表面最重要的特性之一。本研究发现,随机粗糙膜面是分形表面,可以通过修正的双变量 Weierstrass-Mandelbrot(WM)函数进行数字建模。膜表面的分形粗糙度与所建表面的统计粗糙度呈典型的幂函数关系。界面相互作用的评估表明,膜表面分形粗糙度的增加将增强并延长膜与污染物之间的界面相互作用,并且在本研究条件下,将显著增加污染物颗粒在膜表面上的附着倾向。这一有趣的结果可以归因于分形粗糙度的增加同时改善了污染物颗粒附着的分离距离和相互作用表面积。本研究深入了解了 MBR 中的界面相互作用和膜污染。