Wessling M, Morcillo L Garrigós, Abdu S
1] RWTH Aachen University, AVT.CVT - Chair of Chemical Product and Process Engineering, Turmstr. 46, 52064 Aachen, Germany [2] DWI - Leibniz Institute for Interactive Materials, Forckenbeckstr. 50, 52074 Aachen, Germany.
RWTH Aachen University, AVT.CVT - Chair of Chemical Product and Process Engineering, Turmstr. 46, 52064 Aachen, Germany.
Sci Rep. 2014 Mar 6;4:4294. doi: 10.1038/srep04294.
Electro-convective vortices in ion concentration polarization under shear flow have been of practical relevance for desalination processes using electrodialysis. The phenomenon has been scientifically disregarded for decades, but is recently embraced by a growing fluid dynamics community due its complex superposition of multi-scale gradients in electrochemical potential and space charge interacting with emerging complex fluid momentum gradients. While the visualization, quantification and fundamental understanding of the often-chaotic fluid dynamics is evolving rapidly due to sophisticated simulations and experimentation, little is known whether these instabilities can be induced and affected by chemical topological heterogeneity in surface properties. In this letter, we report that polyelectrolyte layers applied as micropatterns on ion exchange membranes induce and facilitate the electro-osmotic fluid instabilities. The findings stimulate a variety of fundamental questions comparable to the complexity of today's turbulence research.
剪切流作用下离子浓度极化中的电对流涡旋对于使用电渗析的脱盐过程具有实际意义。几十年来,这一现象在科学上一直被忽视,但最近由于其电化学势和空间电荷中多尺度梯度与新兴复杂流体动量梯度的复杂叠加,越来越多的流体动力学领域的研究人员开始关注它。尽管由于先进的模拟和实验,对这种通常很混乱的流体动力学的可视化、量化和基本理解正在迅速发展,但对于这些不稳定性是否会受到表面性质中化学拓扑异质性的诱导和影响,人们却知之甚少。在这封信中,我们报告了作为微图案施加在离子交换膜上的聚电解质层会诱导并促进电渗流体不稳定性。这些发现引发了一系列与当今湍流研究复杂性相当的基本问题。