论文标题
过滤诱导的胶体组件的近壁层的微观结构
Microstructure of the near-wall layer of filtration-induced colloidal assembly
论文作者
论文摘要
本文介绍了使用微流体设备对胶体悬浮液过滤的实验研究。微米尺度胶体的悬浮液在固定压降下流过平行的缝隙形孔。堵塞和蛋糕在孔隙入口处有系统地观察到,以进行可变的施加压降和离子强度。基于对靠近设备壁的胶体层的图像分析,进行了全局和局部研究以详细分析近壁层微观结构。尽管该层的全球孔隙度似乎不受离子强度和施加压降的影响,但一项本地研究表明某些异质性:堵塞在毛孔附近的多孔比遥远的地方更具多孔性。使用径向分布函数对中范围阶的分析表明,在高离子强度下的有组织的状态稍微有组织。使用二维连续小波分解的局部分析证实了这一点:对于低离子强度,胶体晶体的典型尺寸较大,并且随着距毛孔的距离而增加。我们将这些结果汇总到涉及胶体胶体排斥相互作用和流体速度的相图中。
This paper describes an experimental study of filtration of a colloidal suspension using microfluidic devices. A suspension of micrometer-scale colloids flows through parallel slit-shaped pores at fixed pressure drop. Clogs and cakes are systematically observed at pore entrance, for variable applied pressure drop and ionic strength. Based on image analysis of the layer of colloids close to the device wall, global and local studies are performed to analyse in detail the near-wall layer microstructure. Whereas global porosity of this layer does not seem to be affected by ionic strength and applied pressure drop, a local study shows some heterogeneity: clogs are more porous at the vicinity of the pore than far away. An analysis of medium-range order using radial distribution function shows a slightly more organized state at high ionic strength. This is confirmed by a local analysis using two-dimension continuous wavelet decomposition: the typical size of crystals of colloids is larger for low ionic strength, and it increases with distance from the pores. We bring these results together in a phase diagram involving colloid-colloid repulsive interactions and fluid velocity.