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Accumulation of Colloidal Particles in Flow Junctions Induced by Fluid Flow and Diffusiophoresis

机译:流体流动和扩散综合诱导的流动交叉处的胶体颗粒的积累

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The flow of solutions containing solutes and colloidal particles in porous media is widely found in systems including underground aquifers, hydraulic fractures, estuarine or coastal habitats, water filtration systems, etc. In such systems, solute gradients occur when there is a local change in the solute concentration. While the effects of solute gradients have been found to be important for many applications, we observe an unexpected colloidal behavior in porous media driven by the combination of solute gradients and the fluid flow. When two flows with different solute concentrations are in contact near a junction, a sharp solute gradient is formed at the interface, which may allow strong diffusiophoresis of the particles directed against the flow. Consequently, the particles accumulate near the pore entrance, rapidly approaching the packing limit. These colloidal dynamics have important implications for the clogging of a porous medium, where particles that are orders of magnitude smaller than the pore width can accumulate and block the pores within a short period of time. We also show that this effect can be exploited as a useful tool for preconcentrating biomolecules for rapid bioassays.
机译:在这种系统中,在包括地下含水层,液压裂缝,偏卤素或沿海栖息地,水过滤系统等中,含有溶质和胶体颗粒的溶液的流动广泛地区。在这种系统中,当存在局部变化时,溶质梯度发生溶质浓度。虽然已经发现溶质梯度的影响对于许多应用来说是重要的,但我们观察到由溶质梯度和流体流动的组合驱动的多孔介质中的意外胶体行为。当具有不同溶质浓度的两个流动接触结接近结合结时,在界面处形成尖锐的溶质梯度,这可以允许指向流量的颗粒的强扩散综合症。因此,颗粒在孔入口附近积聚,快速接近包装极限。这些胶体动态对多孔介质的堵塞具有重要意义,其中粒子是小于孔宽度小的级的颗粒可以在短时间内积聚并阻塞孔隙。我们还表明,这种效果可以被利用为用于快速生物测定的预浓缩生物分子的有用工具。

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