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Experimental study of concentration polarization in a crossflow reverse osmosis system using Digital Holographic Interferometry

机译:数字全息干涉法在错流反渗透系统中浓差极化的实验研究

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摘要

Digital Holographic Interferometry (DHI) has been used to visualize the polarization concentration layer during crossflow RO. This technique is based on the fact that changes in the concentration of the solution produce changes in its refractive index. Therefore, the concentration profile formed due to the polarization phenomenon can be visualized as interference fringes. Experiments with Na2SO4 and NaCl solutions have been carried out. Three variables of the process were studied: crossflow velocity, initial concentration and pressure applied. In each experiment, crossflow velocity was changed every 30min, in an increasing or decreasing sequence. Few minutes after changing the crossflow velocity the steady-state was reached. Interference fringe patterns of the polarization layer and their corresponding concentration profiles, as well as the permeate flux in different experimental conditions, are presented. The major experimental result is the visualization for the first time in situ and in real-time of the polarization layer in a process of crossflow by a non-invasive method. Experimental results show a close relationship among crossflow velocity, permeate flux and polarization layer. Furthermore, experimental maximum concentration values reached at the membrane surface were compared with values calculated by using the film theory approach and a good agreement was obtained.
机译:数字全息干涉术(DHI)已用于在错流RO期间可视化偏振集中层。该技术基于以下事实:溶液浓度的变化会导致其折射率发生变化。因此,由于偏振现象而形成的浓度分布可以可视化为干涉条纹。已使用Na2SO4和NaCl溶液进行了实验。研究了该过程的三个变量:错流速度,初始浓度和施加的压力。在每个实验中,错流速度每30分钟改变一次,以递增或递减的顺序进行。改变横流速度后数分钟,达到稳态。给出了偏振层的干涉条纹图及其相应的浓度曲线,以及不同实验条件下的渗透通量。主要的实验结果是通过无创方法在横流过程中首次对偏振层进行实时和实时可视化。实验结果表明,横流速度,渗透通量和极化层之间存在密切的关系。此外,将在膜表面达到的实验最大浓度值与使用膜理论方法计算的值进行了比较,并获得了良好的一致性。

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