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Experimental analysis of foulant deposition in submerged hollow fiber membrane modules

机译:沉入式中空纤维膜组件中污垢沉积的实验分析

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Hollow fiber ultrafiltration (UF) membranes have been widely employed for water treatment and pretreatment for seawater desalination. Nevertheless, there are challenges in design and optimization of hollow fiber modules because their efficiency depends on their geometric factors and filtration conditions. In this work, we focused on the analysis of submerged UF membranes for better understanding the correlation between hydrodynamic conditions and fouling phenomena. The local flux profiles were calculated based on the Hagen-Poiseuille equation. The results were compared with the experimental results of local fouling patterns, which were obtained based on an image analysis technique using a blue indigo solution. The experimental and theoretical results agreed qualitatively. The results in this study suggest that the methods demonstrated in this study can provide in-depth information such as local flux and pressure profiles, local foulant deposition, and the effect of fiber geometry and operation conditions.
机译:中空纤维超滤(UF)膜已被广泛用于海水淡化的水处理和预处理。然而,由于中空纤维组件的效率取决于其几何因素和过滤条件,因此在设计和优化中存在挑战。在这项工作中,我们专注于淹没超滤膜的分析,以更好地了解流体动力学条件与结垢现象之间的相关性。基于Hagen-Poiseuille方程计算局部通量分布。将结果与基于蓝色靛蓝溶液的图像分析技术获得的局部结垢模式的实验结果进行了比较。实验和理论结果定性一致。这项研究的结果表明,该研究中展示的方法可以提供深入的信息,例如局部通量和压力曲线,局部污垢沉积以及纤维几何形状和操作条件的影响。

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