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Membrane Deformation and Its Effects on Flow and Mass Transfer in the Electromembrane Processes

机译:膜变形及其对电膜过程中流动和传质的影响

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摘要

In the membrane processes, a trans-membrane pressure (TMP) may arise due to design features or operating conditions. In most applications, stacks for electrodialysis (ED) or reverse electrodialysis (RED) operate at low TMP (<0.1 bar); however, large stacks with non-parallel flow patterns and/or asymmetric configurations can exhibit higher TMP values, causing membrane deformations and changes in fluid dynamics and transport phenomena. In this work, integrated mechanical and fluid dynamics simulations were performed to investigate the TMP effects on deformation, flow and mass transfer for a profiled membrane-fluid channel system with geometrical and mechanical features and fluid velocities representative of ED/RED conditions. First, a conservatively high value of TMP was assumed, and mechanical simulations were conducted to identify the geometry with the largest pitch to height ratio still able to bear this load without exhibiting a contact between opposite membranes. The selected geometry was then investigated under expansion and compression conditions in a TMP range encompassing most practical applications. Finally, friction and mass transfer coefficients in the deformed channel were predicted by computational fluid dynamics. Significant effects of membrane deformation were observed: friction and mass transfer coefficients increased in the compressed channel, while they decreased (though to a lesser extent) in the expanded channel.
机译:在膜工艺中,由于设计特点或操作条件,可能会产生跨膜压力(TMP)。在大多数应用中,用于电渗析(ED)或反向电渗析(RED)的电池组可在低TMP(<0.1 bar)下运行;但是,具有不平行流动模式和/或不对称构型的大型烟囱可显示更高的TMP值,从而引起膜变形以及流体动力学和传输现象的变化。在这项工作中,进行了综合的机械和流体动力学模拟,以研究TMP对具有几何和机械特征以及代表ED / RED条件的流体速度的异形膜液通道系统的变形,流动和传质的影响。首先,假设保守地获得较高的TMP值,并进行机械模拟以识别具有最大螺距与高度之比的几何形状,该几何形状仍能够承受此载荷而不会在相对膜之间发生接触。然后在涵盖大多数实际应用的TMP范围内,在膨胀和压缩条件下研究所选的几何形状。最后,通过计算流体动力学预测了变形通道中的摩擦系数和传质系数。观察到了膜变形的显着影响:在压缩通道中,摩擦系数和传质系数增加,而在扩展通道中,摩擦系数和传质系数降低了(尽管程度较小)。

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