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Numerical Estimation of Limiting Current Density by Focusing on Mass Transfer within Porous Spacers in an Electro-Dialysis

机译:电渗析中多孔垫片内传质的极限电流密度数值估算

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摘要

Estimating and increasing limiting current density (LCD) levels is of fundamental importance for the development of electrodialysis (ED) systems, and it is becoming clear that the use of porous spacers can significantly increase such LCD levels. In this study, a three-dimensional numerical simulation was proposed for evaluating the mass transfer within a porous spacer unit cell and for estimating LCD levels. It was found that our proposed method is effective for estimating the minimum value of an LCD, which is a significant factor related to the safe operation of ED systems. Furthermore, it was found that increasing the minimum effective Sherwood number provides a key to increasing LCD levels. Porous spacer design guidelines were proposed based on the numerical simulation results, after which a new spacer was introduced, designed according to those guidelines. It was found that flow disturbances on the membrane caused by porous spacer structures can lead to increases in effective Sherwood numbers and that LCD levels could be increased by eliminating the flow stagnation behind the structures on the membrane. The LCD of our new spacer was found to be higher than that of the spacers with the highest LCD levels in use at present. Therefore, we can conclude that the proposed design guidelines are effective for increasing LCD levels.
机译:估计和增加极限电流密度(LCD)水平对于电渗析(ED)系统的开发至关重要,并且越来越明显的是,使用多孔垫片可以显着提高这种LCD水平。在这项研究中,提出了三维数值模拟,用于评估多孔间隔单元内的传质并估计LCD水平。发现我们提出的方法对于估计LCD的最小值是有效的,这是与ED系统的安全操作有关的重要因素。此外,发现增加最小有效舍伍德数是提高LCD水平的关键。根据数值模拟结果,提出了多孔隔圈设计准则,然后引​​入了一种新的隔圈,并根据这些准则进行了设计。发现由多孔间隔物结构引起的膜上的流动扰动可以导致有效舍伍德数的增加,并且通过消除膜上结构背后的流动停滞可以提高LCD水平。我们发现,新隔离垫的LCD高于目前使用的LCD级别最高的隔离垫。因此,我们可以得出结论,建议的设计准则对于提高LCD级别是有效的。

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