论文标题

横流中的去离子冲击

Deionization Shocks in Crossflow

论文作者

Schlumpberger, Sven, Smith, Raymond B., Tian, Huanhuan, Mani, Ali, Bazant, Martin Z.

论文摘要

休克电透析是一种最近开发的电化学水处理方法,显示出对水去离子和离子分离的有希望。尽管已经提出了简单的模型和缩放定律,但尚未出现预测理论以适合实验数据并启用系统设计。在这里,我们将扩展和分析现有的“泄漏膜”模型,如最近的实验原型,用于横流稳定冲击的规范情况。将二维数值解与分析边界层近似值和实验数据进行比较。边界层理论准确地重现了海水淡化的仿真结果,并且两个模型都以无量纲电流预测了脱盐因子的数据崩溃,并缩放到阳离子的传入对流通量。数值模拟还可以预测随电流的水回收率增加。然而,两种方法都不能定量地拟合从正常到过度限制电流的过渡,这表明我们对多孔培养基中极端电动现象的理解差距。

Shock electrodialysis is a recently developed electrochemical water treatment method which shows promise for water deionization and ionic separations. Although simple models and scaling laws have been proposed, a predictive theory has not yet emerged to fit experimental data and enable system design. Here, we extend and analyze existing "leaky membrane" models for the canonical case of a steady shock in cross flow, as in recent experimental prototypes. Two-dimensional numerical solutions are compared with analytical boundary-layer approximations and experimental data. The boundary-layer theory accurately reproduces the simulation results for desalination, and both models predict the data collapse of the desalination factor with dimensionless current, scaled to the incoming convective flux of cations. The numerical simulation also predicts the water recovery increase with current. Nevertheless, both approaches cannot quantitatively fit the transition from normal to over-limiting current, which suggests gaps in our understanding of extreme electrokinetic phenomena in porous media.

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