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A parametric study of multiscale transport phenomena and performance characteristics of capacitive deionization systems

机译:多尺度运输现象的参数研究和电容去离子系统的性能特征

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Capacitive deionization (CDI) is a relatively novel desalination technology which uses electrically charged porous electrodes to remove ions from low salinity water streams. The interplay between the micro- and macroscale transport mechanisms in the porous electrodes and bulk flow of the CDI unit dictates the concentration profile at the exit. A thorough understanding of these interactions is important towards achieving high-efficiency systems. Through permutation of the associated transport time constants, we conduct a parametric study to investigate the coupling of multiscale phenomena in CDI. Moreover, we propose a new multi-cycle arrangement to further improve the desalination performance of a given saline solution. In these systems, the regeneration feed stream used for each cycle highly affects the efficiency of the whole system, as it directly affects the water recovery ratio, the total duration of the process, and the desalination performance of the next cycle. We propose three regeneration schemes, with different regeneration feed streams to enhance the desalination/regeneration performance of the multi-cycle arrangements. To obtain comprehensive characterization of desalination and regeneration performances of different units, we introduce new inclusive metrics that encompass different aspects of the system. The results indicate trade-offs between desalination performance and energy efficiency of the proposed arrangements.
机译:电容去离子化(CDI)是一种相对新颖的脱盐技术,其使用带电多孔电极来除去低盐度水流的离子。多孔电极中的微型和宏观传输机制与CDI单元的散装流程之间的相互作用决定了出口处的浓度分布。彻底了解这些互动对实现高效系统非常重要。通过相关传输时间常数的置换,我们进行参数研究以研究CDI中的多尺度现象的耦合。此外,我们提出了一种新的多循环布置,以进一步改善给定盐水溶液的脱盐性能。在这些系统中,用于每个循环的再生进料流高度影响整个系统的效率,因为它直接影响水回收率,过程的总持续时间以及下一个循环的脱盐性能。我们提出了三种再生方案,具有不同的再生进料流,以提高多循环装置的脱盐/再生性能。为了获得不同单位的脱盐和再生性能的全面表征,我们介绍了包含系统的不同方面的新包容度量。结果表明拟议安排的脱盐性能和能源效率之间的权衡。

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