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脉冲电场电渗析中操作时间与能耗之间的权衡:一项综合模拟研究

Trade-Off between Operating Time and Energy Consumption in Pulsed Electric Field Electrodialysis: A Comprehensive Simulation Study.

作者信息

Martí-Calatayud Manuel César, Sancho-Cirer Poczatek Mario, Pérez-Herranz Valentín

机构信息

IEC Group, ISIRYM, Universitat Politècnica de València, Camí de Vera s/n, 46022 València, Spain.

出版信息

Membranes (Basel). 2021 Jan 8;11(1):43. doi: 10.3390/membranes11010043.

Abstract

Electrodialysis (ED) has been recently introduced in a variety of processes where the recovery of valuable resources is needed; thus, enabling sustainable production routes for a circular economy. However, new applications of ED require optimized operating modes ensuring low energy consumptions. The application of pulsed electric field (PEF) electrodialysis has been demonstrated to be an effective option to modulate concentration polarization and reduce energy consumption in ED systems, but the savings in energy are usually attained by extending the operating time. In the present work, we conduct a comprehensive simulation study about the effects of PEF signal parameters on the time and energy consumption associated with ED processes. Ion transport of NaCl solutions through homogeneous cation-exchange membranes is simulated using a 1-D model solved by a finite-difference method. Increasing the pulse frequency up to a threshold value is effective in reducing the specific energy consumption, with threshold frequencies increasing with the applied current density. Varying the duty cycle causes opposed effects in the time and energy usage needed for a given ED operation. More interestingly, a new mode of PEF functions with the application of low values of current during the relaxation phases has been investigated. This novel PEF strategy has been demonstrated to simultaneously improve the time and the specific energy consumption of ED processes.

摘要

电渗析(ED)最近已被引入到各种需要回收宝贵资源的过程中,从而为循环经济实现可持续生产路线。然而,ED的新应用需要优化的操作模式以确保低能耗。脉冲电场(PEF)电渗析的应用已被证明是调节浓度极化并降低ED系统能耗的有效选择,但通常通过延长操作时间来实现节能。在本工作中,我们对PEF信号参数对与ED过程相关的时间和能耗的影响进行了全面的模拟研究。使用有限差分法求解的一维模型模拟了NaCl溶液通过均质阳离子交换膜的离子传输。将脉冲频率提高到阈值可有效降低比能耗,阈值频率随施加的电流密度增加而增加。改变占空比会对给定ED操作所需的时间和能量使用产生相反的影响。更有趣的是,研究了一种在弛豫阶段施加低值电流的新型PEF功能模式。这种新颖的PEF策略已被证明可以同时改善ED过程的时间和比能耗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d9b/7827754/161146138154/membranes-11-00043-g001.jpg

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