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An empirical/theoretical model with dimensionless numbers to predict the performance of electrodialysis systems on the basis of operating conditions

机译:具有无量纲数的经验/理论模型,可根据操作条件预测电渗析系统的性能

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摘要

Among the different technologies developed for desalination, the electrodialysis/electrodialysis reversal (ED/EDR) process is one of the most promising for treating brackish water with low salinity when there is high risk of scaling. Multiple researchers have investigated ED/EDR to optimize the process, determine the effects of operating parameters, and develop theoretical/empirical models. Previously published empirical/theoretical models have evaluated the effect of the hydraulic conditions of the ED/EDR on the limiting current density using dimensionless numbers. The reason for previous studies' emphasis on limiting current density is twofold: 1) to maximize ion removal, most ED/EDR systems are operated close to limiting current conditions if there is not a scaling potential in the concentrate chamber due to a high concentration of less-soluble salts; and 2) for modeling the ED/EDR system with dimensionless numbers, it is more accurate and convenient to use limiting current density, where the boundary layer's characteristics are known at constant electrical conditions. To improve knowledge of ED/EDR systems, ED/EDR models should be also developed for the Ohmic region, where operation reduces energy consumption, facilitates targeted ion removal, and prolongs membrane life compared to limiting current conditions. In this paper, theoretical/empirical models were developed for ED/EDR performance in a wide range of operating conditions. The presented ion removal and selectivity models were developed for the removal of monovalent ions and divalent ions utilizing the dominant dimensionless numbers obtained from laboratory scale electrodialysis experiments. At any system scale, these models can predict ED/EDR performance in terms of monovalent and divalent ion removal. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在为脱盐开发的不同技术中,电渗析/电渗析逆转(ED / EDR)工艺是在存在高结垢风险的情况下处理含盐量低的微咸水的最有前景的方法之一。众多研究人员对ED / EDR进行了研究,以优化流程,确定操作参数的影响并开发理论/经验模型。先前发布的经验/理论模型已使用无量纲数评估了ED / EDR的液压条件对极限电流密度的影响。先前研究强调限制电流密度的原因有两个:1)为了最大程度地去除离子,如果由于高浓度的浓缩液在浓缩室中没有结垢的可能性,大多数ED / EDR系统将在接近限制电流的条件下运行。难溶性盐; 2)为了用无量纲数建模ED / EDR系统,使用边界电流特性在恒定电条件下已知的极限电流密度更准确,更方便。为了提高对ED / EDR系统的了解,还应针对欧姆区域开发ED / EDR模型,与限制电流条件相比,该区域可降低能耗,促进目标离子去除并延长膜寿命。本文针对各种工作条件下的ED / EDR性能开发了理论/经验模型。利用从实验室规模的电渗析实验获得的主要无量纲数,开发了提出的离子去除和选择性模型,用于去除一价离子和二价离子。在任何系统规模上,这些模型都可以根据单价和二价离子去除来预测ED / EDR性能。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Water Research》 |2016年第1期|270-279|共10页
  • 作者

    Karimi Leila; Ghassemi Abbas;

  • 作者单位

    New Mexico State Univ, IEE, ECIII, 1060 Frenger Mall,Suite 300, Las Cruces, NM 88003 USA;

    New Mexico State Univ, IEE, ECIII, 1060 Frenger Mall,Suite 300, Las Cruces, NM 88003 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Electrodialysis; Predictive model; Ion removal; Selectivity; Stanton number;

    机译:电渗析;预测模型;离子去除;选择性;斯坦顿数;
  • 入库时间 2022-08-17 13:41:55

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