Department of Civil and Environmental Engineering, Vanderbilt University, Nashville, TN, 37235-1831, USA.
Department of Civil and Environmental Engineering, Vanderbilt University, Nashville, TN, 37235-1831, USA; Department of Chemical and Bimolecular Engineering, Vanderbilt University, Nashville, TN, 37235-1831, USA.
Water Res. 2019 Jul 1;158:359-369. doi: 10.1016/j.watres.2019.03.076. Epub 2019 Apr 4.
Despite significant progress made in multiple aspects of capacitive deionization (CDI), a rational framework is in need for optimizing the design and operation of a large desalination system based on CDI. In this work, we develop a theoretical framework for guiding the design of a desalination plant based on CDI with ion exchange membranes (i.e. membrane CDI, or MCDI). This framework is established by identifying (1) the practical design constraints, (2) the inter-relationships between different design and operating parameters, (3) a set of independent variables, and (4) the key performance metrics. The proposed design framework reduces the degrees of freedom of the system and facilitates more focused and systematic analysis of the overall performance of an MCDI-based desalination plant. Careful analysis using the proposed design framework suggests the presence of an optimal tradeoff curve that comprises all the possible optima of design and operating conditions with which an MCDI-based desalination plant is the most cost-effective. We also show that the typical practice of using equal flowrates for charging and discharge yields very good performance compared to the optima, as long as water recovery is not too high. Finally, we also briefly explain the implication of this framework on cost-based optimization of the design and operation of an MCDI-based desalination plant.
尽管在电容去离子 (CDI) 的多个方面都取得了显著进展,但仍需要一个合理的框架来优化基于 CDI 的大型脱盐系统的设计和运行。在这项工作中,我们开发了一个基于离子交换膜的 CDI(即膜 CDI 或 MCDI)的脱盐厂设计指导理论框架。该框架是通过确定 (1) 实际设计约束、(2) 不同设计和操作参数之间的相互关系、(3) 一组独立变量和 (4) 关键性能指标来建立的。所提出的设计框架减少了系统的自由度,并便于更集中和系统地分析基于 MCDI 的脱盐厂的整体性能。使用所提出的设计框架进行仔细分析表明,存在一条最优权衡曲线,其中包含了基于 MCDI 的脱盐厂最具成本效益的所有设计和操作条件的可能最优值。我们还表明,只要水回收率不是太高,与最优值相比,使用等流量进行充电和放电的典型做法可以产生非常好的性能。最后,我们还简要解释了该框架对基于成本的基于 MCDI 的脱盐厂设计和运行优化的影响。