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单价和二价离子混合水溶液中离子交换膜的电阻及其对反向电渗析的影响

Resistance of Ion Exchange Membranes in Aqueous Mixtures of Monovalent and Divalent Ions and the Effect on Reverse Electrodialysis.

作者信息

Veerman Joost, Gómez-Coma Lucía, Ortiz Alfredo, Ortiz Inmaculada

机构信息

REDstack BV, Graaf Adolfstraat 35-G, 8606 BT Sneek, The Netherlands.

Departmento de Ingenierías Químicas y Biomolecular, Universidad de Cantabria, Av. Los Castros 46, 39005 Santander, Spain.

出版信息

Membranes (Basel). 2023 Mar 10;13(3):322. doi: 10.3390/membranes13030322.

Abstract

Salinity gradient energy has gained attention in recent years as a renewable energy source, especially employing reverse electrodialysis technology (RED), which is based on the role of ion exchange membranes. In this context, many efforts have been developed by researchers from all over the world to advance the knowledge of this green source of energy. However, the influence of divalent ions on the performance of the technology has not been deeply studied. Basically, divalent ions are responsible for an increased membrane resistance and, therefore, for a decrease in voltage. This work focuses on the estimation of the resistance of the RED membrane working with water flows containing divalent ions, both theoretically by combining the one-thread model with the Donnan exclusion theory for the gel phase, as well as the experimental evaluation with Fumatech membranes FAS-50, FKS-50, FAS-PET-75, and FKS-PET-75. Furthermore, simulated results have been compared to data recently reported with different membranes. Besides, the influence of membrane resistance on the overall performance of reverse electrodialysis technology is evaluated to understand the impact of divalent ions in energy generation. Results reflect a minor effect of sulfate on the gross power in comparison to the effect of calcium and magnesium ions. Thus, this work takes a step forward in the knowledge of reverse electrodialysis technology and the extraction of salinity gradient energy by advancing the influence of divalent ions on energy recovery.

摘要

近年来,盐度梯度能作为一种可再生能源受到了关注,特别是采用基于离子交换膜作用的反向电渗析技术(RED)。在此背景下,世界各地的研究人员为增进对这种绿色能源的了解做出了许多努力。然而,二价离子对该技术性能的影响尚未得到深入研究。基本上,二价离子会导致膜电阻增加,从而使电压降低。这项工作重点在于估计在含有二价离子的水流中工作的RED膜的电阻,理论上是将单线程模型与凝胶相的唐南排斥理论相结合,同时对Fumatech膜FAS - 50、FKS - 50、FAS - PET - 75和FKS - PET - 75进行实验评估。此外,已将模拟结果与最近用不同膜报道的数据进行了比较。此外,还评估了膜电阻对反向电渗析技术整体性能的影响,以了解二价离子在能量产生中的作用。结果表明,与钙离子和镁离子的影响相比,硫酸根离子对总功率的影响较小。因此,这项工作通过推进二价离子对能量回收的影响,在反向电渗析技术及盐度梯度能提取的知识方面向前迈进了一步。

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