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共存离子对使用不同离子交换膜对的反向电渗析盐度梯度发电的影响。

Effect of Co-Existing Ions on Salinity Gradient Power Generation by Reverse Electrodialysis Using Different Ion Exchange Membrane Pairs.

作者信息

Kaya Tuğçe Zeynep, Altıok Esra, Güler Enver, Kabay Nalan

机构信息

Department of Chemical Engineering, Faculty of Engineering, Ege University, 35100 İzmir, Turkey.

Department of Chemical Engineering, Faculty of Engineering, Atilim University, 06830 Ankara, Turkey.

出版信息

Membranes (Basel). 2022 Dec 7;12(12):1240. doi: 10.3390/membranes12121240.

Abstract

This study investigates the influence of co-existing ions on the salinity gradient power generation performance of the reverse electrodialysis (RED) using three different commercial ion exchange membrane pairs. The feed solutions, including the mixture of two different salts, were prepared with 90 wt.% of NaCl and 10 wt.% of LiCl, KCl, CaCl, MgCl or NaSO by keeping the salt ratio between high concentrate solution and low concentrate solution constant as 1:30 (g/g) at various flow velocities (50, 125 and 200 mL/min). It was observed that the divalent ions exhibited a negative impact on the performance of the RED system due to their high valence and low ionic mobility depending on their high hydrated radius and low diffusion coefficients compared to those of the monovalent ions. On the other hand, the effect of the monovalent ions differed according to the properties of ion exchange membranes used in the RED stack. When the power generation performances of ion exchange membrane pairs employed in the RED stack were compared, it was considered that Neosepta AMX and CMX membranes provided the highest power density due to their low membrane thicknesses, low electrical resistances, and relatively high ion exchange capacities compared to other two commercial ion exchange membrane pairs.

摘要

本研究使用三种不同的商用离子交换膜对,研究了共存离子对反向电渗析(RED)盐度梯度发电性能的影响。通过将高浓缩液与低浓缩液之间的盐比保持恒定为1:30(g/g),在不同流速(50、125和200 mL/min)下,制备了包含两种不同盐混合物的进料溶液,其中NaCl占90 wt.%,LiCl、KCl、CaCl、MgCl或NaSO占10 wt.%。观察到,与单价离子相比,二价离子由于其高价态和低离子迁移率,表现出对RED系统性能的负面影响,这取决于它们较高的水合半径和较低的扩散系数。另一方面,单价离子的影响因RED堆栈中使用的离子交换膜的性质而异。当比较RED堆栈中使用的离子交换膜对的发电性能时,由于Neosepta AMX和CMX膜与其他两种商用离子交换膜对相比具有较低的膜厚度、较低的电阻和相对较高的离子交换容量,因此被认为提供了最高的功率密度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99fc/9782584/92b59f548018/membranes-12-01240-g001.jpg

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