新型仿生和传统离子交换膜对氯化钠进料溶液的电渗析脱盐性能评估

Evaluation of Electrodialysis Desalination Performance of Novel Bioinspired and Conventional Ion Exchange Membranes with Sodium Chloride Feed Solutions.

作者信息

Hyder Ahm Golam, Morales Brian A, Cappelle Malynda A, Percival Stephen J, Small Leo J, Spoerke Erik D, Rempe Susan B, Walker W Shane

机构信息

Center for Inland Desalination Systems (CIDS) and Nanotechnology Enabled Water Treatment (NEWT) Engineering Research Center, The University of Texas at El Paso, 500 W., University Ave., El Paso, TX 79968-0684, USA.

Sandia National Laboratories, Albuquerque, NM 87185-1315, USA.

出版信息

Membranes (Basel). 2021 Mar 19;11(3):217. doi: 10.3390/membranes11030217.

Abstract

Electrodialysis (ED) desalination performance of different conventional and laboratory-scale ion exchange membranes (IEMs) has been evaluated by many researchers, but most of these studies used their own sets of experimental parameters such as feed solution compositions and concentrations, superficial velocities of the process streams (diluate, concentrate, and electrode rinse), applied electrical voltages, and types of IEMs. Thus, direct comparison of ED desalination performance of different IEMs is virtually impossible. While the use of different conventional IEMs in ED has been reported, the use of bioinspired ion exchange membrane has not been reported yet. The goal of this study was to evaluate the ED desalination performance differences between novel laboratory‑scale bioinspired IEM and conventional IEMs by determining (i) limiting current density, (ii) current density, (iii) current efficiency, (iv) salinity reduction in diluate stream, (v) normalized specific energy consumption, and (vi) water flux by osmosis as a function of (a) initial concentration of NaCl feed solution (diluate and concentrate streams), (b) superficial velocity of feed solution, and (c) applied stack voltage per cell-pair of membranes. A laboratory‑scale single stage batch-recycle electrodialysis experimental apparatus was assembled with five cell‑pairs of IEMs with an active cross-sectional area of 7.84 cm. In this study, seven combinations of IEMs (commercial and laboratory-made) were compared: (i) Neosepta AMX/CMX, (ii) PCA PCSA/PCSK, (iii) Fujifilm Type 1 AEM/CEM, (iv) SUEZ AR204SZRA/CR67HMR, (v) Ralex AMH-PES/CMH-PES, (vi) Neosepta AMX/Bare Polycarbonate membrane (Polycarb), and (vii) Neosepta AMX/Sandia novel bioinspired cation exchange membrane (SandiaCEM). ED desalination performance with the Sandia novel bioinspired cation exchange membrane (SandiaCEM) was found to be competitive with commercial Neosepta CMX cation exchange membrane.

摘要

许多研究人员对不同的传统和实验室规模的离子交换膜(IEMs)的电渗析(ED)脱盐性能进行了评估,但这些研究大多使用了各自的实验参数集,如进料溶液的组成和浓度、工艺流(稀释液、浓缩液和电极冲洗液)的表观流速、施加的电压以及IEMs的类型。因此,几乎不可能直接比较不同IEMs的ED脱盐性能。虽然已有报道在ED中使用不同的传统IEMs,但尚未有关于使用受生物启发的离子交换膜的报道。本研究的目的是通过确定(i)极限电流密度、(ii)电流密度、(iii)电流效率、(iv)稀释液流中的盐度降低、(v)归一化比能耗以及(vi)作为(a)NaCl进料溶液(稀释液和浓缩液流)的初始浓度、(b)进料溶液的表观流速和(c)每对膜单元施加的堆叠电压的函数的渗透水通量,来评估新型实验室规模的受生物启发的IEM与传统IEM之间的ED脱盐性能差异。组装了一个实验室规模的单级间歇循环电渗析实验装置,该装置有五对IEMs,有效横截面积为7.84平方厘米。在本研究中,比较了七种IEMs(商业和实验室自制)组合:(i)Neosepta AMX/CMX,(ii)PCA PCSA/PCSK,(iii)富士胶片1型阴离子交换膜/阳离子交换膜,(iv)苏伊士AR204SZRA/CR67HMR,(v)Ralex AMH-PES/CMH-PES,(vi)Neosepta AMX/裸聚碳酸酯膜(聚碳酸酯),以及(vii)Neosepta AMX/桑迪亚新型受生物启发的阳离子交换膜(SandiaCEM)。发现桑迪亚新型受生物启发的阳离子交换膜(SandiaCEM)的ED脱盐性能与商业Neosepta CMX阳离子交换膜具有竞争力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44cd/8003458/efaa04dd93ce/membranes-11-00217-g001.jpg

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