Enhanced desalination efficiency of flow-through capacitive deionization cell by mesh electrode with granular aerogel carbon in the removal of ions from synthetic and real samples

IF 2.3 Q2 Environmental Science
Bahram Roshan, Hassan Rasoulzadeh, Mohamadreza Massoudinejad, Mohsen Saadani, Daryoush Sanaei
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引用次数: 0

Abstract

Flow-through capacitive deionization (FTCDI) is a traditional improved flow-by CDI cellular structure, used to remove ions from aqueous solutions. In this study, a new FTCDI was designed consisting of mesh electrodes (ME) containing ion-exchange membranes (IEM) and aerogel carbon granules with a specific surface area of 489 m2/g. All analyses and experiments performed showed that the new design can remove nitrate, phosphate, sodium, calcium, and chloride. Under optimal conditions, the new FTCDI system can remove 82.5, 49, 85, and 90% of sodium chloride, calcium chloride, nitrate, and phosphate with a maximum input concentration of 450 mg/L, 450 mg/L, 70 mg/L, and 3 mg/L, respectively. The efficiency of this system was also evaluated for real samples. Findings of the study showed that if the initial amount of turbidity is 12 NTU, total soluble solids (TDS) 1,700 mg/L, total hardness 540 mg/L, phosphate 0.09 mg/L, nitrate 28.8 mg/L, and electrical conductivity (EC) 3,480 μs/cm, the system can remove 25, 23.5, 33.3, 66.6, 54.4, and 39.1%, respectively.

颗粒气凝胶碳网状电极提高了流式电容去离子电池的脱盐效率,对合成样品和实际样品中的离子进行了去除
流式电容去离子(FTCDI)是一种传统的改进流式电容去离子(CDI)细胞结构,用于去除水溶液中的离子。在这项研究中,设计了一种新的FTCDI,由含有离子交换膜(IEM)的网状电极(ME)和比表面积为489 m2/g的气凝胶碳颗粒组成。所有的分析和实验表明,新的设计可以去除硝酸盐、磷酸盐、钠、钙和氯化物。在最佳条件下,当最大输入浓度分别为450 mg/L、450 mg/L、70 mg/L和3 mg/L时,新型FTCDI系统对氯化钠、氯化钙、硝酸盐和磷酸盐的去除率分别为82.5%、49%、85%和90%。并对实际样品进行了效率评价。研究结果表明,当初始浊度为12 NTU,总可溶性固形物(TDS)为1700 mg/L,总硬度为540 mg/L,磷酸盐为0.09 mg/L,硝酸盐为28.8 mg/L,电导率为3480 μs/cm时,该体系的去除率分别为25、23.5、33.3、66.6、54.4和39.1%。
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来源期刊
Journal of Water Reuse and Desalination
Journal of Water Reuse and Desalination ENGINEERING, ENVIRONMENTAL-WATER RESOURCES
CiteScore
4.30
自引率
0.00%
发文量
23
审稿时长
16 weeks
期刊介绍: Journal of Water Reuse and Desalination publishes refereed review articles, theoretical and experimental research papers, new findings and issues of unplanned and planned reuse. The journal welcomes contributions from developing and developed countries.
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