首页> 外文期刊>Applied Energy >Integrating a supercapacitor with capacitive deionization for direct energy recovery from the desalination of brackish water
【24h】

Integrating a supercapacitor with capacitive deionization for direct energy recovery from the desalination of brackish water

机译:将超级电容器与电容去离子集成在一起,可从微咸水的脱盐中直接回收能量

获取原文
获取原文并翻译 | 示例
       

摘要

The importance of energy recovered from desalination techniques has been of considerable interest because of increasing water scarcity and energy crises. Capacitive deionization (CDI), a promising desalination technology using pairs of carbon electrodes under an electric field, has an attractive advantage in that energy stored during the charging step for salt removal can be further recovered during the discharging step. In this research, an energy recovery system based on a four-switch buck-boost converter with variable frequency was successfully constructed to transfer electric energy from a CDI module to a supercapacitor. The effects of the influent NaCl concentration and the distance between two oppositely placed electrodes were investigated on both the desalination behavior and energy recovery performance. The experimental procedure involved a charging step for ion removal, stop-flow operation for energy recovery, and discharging step for electrode regeneration. For the desalination of a 10 mM NaCl solution, a deionization capacity of 10.1 mg g(-1) and a total energy input of 0.09 kWhm(-3) were obtained. Overall, as demonstrated, a higher energy recovery ratio was achieved with a higher influent NaCl concentration and a shorter distance between the two electrodes. Significantly, up to 49.6% of the energy stored in the CDI module while reducing the salinity of a 50 mM NaCl solution could be directly recovered, indicating that the energy recovery system based on a four-switch buck-boost converter shows superior performance. The utilization of CDI integrated with a supercapacitor in this work holds great potential in both low-energy-requirement desalination and high-efficiency energy storage.
机译:由于海水短缺和能源危机的加剧,从海水淡化技术中回收能量的重要性引起了人们的极大兴趣。电容去离子(CDI)是一种很有前途的脱盐技术,在电场下使用成对的碳电极,具有吸引人的优势,因为在充电步骤中用于除盐的能量存储可以在放电步骤中进一步回收。在这项研究中,成功​​构建了基于具有可变频率的四开关降压-升压转换器的能量回收系统,以将电能从CDI模块转移到超级电容器。研究了进水NaCl浓度和两个相对放置的电极之间的距离对脱盐行为和能量回收性能的影响。实验程序包括用于离子去除的充电步骤,用于能量回收的停止流操作以及用于电极再生的放电步骤。对于10 mM NaCl溶液的脱盐,获得了10.1 mg g(-1)的去离子容量和0.09 kWhm(-3)的总能量输入。总体而言,如所证明的,通过更高的进水NaCl浓度和两个电极之间的距离更短,可以实现更高的能量回收率。值得注意的是,在降低50 mM NaCl溶液盐度的同时,最多可以直接回收CDI模块中存储的能量的49.6%,这表明基于四开关降压-升压转换器的能量回收系统显示出卓越的性能。在这项工作中,与超级电容器集成的CDI的利用在低能耗需求淡化和高效储能方面都具有巨大潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号