A capacitive deionization system with high energy recovery and effective re-use
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Abstract
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DOI: 10.1016/j.energy.2016.03.021
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Cited by:
- Yuxin Jiang & Linfeng Jin & Dun Wei & Sikpaam Issaka Alhassan & Haiying Wang & Liyuan Chai, 2022. "Energy Consumption in Capacitive Deionization for Desalination: A Review," IJERPH, MDPI, vol. 19(17), pages 1-19, August.
- Yang, Junqin & Zhao, Hui & Li, Chenchen & Li, Xiuwei, 2021. "A direct energy reuse strategy for absorption air-conditioning system based on electrode regeneration method," Renewable Energy, Elsevier, vol. 168(C), pages 353-364.
- Shenxu Bao & Chunfu Xin & Yimin Zhang & Bo Chen & Wei Ding & Yongpeng Luo, 2023. "Application of Capacitive Deionization in Water Treatment and Energy Recovery: A Review," Energies, MDPI, vol. 16(3), pages 1-24, January.
- Chen, Yu-Wu & Chen, Jhao-Fu & Lin, Chang-Hua & Hou, Chia-Hung, 2019. "Integrating a supercapacitor with capacitive deionization for direct energy recovery from the desalination of brackish water," Applied Energy, Elsevier, vol. 252(C), pages 1-1.
- Meijun Liu & Mengyao He & Jinglong Han & Yueyang Sun & Hong Jiang & Zheng Li & Yuna Li & Haifeng Zhang, 2022. "Recent Advances in Capacitive Deionization: Research Progress and Application Prospects," Sustainability, MDPI, vol. 14(21), pages 1-41, November.
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Keywords
Capacitive deionization; Bi-polar connection; Flow-through processing; Energy recovery;All these keywords.
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