Review on the science and technology of water desalination by capacitive deionization
Обзор научных и технологических аспектов обессоливания воды методом ёмкостной деионизации
2013-04-04
SCID: 54.1/4yc6xsss
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brackish watercapacitive deionizationion storage capacityporous carbon electrodeswater desalination
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Abstract (AI)
Porous carbon electrodes have significant potential for energy-efficient water desalination using a promising technology called Capacitive Deionization (CDI). In CDI, salt ions are removed from brackish water upon applying an electrical voltage difference between two porous electrodes, in which the ions will be temporarily immobilized. These electrodes are made of porous carbons optimized for salt storage capacity and ion and electron transport. We review the science and technology of CDI and describe the range of possible electrode materials and the various approaches to the testing of materials and devices. We summarize the range of options for CDI-designs and possible operational modes, and describe the various theoretical–conceptual approaches to understand the phenomenon of CDI.
Key Findings
1
CDI performance can be investigated through multiple conceptual and theoretical frameworks for understanding ion removal and storage.
2
CDI removes salt ions by temporarily immobilizing them in porous carbon electrodes under an applied electrical voltage difference.
3
Capacitive deionization (CDI) is presented as a promising energy-efficient technology for desalinating brackish water.
4
Effective CDI electrodes must balance high salt-storage capacity with efficient ion and electron transport.
5
The review covers CDI electrode materials, material and device testing methods, system designs, operational modes, and theoretical approaches.
Research Object
capacitive deionization (CDI) of brackish water using porous carbon electrodes
Research Subject
the science, technology, electrode materials, device designs, operational modes, and theoretical mechanisms governing salt-ion removal, storage, and transport in CDI
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2013-04-04
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