The responsible use of water, as well as its reuse and purification, has been a major problem for decades now. In this work, we study a method for adsorbing ions from aqueous solutions on charged interfaces using highly porous electrodes. This water purification process is based on the electric double layer concept, using the method known as capacitive deionization (CDI): If we pump salty solutions through the volume comprised between two porous electrodes while applying a potential difference to them, ions present in the solution are partially removed and trapped on the electrode surfaces. It has been well established that the use of carbon electrodes in combination with ion exchange membranes (membrane-CDI) improves the efficiency ...
Capacitive deionization (CDI) is an electrochemical method for water desalination using porous carbo...
A new way of desalination using capacitive deionization (CDI) technology is by inverting the potenti...
In capacitive deionization, the salt-adsorption capacity of the electrode is critical for the effici...
The responsible use of water, as well as its reuse and purification, has been a major problem for d...
Capacitive deionization is a desalination technology to remove ions from aqueous solution in a cycli...
Capacitive deionization is a desalination technology to remove ions from aqueous solution in a cycli...
Capacitive deionization is a desalination technology to remove ions from aqueous solution in a cycli...
<p>Capacitive deionization (CDI) is an emerging technology for the facile removal of charged ionic s...
<p>Capacitive deionization (CDI) is an emerging technology for the facile removal of charged ionic s...
Porous carbon electrodes have significant potential for energy-efficient water desalination using a ...
Porous carbon electrodes have significant potential for energy-efficient water desalination using a ...
Capacitive deionization (CDI) is a novel technology that has been successfully utilized for many wat...
Capacitive deionization has been developed as a promising desalination alternative for removing ions...
Capacitive deionization (CDI) is an electrochemical method for water desalination using porous carbo...
Capacitive deionization has been developed as a promising desalination alternative for removing ions...
Capacitive deionization (CDI) is an electrochemical method for water desalination using porous carbo...
A new way of desalination using capacitive deionization (CDI) technology is by inverting the potenti...
In capacitive deionization, the salt-adsorption capacity of the electrode is critical for the effici...
The responsible use of water, as well as its reuse and purification, has been a major problem for d...
Capacitive deionization is a desalination technology to remove ions from aqueous solution in a cycli...
Capacitive deionization is a desalination technology to remove ions from aqueous solution in a cycli...
Capacitive deionization is a desalination technology to remove ions from aqueous solution in a cycli...
<p>Capacitive deionization (CDI) is an emerging technology for the facile removal of charged ionic s...
<p>Capacitive deionization (CDI) is an emerging technology for the facile removal of charged ionic s...
Porous carbon electrodes have significant potential for energy-efficient water desalination using a ...
Porous carbon electrodes have significant potential for energy-efficient water desalination using a ...
Capacitive deionization (CDI) is a novel technology that has been successfully utilized for many wat...
Capacitive deionization has been developed as a promising desalination alternative for removing ions...
Capacitive deionization (CDI) is an electrochemical method for water desalination using porous carbo...
Capacitive deionization has been developed as a promising desalination alternative for removing ions...
Capacitive deionization (CDI) is an electrochemical method for water desalination using porous carbo...
A new way of desalination using capacitive deionization (CDI) technology is by inverting the potenti...
In capacitive deionization, the salt-adsorption capacity of the electrode is critical for the effici...