Fabrication and characterization of a porous carbon electrode for desalination of brackish water
Desalination 238 (2009) 37-42
Authors
Abstract
To increase the surface area of electrodes for electrosorption, porous carbon electrodes were fabricated using a wet phase inversion method. A carbon slurry consisting of a mixture of activated carbon powder (ACP) and polyvinylidene fluoride solution was cast directly on a graphite sheet. The cast film was then immersed in pure water for phase inversion. Scanning electron microscopy images verified that the electrodes were porous and the pore size was less than 100 nm. The electrochemical properties were characterized using cyclic voltammetry. The electrical capacitance ranged from 2.18 to 4.77 F/cm2 depending on the ACP content, and the electrical capacitance increased as the solvent content decreased. The solvent content was an important variable controlling the pore size and capacitance of the electrodes.
Conclusion
To increase the electrode surface area, porous carbon electrodes were prepared using a wet phase inversion method and their surface characteristics and electrochemical performance were evaluated. SEM images showed that the electrodes were porous and the pore size was less than 100 nm. The electrical capacitance ranged from 2.18 to 4.77 F/cm2 depending on the ACP content. In addition, the effects of solvent content on pore size were investigated. The experimental results showed that the solvent content is an important variable that controls the pore size and ultimately the capacitance of an electrode, even up to 5.87 F/cm2.
Tags
Desalination, Electrical double layer, Electrosorption, Porous carbon electrode, Wet phase inversion
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