Overlimiting current and shock electrodialysis in porous media.

Langmuir

Department of Chemical Engineering and ‡Department of Mathematics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139 United States.

Published: December 2013

Most electrochemical processes, such as electrodialysis, are limited by diffusion, but in porous media, surface conduction and electroosmotic flow also contribute to ionic flux. In this article, we report experimental evidence for surface-driven overlimiting current (faster than diffusion) and deionization shocks (propagating salt removal) in a porous medium. The apparatus consists of a silica glass frit (1 mm thick with a 500 nm mean pore size) in an aqueous electrolyte (CuSO4 or AgNO3) passing ionic current from a reservoir to a cation-selective membrane (Nafion). The current-voltage relation of the whole system is consistent with a proposed theory based on the electroosmotic flow mechanism over a broad range of reservoir salt concentrations (0.1 mM to 1.0 M) after accounting for (Cu) electrode polarization and pH-regulated silica charge. Above the limiting current, deionized water (≈10 μM) can be continuously extracted from the frit, which implies the existence of a stable shock propagating against the flow, bordering a depleted region that extends more than 0.5 mm across the outlet. The results suggest the feasibility of shock electrodialysis as a new approach to water desalination and other electrochemical separations.

Download full-text PDF

Source
http://dx.doi.org/10.1021/la4040547DOI Listing

Publication Analysis

Top Keywords

overlimiting current
8
shock electrodialysis
8
porous media
8
electroosmotic flow
8
current shock
4
electrodialysis porous
4
media electrochemical
4
electrochemical processes
4
processes electrodialysis
4
electrodialysis limited
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!