Current-induced membrane discharge
arXiv:1202.6448 · doi:10.1103/PhysRevLett.109.108301
Abstract
Possible mechanisms for over-limiting current (OLC) through aqueous ion-exchange membranes (exceeding diffusion limitation) have been debated for half a century. Flows consistent with electro-osmotic instability (EOI) have recently been observed in microfluidic experiments, but the existing theory neglects chemical effects and remains to be quantitatively tested. Here, we show that charge regulation and water self-ionization can lead to OLC by "current-induced membrane discharge" (CIMD), even in the absence of fluid flow. Salt depletion leads to a large electric field which expels water co-ions, causing the membrane to discharge and lose its selectivity. Since salt co-ions and water ions contribute to OLC, CIMD interferes with electrodialysis (salt counter-ion removal) but could be exploited for current-assisted ion exchange and pH control. CIMD also suppresses the extended space charge that leads to EOI, so it should be reconsidered in both models and experiments on OLC.
4.5 pages
References in corpus (1)
Cited by in corpus (20)
- Over-limiting Current and Control of Dendritic Growth by Surface Conduction in Nanopores
- Dynamics of microvortices induced by ion concentration polarization
- Electrochemical kinetics of SEI growth on carbon black, II: Modeling
- Analysis of ionic conductance of carbon nanotubes
- Charge Regulation with Fixed and Mobile Charges
- Concentration polarization, surface currents, and bulk advection in a microchannel
- Bridging the Gap between an Isolated Nanochannel/pore System and Communicating Multipore Heterogeneous Membrane System
- Linear stability analysis of transient electrodeposition in charged porous media: suppression of dendritic growth by surface conduction
- The driving factors of electro-convective instability in concentration polarization
- Deionization Shock Driven by Electroconvection in a Circular Channel
- Transport-limited water splitting at ion-selective interfaces during concentration polarization
- Long-time evolution of sequestered CO in porous media
- The Goldman-Hodgkins-Katz Equation, Reverse-Electrodialysis, and Everything in Between
- Theory of voltammetry in charged porous media
- Deionization Shocks in Crossflow
- Interfacial resistive switching by multiphase polarization in ion-intercalation nanofilms
- AC-Driven Electro-Osmotic Flow in Charged Nanopores
- Bipolar nanochannels: The effects of an electro-osmotic instability. Part I: Steady-state response
- Impact of Network Heterogenity on Nonlinear Electrokinetic Transport in Porous Media
- Nonlinear Dynamics of Ion Concentration Polarization in Porous Media: The Leaky Membrane Model