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 concentrati...
Ion transport is crucial in many applications such as desalination and fuel cells. This thesis descr...
In water desalination by electrodialysis, the current density i cannot exceed specific constraints,...
In electrodialysis desalination processes, the operating current density is limited by concentration...
Rising global demand for potable water is driving innovation in water treatment methods. Shock elect...
© 2019 American Physical Society. In a circular channel passing overlimiting current (faster than di...
Shock electrodialysis (shock ED), an emerging electrokinetic process for water purification, leverag...
Rising global demand for potable water is driving innovation in water treatment methods. Shock elect...
Salt transport in bulk electrolytes is limited by diffusion and advection, but in microstructures wi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2016.This...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2019Catal...
In order to understand the ion transport in a continuous cross-flow shock electrodialysis process be...
We revisit the classical problem of diffusion-limited ion transport to a membrane (or electrode) by ...
Direct evidence is provided for the transition from surface conduction (SC) to electro-osmotic flow ...
The long-term goals of this work is to develop a better understanding of the coupled transport pheno...
When a pressure difference is applied to the two ends of a capillary tube containing an electrolyte,...
Ion transport is crucial in many applications such as desalination and fuel cells. This thesis descr...
In water desalination by electrodialysis, the current density i cannot exceed specific constraints,...
In electrodialysis desalination processes, the operating current density is limited by concentration...
Rising global demand for potable water is driving innovation in water treatment methods. Shock elect...
© 2019 American Physical Society. In a circular channel passing overlimiting current (faster than di...
Shock electrodialysis (shock ED), an emerging electrokinetic process for water purification, leverag...
Rising global demand for potable water is driving innovation in water treatment methods. Shock elect...
Salt transport in bulk electrolytes is limited by diffusion and advection, but in microstructures wi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2016.This...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2019Catal...
In order to understand the ion transport in a continuous cross-flow shock electrodialysis process be...
We revisit the classical problem of diffusion-limited ion transport to a membrane (or electrode) by ...
Direct evidence is provided for the transition from surface conduction (SC) to electro-osmotic flow ...
The long-term goals of this work is to develop a better understanding of the coupled transport pheno...
When a pressure difference is applied to the two ends of a capillary tube containing an electrolyte,...
Ion transport is crucial in many applications such as desalination and fuel cells. This thesis descr...
In water desalination by electrodialysis, the current density i cannot exceed specific constraints,...
In electrodialysis desalination processes, the operating current density is limited by concentration...