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Surface conductivity in electrokinetic systems with porous and charged interfaces: Analytical approximations and numerical results
Authors:Alexander C. Barbati  Brian J. Kirby
Affiliation:Sibley School of Mechanical and Aerospace Engineering, Cornell University, Ithaca, NY, USA
Abstract:We derive an approximate analytical representation of the conductivity for a 1D system with porous and charged layers grafted onto parallel plates. Our theory improves on prior work by developing approximate analytical expressions applicable over an arbitrary range of potentials, both large and small as compared to the thermal voltage urn:x-wiley:01730835:media:elps5865:elps5865-math-0006. Further, we describe these results in a framework of simplifying nondimensional parameters, indicating the relative dominance of various physicochemical processes. We demonstrate the efficacy of our approximate expression with comparisons to numerical representations of the exact analytical conductivity. Finally, we utilize this conductivity expression, in concert with other components of the electrokinetic coupling matrix, to describe the streaming potential and electroviscous effect in systems with porous and charged layers.
Keywords:Electrokinetic coupling matrix  Electrokinetics  Electroosmosis  Porous layer  Soft layer
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