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Modelling of the Electrical Membrane Potential for Concentration Polarization Conditions

  • University of Economics in Katowice
  • Jan Dlugosz University in Czestochowa
  • Częstochowa University of Technology
  • VŠB – Technical University of Ostrava

Research output: Contribution to journalArticlepeer-review

3 Citations (Scopus)

Abstract

Based on Kedem–Katchalsky formalism, the model equation of the membrane potential (∆ψs ) generated in a membrane system was derived for the conditions of concentration polariza-tion. In this system, a horizontally oriented electro-neutral biomembrane separates solutions of the same electrolytes at different concentrations. The consequence of concentration polarization is the creation, on both sides of the membrane, of concentration boundary layers. The basic equation of this model includes the unknown ratio of solution concentrations (Ci /Ce ) at the membrane/concentration boundary layers. We present the calculation procedure (Ci /Ce ) based on novel equations derived in the paper containing the transport parameters of the membrane (Lp, σ, and ω), solutions (ρ, ν), concentration boundary layer thicknesses (δl, δh ), concentration Raileigh number (RC ), concentration polarization factor (ζs ), volume flux (Jv ), mechanical pressure difference (∆P), and ratio of known solution concentrations (Ch /Cl ). From the resulting equation, ∆ψs was calculated for various com-binations of the solution concentration ratio (Ch /Cl ), the Rayleigh concentration number (RC ), the concentration polarization coefficient (ζs ), and the hydrostatic pressure difference (∆P). Calculations were performed for a case where an aqueous NaCl solution with a fixed concentration of 1 mol m−3 (Cl ) was on one side of the membrane and on the other side an aqueous NaCl solution with a concentration between 1 and 15 mol m−3 (Ch ). It is shown that (∆ψs ) depends on the value of one of the factors (i.e., ∆P, Ch /Cl, RC and ζs ) at a fixed value of the other three.

Original languageEnglish
Article number138
JournalEntropy
Volume24
Issue number1
DOIs
Publication statusPublished - Jan 2022

Keywords

  • Concentration Rayleigh number
  • Concentration polarization
  • Kedem–Katchalsky equations
  • Membrane potential
  • Membrane transport
  • Polymeric membrane

ASJC Scopus subject areas

  • Information Systems
  • Mathematical Physics
  • Physics and Astronomy (miscellaneous)
  • General Physics and Astronomy
  • Electrical and Electronic Engineering

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