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Method of evaluation of the transport properties in polymeric membrane systems using the Nr hybrid form of Kedem–Katchalsky–Peusner formalism

  • Jan Dlugosz University in Czestochowa
  • Medical University of Silesia in Katowice
  • University of Silesia in Katowice
  • Częstochowa University of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

In this paper, the Nr hybrid version of the Kedem–Katchalsky–Peusner (K-K-P) formalism for concentration polarization conditions is developed. For ternary non-electrolyte solutions, this formalism includes the hybrid Peusner coefficients (Nrij, i, j ∈ {1, 2, 3}, r = A, B), which determine the transport properties of the membrane, the nrij coefficients which determine the degree of coupling, and the energy conversion efficiency coefficient (erij). Besides, K-K-P formalism is the basis for a method to evaluate the conversion of internal energy (U-energy) into free energy (F-energy) and dissipated energy (S-energy) in a membrane system containing ternary non-electrolyte solutions separated by a polymer membrane. Moreover, it is shown that the Peusner coefficients are proposed as a flux-induced version of the modified Péclet number for concentration polarization conditions. The present paper is a continuation of several previous papers, of which the Lr, Rr, Hr, Kr versions of the Kedem–Katchalsky–Peusner formalism are presented. The formalism using the Nr form of the hybrid Kedem–Katchalsky–Peusner equations can be a useful tool to study the transport properties of artificial membranes for environmental engineering.

Original languageEnglish
Pages (from-to)256-276
Number of pages21
JournalDesalination and Water Treatment
Volume301
DOIs
Publication statusPublished - Jul 2023

Keywords

  • Concentration polarization
  • Entropy
  • Membrane transport
  • Nr hybrid form of the Kedem–Katchalsky–Peusner equations
  • Peusner's network thermodynamics
  • Péclet number

ASJC Scopus subject areas

  • Water Science and Technology
  • Ocean Engineering
  • Pollution

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