Local Entropy Production Rates in a Polymer Electrolyte Membrane Fuel Cell

Author:

Siemer Marc,Marquardt Tobias,Valadez Huerta Gerardo,Kabelac Stephan

Abstract

AbstractA modeling study on a polymer electrolyte membrane fuel cell by means of non-equilibrium thermodynamics is presented. The developed model considers a one-dimensional cell in steady-state operation. The temperature, concentration and electric potential profiles are calculated for every domain of the cell. While the gas diffusion and the catalyst layers are calculated with established classical modeling approaches, the transport processes in the membrane are calculated with the phenomenological equations as dictated by the non-equilibrium thermodynamics. This approach is especially instructive for the membrane as the coupled transport mechanisms are dominant. The needed phenomenological coefficients are approximated on the base of conventional transport coefficients. Knowing the fluxes and their intrinsic corresponding forces, the local entropy production rate is calculated. Accordingly, the different loss mechanisms can be detected and quantified, which is important for cell and stack optimization.

Publisher

Walter de Gruyter GmbH

Subject

General Physics and Astronomy,General Chemistry

Reference106 articles.

1. Endoreversible modeling of a PEM fuel cell;J. Non-Equilib. Thermodyn,2015

2. Vie Characterization and optimization of the polymer electrolyte fuel cell Dissertation Trondheim;NTNU,2002

3. Reaction pathways and poisons – II. The rate controlling step for electrochemical oxidation of hydrogen on Pt in acid and poisoning of the reaction by CO;Electrochim. Acta,1975

4. A single phase, non isothermal model for PEM fuel cells;Int. J. Heat Mass Trans,2005

5. Vorlesungsskript Irreversible Thermodynamik Wintersemester Rheinisch Westfälische Technische Hochschule Aachen;Schnakenberg,1994

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