Numerical study on the performance prediction of a proton exchange membrane (PEM) fuel cell
Author(s):
Article Type:
Research/Original Article (دارای رتبه معتبر)
Abstract:
An electrochemical analysis on a single channel PEM fuel cell was carried out by Computational Fuel Cell Dynamics (CFCD). The objective was to assess the latest developments regarding the effects of change in the current collector materials, porosity of electrodes and gas diffusion layer on the fuel cell power density. Graphite, as the most applicable current collector material, was applied followed by Aluminum and Titanium. It was found that titanium enhances the performance of the fuel cell as compared to the graphite and aluminum. Other results obtained were: the total porosity of electrode's layers does not have a significant effect on power density. At higher porosity of gas diffusion layer at voltages higher than 0.5 is favorable in gas diffusion, which leads to better performance. A numerical model, based on the assessment of basic best practice guidelines for CFCD, was developed that led to reasonably good agreement with the experimental results.
Keywords:
Language:
English
Published:
Journal of Hydrogen, Fuel Cell and Energy Storage, Volume:4 Issue: 4, Autumn 2017
Pages:
249 to 263
https://magiran.com/p1824341
مقالات دیگری از این نویسنده (گان)
-
Effect of humic acid on adsorption of methylparaben from aqueous solutions onto commercially available granular activated carbons
A. R. Solaimany Nazar *, M. B. Kurade, M. Ali Khan, B.-H. Jeon
Scientia Iranica, May & Jun 2022 -
Simulation of photocatalytic degradation of methylene blue in planar microreactor with integrated ZnO nanowires
Fayazeh Rabanimehr, Mehrdad Farhadian *, AliReza Solaimany Nazar, Elham Sadat Behineh
Journal of Applied Research in Water and Wastewater, Winter-Spring 2021