Simulation analysis of the effect of temperature on overpotentials in PEM electrolyzer system / Abdul Hadi Abdol Rahim, Alhassan Salami Tijani and Farah Hanun Shukri

Mass transport through the porous electrode of Polymer Electrolyte Membrane (PEM) electrolyzer encounters a resistance when it flows through the electrodes. As the resistance increases with increasing flow, some energy is loss in the process which causes diffusion overvoltage. The cell voltage to be...

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Main Authors: Abdol Rahim, Abdul Hadi, Salami Tijani, Alhassan, Shukri, Farah Hanun
Format: Article
Language:English
Published: Faculty of Mechanical Engineering Universiti Teknologi MARA (UiTM) 2015
Online Access:http://ir.uitm.edu.my/id/eprint/17638/2/AJ_A.H.%20ABDOL%20RAHIM%20JME%2015.pdf
http://ir.uitm.edu.my/id/eprint/17638/
https://jmeche.uitm.edu.my/
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spelling my.uitm.ir.176382019-08-09T03:26:14Z http://ir.uitm.edu.my/id/eprint/17638/ Simulation analysis of the effect of temperature on overpotentials in PEM electrolyzer system / Abdul Hadi Abdol Rahim, Alhassan Salami Tijani and Farah Hanun Shukri Abdol Rahim, Abdul Hadi Salami Tijani, Alhassan Shukri, Farah Hanun Mass transport through the porous electrode of Polymer Electrolyte Membrane (PEM) electrolyzer encounters a resistance when it flows through the electrodes. As the resistance increases with increasing flow, some energy is loss in the process which causes diffusion overvoltage. The cell voltage to be imposed is higher because of mass transport limitations. In PEM electrolyzer, the cell voltage is generally the sum of reversible voltage and the overpotentials. The ohmic, activation and mass transfer losses are the most prominent losses in a PEM electrolyser. In this manuscript, mathematical models related to PEM electrolyzer based on a combination of thermodynamics fundamental and electrochemical relations are presented. A single cell simple PEM electrolyzer is analyzed on the basis ofwell-known Butler- Volmer kinetic for electrodes and transport resistance in the polymer-electrolyte. In addition, the overpotential at the anode, cathode and overpotential due to ohmic resistances are analyzed as well. Then, the effect of temperature on operating cell voltage, resistance and ionic conductivity of the polymer electrolyte are examined with the developed model. Finally sensitivity analysis for different values of exchange current densities at anode and cathode are tested. The simulation results indicated that as temperature increases, there is a significant or sharp decrease in ohmic resistance from 0.198Ω/cm² at 40°C to 0.125Ω/ cm² at 80°C. Also at 40°C and2A/ cm², an operating voltage of 2.13 V has seen achieved, however at higher temperature (80°C), the operating cell voltage drops to 1.98V at 2A/ cm² and this constitutes about 7% reduction in operating cell voltage. From this observation it can be concluded that the ionic conductivity of the membrane assembly increases with temperature. Faculty of Mechanical Engineering Universiti Teknologi MARA (UiTM) 2015 Article PeerReviewed text en http://ir.uitm.edu.my/id/eprint/17638/2/AJ_A.H.%20ABDOL%20RAHIM%20JME%2015.pdf Abdol Rahim, Abdul Hadi and Salami Tijani, Alhassan and Shukri, Farah Hanun (2015) Simulation analysis of the effect of temperature on overpotentials in PEM electrolyzer system / Abdul Hadi Abdol Rahim, Alhassan Salami Tijani and Farah Hanun Shukri. Journal of Mechanical Engineering (JMechE), 12 (1). pp. 47-65. ISSN 1823-5514 ; 2550-164X https://jmeche.uitm.edu.my/
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
description Mass transport through the porous electrode of Polymer Electrolyte Membrane (PEM) electrolyzer encounters a resistance when it flows through the electrodes. As the resistance increases with increasing flow, some energy is loss in the process which causes diffusion overvoltage. The cell voltage to be imposed is higher because of mass transport limitations. In PEM electrolyzer, the cell voltage is generally the sum of reversible voltage and the overpotentials. The ohmic, activation and mass transfer losses are the most prominent losses in a PEM electrolyser. In this manuscript, mathematical models related to PEM electrolyzer based on a combination of thermodynamics fundamental and electrochemical relations are presented. A single cell simple PEM electrolyzer is analyzed on the basis ofwell-known Butler- Volmer kinetic for electrodes and transport resistance in the polymer-electrolyte. In addition, the overpotential at the anode, cathode and overpotential due to ohmic resistances are analyzed as well. Then, the effect of temperature on operating cell voltage, resistance and ionic conductivity of the polymer electrolyte are examined with the developed model. Finally sensitivity analysis for different values of exchange current densities at anode and cathode are tested. The simulation results indicated that as temperature increases, there is a significant or sharp decrease in ohmic resistance from 0.198Ω/cm² at 40°C to 0.125Ω/ cm² at 80°C. Also at 40°C and2A/ cm², an operating voltage of 2.13 V has seen achieved, however at higher temperature (80°C), the operating cell voltage drops to 1.98V at 2A/ cm² and this constitutes about 7% reduction in operating cell voltage. From this observation it can be concluded that the ionic conductivity of the membrane assembly increases with temperature.
format Article
author Abdol Rahim, Abdul Hadi
Salami Tijani, Alhassan
Shukri, Farah Hanun
spellingShingle Abdol Rahim, Abdul Hadi
Salami Tijani, Alhassan
Shukri, Farah Hanun
Simulation analysis of the effect of temperature on overpotentials in PEM electrolyzer system / Abdul Hadi Abdol Rahim, Alhassan Salami Tijani and Farah Hanun Shukri
author_facet Abdol Rahim, Abdul Hadi
Salami Tijani, Alhassan
Shukri, Farah Hanun
author_sort Abdol Rahim, Abdul Hadi
title Simulation analysis of the effect of temperature on overpotentials in PEM electrolyzer system / Abdul Hadi Abdol Rahim, Alhassan Salami Tijani and Farah Hanun Shukri
title_short Simulation analysis of the effect of temperature on overpotentials in PEM electrolyzer system / Abdul Hadi Abdol Rahim, Alhassan Salami Tijani and Farah Hanun Shukri
title_full Simulation analysis of the effect of temperature on overpotentials in PEM electrolyzer system / Abdul Hadi Abdol Rahim, Alhassan Salami Tijani and Farah Hanun Shukri
title_fullStr Simulation analysis of the effect of temperature on overpotentials in PEM electrolyzer system / Abdul Hadi Abdol Rahim, Alhassan Salami Tijani and Farah Hanun Shukri
title_full_unstemmed Simulation analysis of the effect of temperature on overpotentials in PEM electrolyzer system / Abdul Hadi Abdol Rahim, Alhassan Salami Tijani and Farah Hanun Shukri
title_sort simulation analysis of the effect of temperature on overpotentials in pem electrolyzer system / abdul hadi abdol rahim, alhassan salami tijani and farah hanun shukri
publisher Faculty of Mechanical Engineering Universiti Teknologi MARA (UiTM)
publishDate 2015
url http://ir.uitm.edu.my/id/eprint/17638/2/AJ_A.H.%20ABDOL%20RAHIM%20JME%2015.pdf
http://ir.uitm.edu.my/id/eprint/17638/
https://jmeche.uitm.edu.my/
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