This work presents a comprehensive mapping of electrochemical impedance measurements under the influence of CO and methanol vapor contamination of the anode gas in a high temperature proton exchange membrane fuel cell, at varying load current. Electrical equivalent circuit model parameters based on experimental evaluation of electrochemical impedance spectroscopy measurements were used to quantify the changes caused by different contamination levels. The changes are generally in good agreement with what is found in the literature. It is shown that an increased level of CO contamination resulted in an increase in the high frequency and intermediate frequency impedances. When adding CO and methanol to the anode gas, the low frequency part of ...
The high frequency electrochemical impedance measurements with positive imaginary components in the ...
High-temperature proton exchange membrane fuel cells (HT-PEMFC) directly convert hydrogen and oxygen...
Low temperature Polymer Electrolyte Membrane (PEM) fuel cells are a promising energy source for stat...
This work presents a comprehensive mapping of electrochemical impedance measurements under the influ...
The impedance of a proton exchange membrane fuel cell powered by hydrogen contaminated with carbon m...
In this work, extensive electrochemical impedance measurements have been conducted on a 45 cm2 BASF ...
In this work the effects of reformate gas impurities on a H3PO4-doped polybenzimidazole (PBI) membra...
The performance of a direct methanol fuel cell MEA degraded during an operational period of more tha...
This paper presents test results regarding the poisoning effects of CO and CO2 on H3PO4/Polybenzimid...
In this work the poisoning effect of carbon monoxide (CO) on the performance of high temperature pol...
This paper focuses on the electrochemical characterisation, e.g. current-voltage-measurement and tim...
Impedance study of complete methanol depletion in Direct Methanol Fuel Cells K. Wippermann, A. Löh...
This work investigates the influence of carbon dioxide and non-reacted methanol, present in the refo...
The PBI/H3PO4 high temperature (HT) PEM fuel cell is often fueled with H2-rich reformates which typi...
In this paper, we experimentally investigated two high temperature polymer electrolyte membrane fuel...
The high frequency electrochemical impedance measurements with positive imaginary components in the ...
High-temperature proton exchange membrane fuel cells (HT-PEMFC) directly convert hydrogen and oxygen...
Low temperature Polymer Electrolyte Membrane (PEM) fuel cells are a promising energy source for stat...
This work presents a comprehensive mapping of electrochemical impedance measurements under the influ...
The impedance of a proton exchange membrane fuel cell powered by hydrogen contaminated with carbon m...
In this work, extensive electrochemical impedance measurements have been conducted on a 45 cm2 BASF ...
In this work the effects of reformate gas impurities on a H3PO4-doped polybenzimidazole (PBI) membra...
The performance of a direct methanol fuel cell MEA degraded during an operational period of more tha...
This paper presents test results regarding the poisoning effects of CO and CO2 on H3PO4/Polybenzimid...
In this work the poisoning effect of carbon monoxide (CO) on the performance of high temperature pol...
This paper focuses on the electrochemical characterisation, e.g. current-voltage-measurement and tim...
Impedance study of complete methanol depletion in Direct Methanol Fuel Cells K. Wippermann, A. Löh...
This work investigates the influence of carbon dioxide and non-reacted methanol, present in the refo...
The PBI/H3PO4 high temperature (HT) PEM fuel cell is often fueled with H2-rich reformates which typi...
In this paper, we experimentally investigated two high temperature polymer electrolyte membrane fuel...
The high frequency electrochemical impedance measurements with positive imaginary components in the ...
High-temperature proton exchange membrane fuel cells (HT-PEMFC) directly convert hydrogen and oxygen...
Low temperature Polymer Electrolyte Membrane (PEM) fuel cells are a promising energy source for stat...