The effects of the residual water in the PEM fuel cell after cold start on the performance, electrode electrochemical characteristics, and cell components were investigated by controlling the cold-start processes of three cells at -5 degrees C. Neither the cell performance loss nor the cell resistance increase with the start number was observed. There was no change in the electrochemical active surface area (ECA) and charge transfer resistance at low current density. The correlation between the amount of the residual water and the ohmic polarization and cell resistance showed mass-transport process slightly changed with the water amount in the cell. This trend correlated well with the charge transfer resistance at high current density. The ...
A combined experimental and analytical investigation of single proton exchange membrane (PEM) fuel c...
In this work, membrane resistance measurement and water balance experiment were implemented to inves...
In startups of polymer electrolyte fuel cells at temperatures close to 0 degrees C below freezing, w...
Reversible performance loss induced by sequential failed cold start of PEM fuel cellsThis study corr...
Successful and rapid startup of proton exchange membrane fuel cells (PEMFCs) at subfreezing temperat...
With the support from National Natural Science Foundation of China(NSFC) and 863 High-Tech Program, ...
The effect of water removal and freeze/thaw cycles on proton exchange membrane (PEM) fuel cells was ...
The cold-start model developed in Part I of this study is verified by comparing its predictions to a...
The sub-freezing endurance of proton exchange membrane (PEM) fuel cells with hydrophobic and hydroph...
The isothermal operation of single PEM fuel cells below 0 degrees C is investigated by potentiostati...
Fuel cells are electrochemical devices that combine hydrogen and oxygen from air to produce electric...
An analytical solution of water mass balance equation was obtained considering diffusion and electro...
The possibility to start-up polymer fuel cells from freezing temperatures is an essential requiremen...
Effects of reverse voltage and frozen fuel cell startup on the membrane electrode assembly (MEA) wer...
International audienceIn this paper, experimental investigations on the influence of operational par...
A combined experimental and analytical investigation of single proton exchange membrane (PEM) fuel c...
In this work, membrane resistance measurement and water balance experiment were implemented to inves...
In startups of polymer electrolyte fuel cells at temperatures close to 0 degrees C below freezing, w...
Reversible performance loss induced by sequential failed cold start of PEM fuel cellsThis study corr...
Successful and rapid startup of proton exchange membrane fuel cells (PEMFCs) at subfreezing temperat...
With the support from National Natural Science Foundation of China(NSFC) and 863 High-Tech Program, ...
The effect of water removal and freeze/thaw cycles on proton exchange membrane (PEM) fuel cells was ...
The cold-start model developed in Part I of this study is verified by comparing its predictions to a...
The sub-freezing endurance of proton exchange membrane (PEM) fuel cells with hydrophobic and hydroph...
The isothermal operation of single PEM fuel cells below 0 degrees C is investigated by potentiostati...
Fuel cells are electrochemical devices that combine hydrogen and oxygen from air to produce electric...
An analytical solution of water mass balance equation was obtained considering diffusion and electro...
The possibility to start-up polymer fuel cells from freezing temperatures is an essential requiremen...
Effects of reverse voltage and frozen fuel cell startup on the membrane electrode assembly (MEA) wer...
International audienceIn this paper, experimental investigations on the influence of operational par...
A combined experimental and analytical investigation of single proton exchange membrane (PEM) fuel c...
In this work, membrane resistance measurement and water balance experiment were implemented to inves...
In startups of polymer electrolyte fuel cells at temperatures close to 0 degrees C below freezing, w...