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Researchers find a way to extend life and improve performance of fuel cell electrodes.
Hafnium for extending life and improving performance of fuel cell electrodes.
It directly affects the performance of fuel elements.
The performance of fuel cells was assessed using pure methanol at operating temperatures of 300-400 °C. 300-400 °C
Gas transport in the porous electrode plays a crucial role in the performance of fuel cells.
If these materials become reality, they could dramatically increase the performance of fuel cell cars, finally making automobiles that run on hydrogen fuel commercially practical.
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Optimisation of the performance of fuels has focused attention on the use of oxygen containing additives to improve octane or cetane numbers.
Our work facilitates a comprehensive understanding of gas transport in electrodes and the improvement in the electrochemical performances of fuel cells.
In this paper, a semi-empirical model has been proposed for online identification in order to improve the performances of Fuel Cell Vehicles (FCV).
For powering vehicles, and competing with the performance of hydrogen fuel cells, the catalyst and fuel cell would need to be improved.
Mathematical models are trusted as important tools for designing and performance analysis of fuel cell based systems.
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