Despite the great advantages of high-temperature polymer electrolyte membrane (HT-PEM) fuel cells over the low-temperature (LT) PEM alternative, such as enhanced reaction kinetics and higher tolerance against impurities like CO due to the higher operation temperature, the achievement of high lifetimes still remains a challenge. In order to improve the durability of the fuel cell, extensive research has been carried out on alternatives for the individual components. For this reason, this paper conducted extended long-term tests with three three membrane electrode assemblies (MEAs) from one manufacturer under different operational scenarios. The MEAs differed mainly by the membranes used and showed significantly different behaviors. While the...
The Polymer Electrolyte Membrane (PEM) fuel cell is an ideal emerging alternative power source for t...
One possible solution of combating issues posed by climate change is the use of the High Temperature...
In this paper, 550 h (500 h continuous and 50 h intermittent) high-temperature proton exchange membr...
Despite the great advantages of high-temperature polymer electrolyte membrane (HT-PEM) fuel cells ov...
High temperature-polymer exchange membrane fuel cells (HT-PEM FC) combine many advantages among the ...
Proton exchange membrane (PEM) fuel cells are energy sources that have the potential to replace alka...
>Magister Scientiae - MScPolymer electrolyte membrane fuel cells (PEMFCs) among other fuel cells are...
To meet the requirements of membrane electrode assemblies (MEAs) for polymer electrolyte fuel cells ...
As fuel cell technology matures and time scale to commercialization decreases, the need for a more c...
Proton exchange membrane fuel cells are expected to change the landscape of power generation over th...
Due to their high power density, low operating temperature and high power-to-weight ratio, PEM fuel ...
Polymer exchange membrane (PEM) fuel cells are considered promising power sources, with a vast appli...
The study presented in this paper aims to evaluate the performance degradation of Polybenzimidazole ...
In: Proceedings HYPOTHESIS VIII- Hydrogen Systems and Materials for Sustainability, HYP_45, Lisbon, ...
A key requirement for PEM fuel cells for transport applications is longevity with a targeted lifetim...
The Polymer Electrolyte Membrane (PEM) fuel cell is an ideal emerging alternative power source for t...
One possible solution of combating issues posed by climate change is the use of the High Temperature...
In this paper, 550 h (500 h continuous and 50 h intermittent) high-temperature proton exchange membr...
Despite the great advantages of high-temperature polymer electrolyte membrane (HT-PEM) fuel cells ov...
High temperature-polymer exchange membrane fuel cells (HT-PEM FC) combine many advantages among the ...
Proton exchange membrane (PEM) fuel cells are energy sources that have the potential to replace alka...
>Magister Scientiae - MScPolymer electrolyte membrane fuel cells (PEMFCs) among other fuel cells are...
To meet the requirements of membrane electrode assemblies (MEAs) for polymer electrolyte fuel cells ...
As fuel cell technology matures and time scale to commercialization decreases, the need for a more c...
Proton exchange membrane fuel cells are expected to change the landscape of power generation over th...
Due to their high power density, low operating temperature and high power-to-weight ratio, PEM fuel ...
Polymer exchange membrane (PEM) fuel cells are considered promising power sources, with a vast appli...
The study presented in this paper aims to evaluate the performance degradation of Polybenzimidazole ...
In: Proceedings HYPOTHESIS VIII- Hydrogen Systems and Materials for Sustainability, HYP_45, Lisbon, ...
A key requirement for PEM fuel cells for transport applications is longevity with a targeted lifetim...
The Polymer Electrolyte Membrane (PEM) fuel cell is an ideal emerging alternative power source for t...
One possible solution of combating issues posed by climate change is the use of the High Temperature...
In this paper, 550 h (500 h continuous and 50 h intermittent) high-temperature proton exchange membr...