We demonstrate that the use of high duty cycle time-of-flight (HDC-TOF) neutron transmission imaging allows a spatially resolved analysis of the aggregate state of water during isothermal cold starts of polymer electrolyte fuel cells (PEFCs). Neutron attenuation at long wavelengths depends on the mobility of protons and is therefore lower for ice compared to liquid water. With the experimental setup used in our experiment (chopper disk duty cycle of 30%) attenuation at long wavelengths normalized to attenuation at short wavelengths leads to a contrast between ice and super-cooled water higher than 6% and a measurement time of a few minutes is sufficient to detect reliably phase changes of thick water layers (≈0.5 mm), i.e. when water is pre...
In this work, we investigate the cold-start operation of polymer electrolyte fuel cells (PEFCs) thro...
This work presents an in situ study on the water-content measurement in polymer electrolyte fuel cel...
In startups of polymer electrolyte fuel cells at temperatures close to 0 degrees C below freezing, w...
Start-ups of a polymer electrolyte fuel cell (PEFC) isothermally maintained at subfreezing temperatu...
Starting PEFCs from sub-zero temperatures can be challenging as generated product water runs the ris...
This report summarizes the final year's progress of the three-year NEER program. The overall objecti...
Isothermal cold starts of polymer electrolyte fuel cells were performed at sub-zero temperatures an...
We report an investigation of the phase transitions between water and ice using neutron imaging as a...
We report an investigation of the phase transitions between water and ice using neutron imaging as a...
We report an investigation of the phase transitions between water and ice using neutron imaging as a...
In depth understanding of water management is essential for the optimization of the performance and ...
In depth understanding of water management is essential for the optimization of the performance and ...
In this paper, we present experimental results about the influence of a hydrophobic coating of gas d...
In depth understanding of water management is essential for the optimization of the performance and ...
Effective water management in polymer electrolyte fuel cells (PEFCs) is essential to achieving optim...
In this work, we investigate the cold-start operation of polymer electrolyte fuel cells (PEFCs) thro...
This work presents an in situ study on the water-content measurement in polymer electrolyte fuel cel...
In startups of polymer electrolyte fuel cells at temperatures close to 0 degrees C below freezing, w...
Start-ups of a polymer electrolyte fuel cell (PEFC) isothermally maintained at subfreezing temperatu...
Starting PEFCs from sub-zero temperatures can be challenging as generated product water runs the ris...
This report summarizes the final year's progress of the three-year NEER program. The overall objecti...
Isothermal cold starts of polymer electrolyte fuel cells were performed at sub-zero temperatures an...
We report an investigation of the phase transitions between water and ice using neutron imaging as a...
We report an investigation of the phase transitions between water and ice using neutron imaging as a...
We report an investigation of the phase transitions between water and ice using neutron imaging as a...
In depth understanding of water management is essential for the optimization of the performance and ...
In depth understanding of water management is essential for the optimization of the performance and ...
In this paper, we present experimental results about the influence of a hydrophobic coating of gas d...
In depth understanding of water management is essential for the optimization of the performance and ...
Effective water management in polymer electrolyte fuel cells (PEFCs) is essential to achieving optim...
In this work, we investigate the cold-start operation of polymer electrolyte fuel cells (PEFCs) thro...
This work presents an in situ study on the water-content measurement in polymer electrolyte fuel cel...
In startups of polymer electrolyte fuel cells at temperatures close to 0 degrees C below freezing, w...