The design and construction of a polymer electrolyte membrane fuel cell (PEMFC) system test bench suitable for investigating the effects of inert gas build-up and hydrogen quality on the performance of PEMFC systems is reported. Moreover, a new methodology to measure the inert gas crossover rate using an on-line hydrogen concentration sensor is introduced, and preliminary results are presented for an aged 8 kW PEMFC stack. The system test bench was also characterized using the same stack, whereupon its performance was observed to be close to commercial systems. The effect of inert gas accumulation and hence the quality of hydrogen on the performance of the system was studied by diluting hydrogen gas in the anode supply pipeline with nitroge...
In this study, the effects of temperature, pressure and relative humidity (RH) on hydrogen crossover...
Increasing attention is given to fuel cells for micro combined heat and power systems for local hous...
Proton exchange membrane fuel cells (PEMFCs) are a fuel cell type that operate at low temperatureand...
Abstract − To evaluate the performance and durability of membrane, measurement of hydrogen crossover...
An innovative small-scale cogeneration system based on membrane reformer and PEM fuel cells is under...
International audienceProton Exchange Membrane Fuel Cell (PEMFC) technologies are considered as a pr...
The effect of inert gas flow rate on hydrogen underpotential deposition (H-upd) measurements in poly...
In the application of Proton Exchanged Membrane (PEM) fuel cells in a "hydrogen-challenged" economy,...
This paper presents the results of an experimental analysis performed on a miniaturized, 6We Proton ...
In automotive-type polymer electrolyte membrane fuel cell (PEMFC) systems, impurities and inert gase...
PEMFC systems are usually operated in dead-end mode with hydrogen recirculation and periodic purge. ...
A micro-CHP system, rated at 5 kWel, based on a membrane reformer and a PEMFC is studied. The identi...
Hydrogen is a promising energy carrier to allow the reach of the zero-emission targets established f...
In the future, drive systems for vehicles with polymer electrolyte membrane fuel cells (PEMFC) may b...
Here we report an experimental in situ analysis of internal gas crossover leakage in single high- te...
In this study, the effects of temperature, pressure and relative humidity (RH) on hydrogen crossover...
Increasing attention is given to fuel cells for micro combined heat and power systems for local hous...
Proton exchange membrane fuel cells (PEMFCs) are a fuel cell type that operate at low temperatureand...
Abstract − To evaluate the performance and durability of membrane, measurement of hydrogen crossover...
An innovative small-scale cogeneration system based on membrane reformer and PEM fuel cells is under...
International audienceProton Exchange Membrane Fuel Cell (PEMFC) technologies are considered as a pr...
The effect of inert gas flow rate on hydrogen underpotential deposition (H-upd) measurements in poly...
In the application of Proton Exchanged Membrane (PEM) fuel cells in a "hydrogen-challenged" economy,...
This paper presents the results of an experimental analysis performed on a miniaturized, 6We Proton ...
In automotive-type polymer electrolyte membrane fuel cell (PEMFC) systems, impurities and inert gase...
PEMFC systems are usually operated in dead-end mode with hydrogen recirculation and periodic purge. ...
A micro-CHP system, rated at 5 kWel, based on a membrane reformer and a PEMFC is studied. The identi...
Hydrogen is a promising energy carrier to allow the reach of the zero-emission targets established f...
In the future, drive systems for vehicles with polymer electrolyte membrane fuel cells (PEMFC) may b...
Here we report an experimental in situ analysis of internal gas crossover leakage in single high- te...
In this study, the effects of temperature, pressure and relative humidity (RH) on hydrogen crossover...
Increasing attention is given to fuel cells for micro combined heat and power systems for local hous...
Proton exchange membrane fuel cells (PEMFCs) are a fuel cell type that operate at low temperatureand...