This paper presents the development of a new comprehensive single-phase model for a flowing electrolyte-direct methanol fuel cell (FE-DMFC) to determine the operating range of key input parameters for the optimum performance of the fuel cell. These parameters include the inlet concentration of the FE, as well as the flow rate and thickness of the flowing electrolyte channel (FEC). In addition, in-house FE-DMFC experimental results were used to validate the model for the first time. It was found that the experimental and modeling results were in a good agreement. The results of the parametric studies showed that an FE concentration within the range of 1.5 and 3.2M would yield the best performance, while avoiding the corrosive nature of the l...
A new methanol fuel cell that utilizes a liquid formic acid electrolyte, named the formic acid elect...
A two-phase, multicomponent model has been developed for liquid-feed direct methanol fuel cells (DMF...
A major challenge in direct methanol fuel cells is the crossover of methanol, from the anode to the ...
This paper presents the development of a new comprehensive single-phase model for a flowing electrol...
In this study, the performance characteristics of a flowing electrolyte-direct methanol fuel cell (F...
Direct methanol fuel cell is a promising candidate for portable applications since its fuel is in th...
The performance of a single cell flowing electrolyte-direct methanol fuel cell (FE-DMFC) was experim...
The performance of a direct methanol fuel cell (DMFC) can be significantly reduced by methanol cross...
Methanol crossover is one of the biggest shortcomings for direct methanol fuel cells (DMFCs) due to ...
A two-dimensional model of a flowing-electrolyte direct methanol fuel cell has been developed to pre...
A one-dimensional two-phase model has been developed for a direct methanol fuel cell (DMFC) and flow...
A single cell flowing electrolyte - direct methanol fuel cell (FE-DMFC) was studied experimentally. ...
© 2015 Hydrogen Energy Publications, LLC.A parametric study is conducted using a previously describe...
The flowing electrolyte-direct methanol fuel cell (FE-DMFC) is a type of fuel cell in which a flowin...
© 2014 Hydrogen Energy Publications, LLC.In this study, the well-known Multiphase Mixture Model (MMM...
A new methanol fuel cell that utilizes a liquid formic acid electrolyte, named the formic acid elect...
A two-phase, multicomponent model has been developed for liquid-feed direct methanol fuel cells (DMF...
A major challenge in direct methanol fuel cells is the crossover of methanol, from the anode to the ...
This paper presents the development of a new comprehensive single-phase model for a flowing electrol...
In this study, the performance characteristics of a flowing electrolyte-direct methanol fuel cell (F...
Direct methanol fuel cell is a promising candidate for portable applications since its fuel is in th...
The performance of a single cell flowing electrolyte-direct methanol fuel cell (FE-DMFC) was experim...
The performance of a direct methanol fuel cell (DMFC) can be significantly reduced by methanol cross...
Methanol crossover is one of the biggest shortcomings for direct methanol fuel cells (DMFCs) due to ...
A two-dimensional model of a flowing-electrolyte direct methanol fuel cell has been developed to pre...
A one-dimensional two-phase model has been developed for a direct methanol fuel cell (DMFC) and flow...
A single cell flowing electrolyte - direct methanol fuel cell (FE-DMFC) was studied experimentally. ...
© 2015 Hydrogen Energy Publications, LLC.A parametric study is conducted using a previously describe...
The flowing electrolyte-direct methanol fuel cell (FE-DMFC) is a type of fuel cell in which a flowin...
© 2014 Hydrogen Energy Publications, LLC.In this study, the well-known Multiphase Mixture Model (MMM...
A new methanol fuel cell that utilizes a liquid formic acid electrolyte, named the formic acid elect...
A two-phase, multicomponent model has been developed for liquid-feed direct methanol fuel cells (DMF...
A major challenge in direct methanol fuel cells is the crossover of methanol, from the anode to the ...