Development of a direct methanol fuel cell (DMFC) mass flux model, using conventional transport theory, is presented and used to predict the fluid phase superficial velocity, methanol and water molar fluxes, and the chemical species (methanol and water) dimensionless concentration profiles in the polymer electrolyte membrane, Nafion® 117, of a DMFC. Implementation of these equations is illustrated to generate the numerical data as functions of the variables such as the pressure difference across the membrane, methanol concentration at the cell anode, temperature, and position in the membrane
Empirical model equations, proposed for polymer electrolyte fuel cells, are used to predict the cell...
WOS: 000275612000035Determination of methanol concentration in a direct methanol fuel cell is crucia...
A two-phase flow model was developed for liquid-feed methanol fuel cells (DMFC) to evaluate the effe...
The Direct Methanol Fuel Cell (DMFC) is a promising technology as mobile power supply. But methanol ...
Liquid-feed direct methanol fuel cell systems (DMFC) have a number of advantages over hydrogen fuel ...
Mass transport is a factor which limits the performance of solid polymer electrolyte fuel cells oper...
The performance of a 5 cm2 single-cell direct methanol fuel cell (DMFC) was evaluated experimentally...
Direct Methanol Fuel Cells (DMFC) are analysed experimentally and theoretically with respect to thei...
A direct methanol fuel cell (DMFC) model has been developed and experimentally verified, with which ...
By the application of thermodynamic fundamentals of phase and electrochemical reaction equilibria, a...
A one-dimensional, biphasic, multicomponent steady-state model based on phenomenological transport e...
This thesis deals with modeling of two types of fuel cells:the polymer electrolyte fuel cell (PEFC) ...
A direct methanol fuel cell (DMFC) is an electrochemical energy-conversion device that converts meth...
[[abstract]]A two-phase flow model was developed for liquid-feed methanol fuel cells (DMFC) to evalu...
A two-dimensional model of a flowing-electrolyte direct methanol fuel cell has been developed to pre...
Empirical model equations, proposed for polymer electrolyte fuel cells, are used to predict the cell...
WOS: 000275612000035Determination of methanol concentration in a direct methanol fuel cell is crucia...
A two-phase flow model was developed for liquid-feed methanol fuel cells (DMFC) to evaluate the effe...
The Direct Methanol Fuel Cell (DMFC) is a promising technology as mobile power supply. But methanol ...
Liquid-feed direct methanol fuel cell systems (DMFC) have a number of advantages over hydrogen fuel ...
Mass transport is a factor which limits the performance of solid polymer electrolyte fuel cells oper...
The performance of a 5 cm2 single-cell direct methanol fuel cell (DMFC) was evaluated experimentally...
Direct Methanol Fuel Cells (DMFC) are analysed experimentally and theoretically with respect to thei...
A direct methanol fuel cell (DMFC) model has been developed and experimentally verified, with which ...
By the application of thermodynamic fundamentals of phase and electrochemical reaction equilibria, a...
A one-dimensional, biphasic, multicomponent steady-state model based on phenomenological transport e...
This thesis deals with modeling of two types of fuel cells:the polymer electrolyte fuel cell (PEFC) ...
A direct methanol fuel cell (DMFC) is an electrochemical energy-conversion device that converts meth...
[[abstract]]A two-phase flow model was developed for liquid-feed methanol fuel cells (DMFC) to evalu...
A two-dimensional model of a flowing-electrolyte direct methanol fuel cell has been developed to pre...
Empirical model equations, proposed for polymer electrolyte fuel cells, are used to predict the cell...
WOS: 000275612000035Determination of methanol concentration in a direct methanol fuel cell is crucia...
A two-phase flow model was developed for liquid-feed methanol fuel cells (DMFC) to evaluate the effe...