An innovative idea of using aluminum as anodes for the combined production of electric energy and hydrogen has been increased in recent years. This study developed a mathematical model for a simplified aluminum-water electrochemical co-generator, a typical type of the combined production systems. A reasonable agreement between the model predictions and experimental data was obtained. Effects of various factors, including the geometric parameters, electrolyte feeding velocity as well as electrode kinetics, were examined for the aluminum-water electrochemical co-generator based on the modeling equations. Some critical values for the future design of the aluminum-water co-generator were proposed. © 2010 John Wiley & Sons, Ltd.link_to_subscribe...
A novel concept of combined generation of hydrogen, heat, steam and power based on the combustion of...
A novel concept of combined hydrogen production andpower generation system based on the combustion o...
Aluminum is recognized as a novel and attractive energy carrier and fuel material due to its virtues...
A novel concept of combined hydrogen production and power generation system based on the combustion ...
In this paper the combined production of hydrogen and power based on the aluminum combustion with wa...
In this paper the combined production of hydrogen and power based on the aluminum combustion with wa...
The working cycle of a novel hydrogen and power generation system based on aluminum combustion with ...
Committee members: John, Shelton; Pradip, Majumdar.Advisor: Kyu, Cho Taek.Includes illustrations.Inc...
AbstractAs a result of increasing global energy demand, conventional energy sources such as coal, ga...
This paper numerically investigates a portable fuel processor, i.e., micro-scale auto-electrolytic c...
A novel concept of combined generation of hydrogen, heat, steam and power based on the combustion of...
In order to analyse dynamic behaviours of hydrogen production by alkaline water electrolysis against...
2010-2011 > Academic research: refereed > Publication in refereed journalAccepted ManuscriptPublishe
This electronic version was submitted by the student author. The certified thesis is available in th...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Cata...
A novel concept of combined generation of hydrogen, heat, steam and power based on the combustion of...
A novel concept of combined hydrogen production andpower generation system based on the combustion o...
Aluminum is recognized as a novel and attractive energy carrier and fuel material due to its virtues...
A novel concept of combined hydrogen production and power generation system based on the combustion ...
In this paper the combined production of hydrogen and power based on the aluminum combustion with wa...
In this paper the combined production of hydrogen and power based on the aluminum combustion with wa...
The working cycle of a novel hydrogen and power generation system based on aluminum combustion with ...
Committee members: John, Shelton; Pradip, Majumdar.Advisor: Kyu, Cho Taek.Includes illustrations.Inc...
AbstractAs a result of increasing global energy demand, conventional energy sources such as coal, ga...
This paper numerically investigates a portable fuel processor, i.e., micro-scale auto-electrolytic c...
A novel concept of combined generation of hydrogen, heat, steam and power based on the combustion of...
In order to analyse dynamic behaviours of hydrogen production by alkaline water electrolysis against...
2010-2011 > Academic research: refereed > Publication in refereed journalAccepted ManuscriptPublishe
This electronic version was submitted by the student author. The certified thesis is available in th...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Cata...
A novel concept of combined generation of hydrogen, heat, steam and power based on the combustion of...
A novel concept of combined hydrogen production andpower generation system based on the combustion o...
Aluminum is recognized as a novel and attractive energy carrier and fuel material due to its virtues...