This work concerns the analysis and modeling of the dynamic and static behavior of Polymer Electrolyte Membrane Fuel Cells (PEMFC). Three fundamentally different measurement methods are used to determine the static, the large-signal, and the small-signal dynamic behavior of a fuel cell system. By combining the results of the three types of measurements, a joint dynamic and static (or dynastatic) model of the fuel cell is proposed. This model covers all three operational states of the fuel cell, while keeping close to the electrochemical aspects of the system. The dynastatic model describes the electrical behavior of the fuel cell to within 5%. The remaining part of this study is concerned with the integration of biomass energy generation sy...
The proton exchange membrane fuel cell is an electrochemical energy conversion device, which transfo...
Fuel cells represent a viable option for the diversification of renewable energies, necessary to mee...
Includes bibliographical references.As the global demand for energy continues to grow new technologi...
This work concerns the analysis and modeling of the dynamic and static behavior of Polymer Electroly...
Biomass is a green energy source, which can be converted to hydrogen rich gas. If this gas is used a...
Biomass is a green energy source, which can be converted to hydrogen rich gas. If this gas is used a...
Biomass is a green energy source, which can be converted to hydrogen rich gas. If this gas is used a...
Biomass is a green energy source, which can be converted to hydrogen rich gas. If this gas is used a...
Biomass is a green energy source, which can be converted to hydrogen rich gas. If this gas is used a...
This thesis concerns biogas-operated fuel cells. Fuel cell technology may contribute to more efficie...
Combined heat and power (CHP) systems based on low-temperature proton exchange membrane fuel cells ...
The use of high temperature PEM (HTPEM) fuel cells running on reformate gas shows comparable perform...
This work presents first experimental evidence on the effects of dynamic load cycle on PEM fuel cell...
Combined heat and power (CHP) systems based on low-temperature proton exchange membrane fuel cells ...
Availability of high purity H2 for low temperature polymer electrolyte fuel cell (PEFC) technology i...
The proton exchange membrane fuel cell is an electrochemical energy conversion device, which transfo...
Fuel cells represent a viable option for the diversification of renewable energies, necessary to mee...
Includes bibliographical references.As the global demand for energy continues to grow new technologi...
This work concerns the analysis and modeling of the dynamic and static behavior of Polymer Electroly...
Biomass is a green energy source, which can be converted to hydrogen rich gas. If this gas is used a...
Biomass is a green energy source, which can be converted to hydrogen rich gas. If this gas is used a...
Biomass is a green energy source, which can be converted to hydrogen rich gas. If this gas is used a...
Biomass is a green energy source, which can be converted to hydrogen rich gas. If this gas is used a...
Biomass is a green energy source, which can be converted to hydrogen rich gas. If this gas is used a...
This thesis concerns biogas-operated fuel cells. Fuel cell technology may contribute to more efficie...
Combined heat and power (CHP) systems based on low-temperature proton exchange membrane fuel cells ...
The use of high temperature PEM (HTPEM) fuel cells running on reformate gas shows comparable perform...
This work presents first experimental evidence on the effects of dynamic load cycle on PEM fuel cell...
Combined heat and power (CHP) systems based on low-temperature proton exchange membrane fuel cells ...
Availability of high purity H2 for low temperature polymer electrolyte fuel cell (PEFC) technology i...
The proton exchange membrane fuel cell is an electrochemical energy conversion device, which transfo...
Fuel cells represent a viable option for the diversification of renewable energies, necessary to mee...
Includes bibliographical references.As the global demand for energy continues to grow new technologi...