The influence of operation temperature, inlet gas composition, current density and the anode thickness on the methane steam reforming reaction over nickel yttria-stabilized zirconia anodes was experimentally studied in solid oxide fuel cells. The experimental results were analyzed using data fitting in Power-Law and Langmuir–Hinshelwood kinetic models. Similar trends of dependence of methane and steam partial pressures were observed in both models. The methane reaction order is positive. Negative influence of steam partial pressure on the methane steam reforming reaction rate are found. The electrochemical reaction and anode thickness affect the reforming kinetics parameters. The anodes thickness shows particular influences on the steam rea...
By 2040, electricity generation will account for more than 40 % of global energy consumption. Gains ...
SOFCs are often designed to operate with specific fuels, quite often natural gas. CFD modeling is of...
With the demand for anticipated green hydrogen and power production, novel and upgraded catalytic pr...
The influence of operation temperature, inlet gas composition, current density and the anode thickne...
The influence of operation temperature, inlet gas composition, current density and the anode thickne...
The influence of operation temperature, inlet gas composition, current density and the anode thickne...
Direct internal reforming in solid oxide fuel cells (SOFCs) is advantageous as it enables to heat an...
The influence of steam on the internal reforming reaction in solid oxide fuel cells is under debate ...
Direct Internal Reforming (DIR) on Solid Oxide Fuel Cell (SOFC) anodes is often considered for fuel ...
Mathematical modeling tools are useful for predicting the safe operation limits and efficiencies of ...
Major operating challenges remain to safely operate methane fuelled solid oxide fuel cells due to un...
Summarization: The kinetics of the steam reforming reaction of CH4 were investigated at temperatures...
Mathematical modeling tools are useful for predicting the safe operation limits and efficiencies of ...
It is expected that fuel cells will play a significant role in a future sustainable energy system. T...
2010-2011 > Academic research: refereed > Publication in refereed journalAccepted ManuscriptPublishe
By 2040, electricity generation will account for more than 40 % of global energy consumption. Gains ...
SOFCs are often designed to operate with specific fuels, quite often natural gas. CFD modeling is of...
With the demand for anticipated green hydrogen and power production, novel and upgraded catalytic pr...
The influence of operation temperature, inlet gas composition, current density and the anode thickne...
The influence of operation temperature, inlet gas composition, current density and the anode thickne...
The influence of operation temperature, inlet gas composition, current density and the anode thickne...
Direct internal reforming in solid oxide fuel cells (SOFCs) is advantageous as it enables to heat an...
The influence of steam on the internal reforming reaction in solid oxide fuel cells is under debate ...
Direct Internal Reforming (DIR) on Solid Oxide Fuel Cell (SOFC) anodes is often considered for fuel ...
Mathematical modeling tools are useful for predicting the safe operation limits and efficiencies of ...
Major operating challenges remain to safely operate methane fuelled solid oxide fuel cells due to un...
Summarization: The kinetics of the steam reforming reaction of CH4 were investigated at temperatures...
Mathematical modeling tools are useful for predicting the safe operation limits and efficiencies of ...
It is expected that fuel cells will play a significant role in a future sustainable energy system. T...
2010-2011 > Academic research: refereed > Publication in refereed journalAccepted ManuscriptPublishe
By 2040, electricity generation will account for more than 40 % of global energy consumption. Gains ...
SOFCs are often designed to operate with specific fuels, quite often natural gas. CFD modeling is of...
With the demand for anticipated green hydrogen and power production, novel and upgraded catalytic pr...