An elementary kinetic model is developed and applied to explore the influence of sulfur poisoning on the behavior of solid oxide fuel cell (SOFC) anodes. A detailed multi-step reaction mechanism of sulfur formation and oxidation at Ni/YSZ anodes together with channel gas-flow, porous-media transport and elementary charge-transfer chemistry is established for SOFCs operating on H2/H2O mixtures with trace amounts of hydrogen sulfide (H2S). A thermodynamic and kinetic data set is compiled from various literature sources. The derived chemical model, validated against sulfur chemisorption isobars taken from literature, is used to analyze performance drops of SOFCs working under typical fuel cell operating conditions. Electrochemical results show...
The focus of this study is the measurement and understanding of the sulfur poisoning phenomena of N...
The most thermodynamically stable sulfur compound in the anode electrode at SOFC temperature is H2S,...
For commercialization-oriented solid oxide fuel cells, the state-of-the-art nickel cermet anodes are...
An elementary kinetic model is developed to predict the influence of sulfur on Ni/YSZ anodes of soli...
H2S even at very low concentrations can poison Ni based SOFC anodes. This paper presents the modelin...
H2S even at very low concentrations can poison Ni based SOFC anodes. This paper presents the modelin...
Several experimental studies have shown that, 1) the extent of the poisoning effect due to trace amo...
Hydrogen sulfide is known to degrade the solid oxide fuel cell (SOFC) performance by adsorbing on th...
This paper presents a detailed analysis of the influence of sulfur formation on performance and effi...
The performance characteristics of high-performance Ni-YSZ (yttria-stabilized zirconia) anode-suppor...
One of the unique advantages of SOFCs over other types of fuel cells is the potential for direct uti...
Solid oxide fuel cells (SOFCs) offer great promise for the most efficient and cost-effective convers...
Several experimental studies have shown that, 1) the extent of the poisoning effect due to trace amo...
The state-of-the-art nickel-yttria stabilized zirconia (Ni-YSZ) cermet anodes for solid oxide fuel c...
The focus of this study is the measurement and understanding of the sulfur poisoning phenomena of N...
The focus of this study is the measurement and understanding of the sulfur poisoning phenomena of N...
The most thermodynamically stable sulfur compound in the anode electrode at SOFC temperature is H2S,...
For commercialization-oriented solid oxide fuel cells, the state-of-the-art nickel cermet anodes are...
An elementary kinetic model is developed to predict the influence of sulfur on Ni/YSZ anodes of soli...
H2S even at very low concentrations can poison Ni based SOFC anodes. This paper presents the modelin...
H2S even at very low concentrations can poison Ni based SOFC anodes. This paper presents the modelin...
Several experimental studies have shown that, 1) the extent of the poisoning effect due to trace amo...
Hydrogen sulfide is known to degrade the solid oxide fuel cell (SOFC) performance by adsorbing on th...
This paper presents a detailed analysis of the influence of sulfur formation on performance and effi...
The performance characteristics of high-performance Ni-YSZ (yttria-stabilized zirconia) anode-suppor...
One of the unique advantages of SOFCs over other types of fuel cells is the potential for direct uti...
Solid oxide fuel cells (SOFCs) offer great promise for the most efficient and cost-effective convers...
Several experimental studies have shown that, 1) the extent of the poisoning effect due to trace amo...
The state-of-the-art nickel-yttria stabilized zirconia (Ni-YSZ) cermet anodes for solid oxide fuel c...
The focus of this study is the measurement and understanding of the sulfur poisoning phenomena of N...
The focus of this study is the measurement and understanding of the sulfur poisoning phenomena of N...
The most thermodynamically stable sulfur compound in the anode electrode at SOFC temperature is H2S,...
For commercialization-oriented solid oxide fuel cells, the state-of-the-art nickel cermet anodes are...