46 results on '"Szabłowski, Łukasz"'
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2. Comparison of mathematical models of steam methane reforming process for the needs of fuel cells
3. Identification of oxygen ion conductivity of Ba doped Bi0.5Na0.5TiO3 (Ba-BNT) based matrix impregnated by lithium/potassium electrolyte for molten carbonate fuel cells
4. Model-based quantitative characterization of anode microstructure and its effect on the performance of molten carbonate fuel cell
5. Experimental investigation of porous anode degradation of a molten carbonate fuel cell fed with direct fermentation product composed of bioethanol
6. Methanol, ethanol, propanol, butanol and glycerol as hydrogen carriers for direct utilization in molten carbonate fuel cells
7. Recycling electronic scrap to make molten carbonate fuel cell cathodes
8. Study of the degradation of a fine-grained YSZ–NiO anode material during reduction in hydrogen and reoxidation in air
9. A proton conducting solid oxide fuel cell---implementation of the reduced order model in available software and verification based on experimental data
10. Supporting ionic conductivity of Li2CO3/K2CO3 molten carbonate electrolyte by using yttria stabilized zirconia matrix
11. Selecting Cycle and Design Parameters of a Super Critical CO 2 Cycle for a 180 kW Biogas Engine.
12. Dynamic model of a molten carbonate fuel cell 1 kW stack
13. Dynamic model of solar heating plant with seasonal thermal energy storage
14. Comparison of mathematical models of steam methane reforming process for the needs of fuel cells
15. Manufacturing of γ-LiAlO2 matrix for molten carbonate fuel cell by high-energy milling
16. ANN–supported control strategy for a solid oxide fuel cell working on demand for a public utility building
17. Temperature influence on six layers samaria doped ceria matrix impregnated by lithium/potassium electrolyte for Molten Carbonate Fuel Cells
18. Comparative thermodynamic analysis of compressed air and liquid air energy storage systems
19. Development of Molten Carbonate Fuel Cells at Warsaw University of Technology
20. Model-based quantitative characterization of anode microstructure and its effect on the performance of molten carbonate fuel cell
21. Energy and exergy analysis of adiabatic compressed air energy storage system
22. Experimental investigation of porous anode degradation of a molten carbonate fuel cell fed with direct fermentation product composed of bioethanol
23. Off-Design Operation of Super Critical Co2 Cycle Integrated with Reciprocating Engine
24. Molten Borates Fuel Cells — Mathematical Modeling and Identification of Performances
25. Energy storage using underground mining caverns
26. Determination of Thermocline Heat Transfer Coefficient by Using CFD Simulation.
27. Control Strategy for a Solid Oxide Fuel Cell Fueled by Natural Gas Operating in Distributed Generation
28. Control strategy for an Internal Combustion engine fuelled by Natural Gas operating in Distributed Generation
29. Recycling electronic scrap to make molten carbonate fuel cell cathodes
30. Study of the degradation of a fine-grained YSZ–NiO anode material during reduction in hydrogen and reoxidation in air
31. Comparison of constant volume energy storage systems based on compressed air
32. Numerical Analysis of a Molten Carbonate Fuel Cell Stack in Emergency Scenarios
33. The Main Relationships of the Main Parameters of the Proton Conducting SOFC
34. Dual ionic conductive membrane for molten carbonate fuel cell
35. Prospects for the use of supercritical CO2 cycles.
36. Artificial neural network model of molten carbonate fuel cells: Validation on experimental data
37. Impact of Development of Infrastructure for Charging Electric Vehicles on Power Demand in the National Power System
38. Comparison of constant volume energy storage systems based on compressed air.
39. Improving a Molten Carbonate Fuel Cell Matrix Strength By Fiber Reinforcing
40. Manufacturing of γ -LiAlO 2 matrix for molten carbonate fuel cell by high-energy milling
41. The investigation of cathode layer of Molten Carbonate Fuel Cell manufactured by using printing techniques.
42. Comparison of the Brayton-Brayton Cycle with the Brayton-Diesel Cycle.
43. Identification of the objective function for optimization of a seasonal thermal energy storage system
44. Impact of selected parameters on performance of the Adiabatic Liquid Air Energy Storage system.
45. Compressed Air Energy Storage Systems.
46. Dynamic model of a molten carbonate fuel cell 1 kW stack.
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