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engineering, chemical (8) 8
mathematical models (5) 5
sofc (5) 5
analysis (4) 4
brennstoff (4) 4
fuel cells (4) 4
high-temperature-fuel-cells (4) 4
kinetics (4) 4
performance (4) 4
system (4) 4
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energy & fuels (3) 3
experimental-data (3) 3
experimentelle daten (3) 3
heat-management (3) 3
optimization (3) 3
shrinking core model (3) 3
simulation (3) 3
solid oxide fuel cells (3) 3
temperature-gradient (3) 3
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thermal decomposition (3) 3
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adjustment (2) 2
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hydrates (2) 2
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accuracy (1) 1
activated alumina (1) 1
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Journal of Cleaner Production, ISSN 0959-6526, 09/2019, Volume 231, p. 805
Gas hydrate technology is a promising approach for carbon capture. However, due to the multi-physics and multi-scale complexity of the process, this technology... 
Analysis | Clathrate compounds | Hydrates
Journal Article
Journal of Cleaner Production, ISSN 0959-6526, 09/2019, Volume 231, pp. 805 - 816
Gas hydrate technology is a promising approach for carbon capture. However, due to the multi-physics and multi-scale complexity of the process, this technology... 
Induction time | Shrinking core model | Gas hydrate | Nucleation | CO2 capture | GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY | HIGH-PRESSURE | CLATHRATE-HYDRATE | REACTION-RATE CONSTANT | SHRINKING-CORE MODEL | ENVIRONMENTAL SCIENCES | METHANE | ENGINEERING, ENVIRONMENTAL | ICE POWDERS | GROWTH | INTRINSIC KINETICS | MOLECULAR-DYNAMICS SIMULATIONS | CARBON-DIOXIDE
Journal Article
Fuel, ISSN 0016-2361, 02/2020, Volume 262, p. 116615
Asphaltene deposition during enhanced oil recovery (EOR) processes is one of the most problematic challenges in the petroleum industry, potentially resulting... 
Gas injection | Enhanced oil recovery | Asphaltene deposition rate | CO2 injection | SANDSTONE | ENERGY & FUELS | CRUDE OILS | PREDICTION | ENGINEERING, CHEMICAL | NANOPARTICLES | RECOVERY | HEAVY ORGANICS | PRECIPITATION | PHASE-BEHAVIOR | KINETICS
Journal Article
Industrial and Engineering Chemistry Research, ISSN 0888-5885, 02/2019, Volume 58, Issue 6, pp. 2258 - 2267
Several operational strategies for solid oxide fuel cell (SOFC) temperature regulation and temperature gradient minimization at cell scale have previously been... 
ENGINEERING, CHEMICAL | MICRO-COMBINED HEAT | PLANAR SOFC | OPTIMIZATION | PERFORMANCE | THERMOFLUID
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 12/2018, Volume 43, Issue 52, pp. 23475 - 23487
Operability of Solid Oxide Fuel Cell (SOFC) on numerous fuels has been widely counted as a leading advantage in literature. In a designed system, however,... 
Model | System | Fuel flexibility | SOFC | ELECTROCHEMISTRY | PLANAR SOFC | ENERGY & FUELS | CHEMISTRY, PHYSICAL | Fuel cell industry | Analysis | Fuel cells | Recycling industry | Air pollution | Greenhouse gases | Natural gas
Journal Article
Industrial & Engineering Chemistry Research, ISSN 0888-5885, 07/2016, Volume 55, Issue 27, pp. 7446 - 7455
Minimization of undesirable temperature gradients in all dimensions of a planar solid oxide fuel cell (SOFC) is central to the thermal management and... 
Journal Article
Chemical Engineering Journal, ISSN 1385-8947, 04/2016, Volume 290, pp. 252 - 262
Efficient numerical models facilitate the study and design of solid oxide fuel cells (SOFCs), stacks, and systems. Whilst the accuracy and reliability of the... 
Thermal management | Experimental validation | Multi-layer modelling | SOFC | SYSTEM | ENGINEERING, CHEMICAL | DESIGN | REACTOR | ENGINEERING, ENVIRONMENTAL | PERFORMANCE | SIMULATION | OXIDE FUEL-CELL | Furnaces | Models | Electrolytes | Fuel cells | Electrodes | Solid oxide fuel cells | Accuracy | Adiabatic flow | Constants | Mathematical models | Computational efficiency | Assessments
Journal Article
Industrial and Engineering Chemistry Research, ISSN 0888-5885, 07/2016, Volume 55, Issue 27, pp. 7446 - 7455
Minimization of undesirable temperature gradients in all dimensions of a planar solid oxide fuel cell (SOFC) is central to the thermal management and... 
PERFORMANCE ANALYSIS | SYSTEM | ENGINEERING, CHEMICAL | DESIGN | SIMULATION | NUMERICAL-ANALYSIS | ELECTROCHEMICAL CHARACTERISTICS | SOFC
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 01/2016, Volume 41, Issue 4, pp. 2919 - 2930
A solid oxide fuel cell (SOFC) system consists of a fuel cell stack with its auxiliary components. Modelling an entire SOFC system can be simplified by... 
Aspen Plus | System | Balance of plant | SOFC | Stack | COGENERATION POWER-PLANT | ELECTROCHEMISTRY | ENERGY & FUELS | PERFORMANCE | CHEMISTRY, PHYSICAL | GAS | OPTIMIZATION | OXIDE FUEL-CELL | Case studies | Fuel cells | Analysis | Solid oxide fuel cells | Computer simulation | Modules | Stacks | Modelling | Recycling | Fuels | Channels
Journal Article
Computers and Chemical Engineering, ISSN 0098-1354, 07/2015, Volume 78, pp. 10 - 23
Journal Article
Chemical Engineering Communications, ISSN 0098-6445, 09/2015, Volume 202, Issue 9, p. 1161
  A variation on the unreacted shrinking core model has been developed for calcination and similar non-catalytic solid-to-gas decomposition reactions in which... 
Gases | Predictions | Chemical reactions | Solids | Shrinkage | Catalysis | Alumina
Journal Article
Transactions of the Institution of Chemical Engineers Part A: Chemical Engineering Research and Design, ISSN 0263-8762, 03/2013, Volume 91, Issue 3, pp. 485 - 496
A 1-D mathematical model describing the thermal decomposition, or calcination, of a single gibbsite particle to alumina has been developed and validated... 
Vapour pressure | Aluminum base alloys | Bayer process | Vapor pressure | Thermal decomposition | Mathematical analysis | Evolution | Mathematical models
Journal Article
Transactions of the Institution of Chemical Engineers Part A: Chemical Engineering Research and Design, ISSN 0263-8762, 03/2013, Volume 91, Issue 3, pp. 485 - 496
A 1-D mathematical model describing the thermal decomposition, or calcination, of a single gibbsite particle to alumina has been developed and validated... 
Vapour pressure | Aluminum base alloys | Bayer process | Vapor pressure | Mathematical analysis | Thermal decomposition | Evolution | Mathematical models
Journal Article
Chemical Engineering Communications, ISSN 0098-6445, 09/2015, Volume 202, Issue 9, pp. 1161 - 1175
A variation on the unreacted shrinking core model has been developed for calcination and similar non-catalytic solid-to-gas decomposition reactions in which no... 
Gibbsite calcination kinetics | Shrinking core model | Calcination | Alumina production | BED REACTORS | FLASH CALCINATION | GIBBSITE | THERMAL-DECOMPOSITION | BOEHMITE | STEADY STATE APPROXIMATION | ENGINEERING, CHEMICAL | PRESSURE | KINETICS | PARTICLE-SIZE | DIFFUSION | Aluminum base alloys | Bayer process | Chemical engineering | Mathematical models | Conversion | Aluminum oxide
Journal Article
Chemical Engineering Research and Design, ISSN 0263-8762, 03/2013, Volume 91, Issue 3, pp. 485 - 496
► We model gas–solid reactions in which the gas is a product only and has a negative effect on reaction rate. ► Thermal dehydration of gibbsite particles to... 
Water vapour pressure | Alumina production | Gibbsite calcination | Distributed dehydration model | Particle breakage | ACTIVATED ALUMINA | FLASH CALCINATION | COAL | GAS-SOLID REACTION | BOEHMITE | ENGINEERING, CHEMICAL | TRANSPORT | SHRINKING CORE | KINETICS | DEHYDRATION
Journal Article
Advanced Powder Technology, ISSN 0921-8831, 07/2013, Volume 24, Issue 4, pp. 728 - 736
Some thermal decomposition reactions display self-inhibiting behaviour, where the produced gas negatively influences the reaction progress. Further, a build-up... 
Shrinking core model | Multi-stage model | Gibbsite calcination | Self-inhibition | Thermal decomposition | Gibbsite calcinations | ENGINEERING, CHEMICAL | PARTICLE | KINETICS | GIBBSITE | THERMAL-DECOMPOSITION | BOEHMITE
Journal Article
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