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Volumn 186, Issue 2, 2009, Pages 417-427
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An improved one-dimensional membrane-electrode assembly model to predict the performance of solid oxide fuel cell including the limiting current density
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Author keywords
Detailed electrode kinetics; Dusty gas model; Membrane electrode assembly; Rate limiting switchover; Solid oxide fuel cell
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Indexed keywords
ADSORPTION;
CELL MEMBRANES;
CURRENT DENSITY;
DIFFUSION;
DIFFUSION IN SOLIDS;
ELECTRIC BATTERIES;
ELECTROCHEMISTRY;
ELECTRODES;
ELECTROLYSIS;
FUEL CELLS;
GAS ADSORPTION;
GAS DYNAMICS;
GASES;
HYDROGEN;
NICKEL OXIDE;
OXIDATION;
SOLID OXIDE FUEL CELLS (SOFC);
SURFACE DIFFUSION;
ACCURATE PREDICTIONS;
ADSORBED SPECIES;
CHARACTERISTIC QUANTITIES;
COMPETITIVE ADSORPTIONS;
COMPREHENSIVE APPROACHES;
CONSERVATION EQUATIONS;
DETAILED ELECTRODE KINETICS;
DIMENSIONAL MODELS;
DUSTY-GAS MODEL;
ELECTROCHEMISTRY MODELS;
ELEMENTARY REACTIONS;
EXPERIMENTAL DATUMS;
EXTERNAL-;
GAS TRANSPORTS;
HIGH CONCENTRATIONS;
HIGH CURRENT DENSITIES;
HYDROGEN ADSORPTIONS;
HYDROGEN OXIDATIONS;
KINETIC RATES;
KNUDSEN DIFFUSION COEFFICIENTS;
LIMITING CURRENT DENSITIES;
OPERATING CONDITIONS;
OXIDATION CHARGES;
POROUS ELECTRODES;
RATE-LIMITING SWITCHOVER;
REASONABLE VALUES;
RESIDENCE TIMES;
SOLID OXIDE FUEL CELL;
TRANSFER REACTIONS;
REACTION KINETICS;
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EID: 57949085309
PISSN: 03787753
EISSN: None
Source Type: Journal
DOI: 10.1016/j.jpowsour.2008.10.009 Document Type: Article |
Times cited : (71)
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References (30)
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