Journal of The Electrochemical Society · 2008 · 53 citations · 17 references
Chlorine CompoundsChemical EngineeringChemical SafetyEngineeringMetal AnodeChemical HazardChlorine PoisoningBatteriesEnvironmental ToxicologyChemistryDisinfectantElectrochemical ProcessChlorine Degradation RateElectrochemical CellDegradation RateElectrochemistry
Poisoning effects by chlorine compounds, including and HCl, to typical electrolyte-supported solid oxide fuel cells (SOFCs) with Ni–scandia-stabilized zirconia cermet anodes have been evaluated. The degradation rate of cell voltage poisoned by was estimated to be ca. . Chlorine degradation rate increased with increasing concentration. Microstructural change associated with the formation of nickel nanoparticles on zirconia grains, probably via sublimation, was observed after poisoning tests, whereas a partial recovery of cell voltage by removing chlorine from the fuels indicates that the chlorine poisoning is partially reversible. Thermochemical calculations, microstructural analysis, and electrochemical characterizations have revealed that the poisoning phenomena for Ni-based cermet anodes caused by chlorine compounds can be explained by the mixed adsorption-type and sublimation-type poisoning mechanism.
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Mechanisms of catalyst deactivation
Calvin H. Bartholomew · Applied Catalysis A General · 2001 · 2.9K citations
Advances in solid oxide fuel cell technology
Subhash C. Singhal · Solid State Ionics · 2000 · 1.4K citations
Chemical Engineering, Electrical Engineering, Engineering +5