Faraday Discussions · 2015 · 29 citations · 31 references
Materials EngineeringMaterials ScienceChemical EngineeringCorrosion TechnologyHigh Temperature MaterialsNuclear Steam GeneratorEngineeringCorrosionMechanical EngineeringExcess SulfateAlloy DesignLow PotentialsSolidificationFusion Reactor MaterialNuclear ReactorsMicrostructureCorrosion Resistance
The pitting of nuclear steam generator tubing alloys 600, 690 and 800 was studied at 60 °C using dilute thiosulfate solutions containing excess sulfate or (for Alloy 600) chloride. A potentiostatic scratch method was used. In sulfate solutions, all alloys pitted at low potentials, reflecting their lack of protective Mo. The alloys demonstrated the most severe pitting at a sulfate : thiosulfate concentration ratio of ∼40. Alloy 600 pitted worst at a chloride : thiosulfate ratio of ∼2000. The results are interpreted through the mutual electromigration of differently charged anions into a pit nucleus, and differences in the major alloy component.
31
Modeling the electrified solid–liquid interface
Jan Rossmeisl, Egill Skúlason, Mårten E. Björketun et al. · Chemical Physics Letters · 2008 · 415 citations
Electrical Engineering, Electrohydrodynamics, Engineering +5