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Modèle du noyau shrinking×Basicité des scories×
DomaineGénie minierGénie minier
FamilleProcess / pipelineProcess / pipeline
Année d'origine19761950
Auteur d'origineSzekely, Evans, and SohnPyrometallurgical Practice
TypeReaction kinetics model for solid-fluid reactionsSlag composition parameter for controlling roast/smelt conditions
Source fondatriceSzekely, J., Evans, J. W., & Sohn, H. Y. (1976). Gas-solid reactions. Academic Press, New York. link ↗Barnes, J. F., Edwards, C. C., & Sims, R. L. (2010). Copper smelting and refining: pyrometallurgical fundamentals. JOM, 52(12), 38-43. link ↗
AliasShrinking Unreacted Core Model, SCM, Leaching Kinetics ModelBasicity Index, Slag Chemistry Parameter
Apparentées33
RésuméThe Shrinking Core Model, formalized by Szekely, Evans, and Sohn in 1976, describes the kinetics of chemical reactions between solid ore particles and surrounding fluids (leaching solutions, roasting gases). As the reaction proceeds from the particle surface inward, an unreacted core shrinks while products accumulate in a product layer. The model enables prediction of leaching times and optimization of hydrometallurgical processes.Slag basicity is a measure of the composition of slag formed during smelting and roasting operations. It is typically expressed as the ratio of basic oxides (CaO, MgO) to acidic oxides (SiO2). Basicity controls slag fluidity, viscosity, and reactivity, directly affecting metal recovery, processing temperature, and product quality. It is a critical parameter in copper, nickel, and lead smelting.
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ScholarGateComparer des méthodes: Shrinking Core Model · Slag Basicity. Consulté le 2026-06-17 sur https://scholargate.app/fr/compare