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エリンガム線図×スラグ塩基度×
分野鉱山工学鉱山工学
系統Process / pipelineProcess / pipeline
提唱年19441950
提唱者Harold Jeffrey Torreyson EllinghamPyrometallurgical Practice
種類Gibbs free energy diagram for high-temperature reactionsSlag composition parameter for controlling roast/smelt conditions
原典Ellingham, H. J. T. (1944). Reducibility of oxides and sulfides. Journal of the Society of Chemical Industry, 63(5), 125-160. link ↗Barnes, J. F., Edwards, C. C., & Sims, R. L. (2010). Copper smelting and refining: pyrometallurgical fundamentals. JOM, 52(12), 38-43. link ↗
別名Gibbs Free Energy Diagram, High-Temperature Reduction DiagramBasicity Index, Slag Chemistry Parameter
関連33
概要The Ellingham Diagram, introduced by Harold Ellingham in 1944, is a graphical representation of the Gibbs free energy change for oxide formation and reduction as a function of temperature. It is an essential tool for predicting the thermodynamic feasibility of ore reduction and selecting appropriate reducing agents and temperatures for smelting and roasting operations.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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ScholarGate手法を比較: Ellingham Diagram · Slag Basicity. 2026-06-18に以下より取得 https://scholargate.app/ja/compare