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Extractive metallurgy 3: processing operations and routes

Extractive metallurgy 3: processing operations and routes
Item Information
Barcode Shelf Location Collection Volume Ref. Branch Status Due Date Res.
10029051 TN675.5.V54 2011
Engineering   GUtech Library . . Available .  
10029052 TN675.5.V54 2011
Engineering   GUtech Library . . Available .  
10029053 TN675.5.V54 2011
Engineering   GUtech Library . . Available .  
10029054 TN675.5.V54 2011
Engineering   GUtech Library . . Available .  
10029055 TN675.5.V54 2011
Engineering   GUtech Library . . Available .  
. Catalogue Record 12264 ItemInfo Beginning of record . Catalogue Record 12264 ItemInfo Top of page .
Catalogue Information
Field name Details
ISBN 9781848212923
Language Eng
Shelf Location TN675.5.V54 2011
Author Vignes, Alain
Corporate Author
Title Extractive metallurgy 3 : processing operations and routes
Publisher London : Wiley , 2013
Description xvi 352 p. : ill. ; 26 cm.
Specific Type of Material Book
Contents Cover; Title Page; Copyright Page; Table of Contents; Preface; Chapter 1. Physical Extraction Operations; 1.1. Solid-solid and solid-fluid separation operations; 1.1.1. Flotation; 1.1.2. Settling under gravity; 1.1.3. Centrifugation; 1.1.4. Filtration; 1.2. Separation operations of the components of a fluid phase; 1.2.1. Condensation; 1.2.2. Vacuum distillation; 1.2.3. Liquation; 1.2.4. Distillation; 1.2.5. Extractive distillation; 1.3. Bibliography; Chapter 2. Hydrometallurgical Operations; 2.1. Leaching and precipitation operations; 2.1.1. Leaching and precipitation reactors. 2.1.2. Continuous stirred tank reactor (CSTR)2.1.3. Models of leaching and precipitation operations; 2.1.4. Particle-size distribution (PSD) functions; 2.2. Reactor models based on particle residence time distribution functions; 2.2.1. Performance equations for a single CSTR; 2.2.2. Performance equations for multistage CSTRs; 2.3. Reactor models based on the population balance equation model; 2.3.1. Population balance equation for a CSTR; 2.3.2. Leaching operation; 2.3.3. Homogeneous precipitation operation; 2.4. Solvent extraction operations; 2.4.1. Hydrodynamic behavior of a mixer-settler. 2.4.2. Hydrodynamic behavior of an extraction column2.4.3. The performance equation of a batch operation; 2.4.4. The performance equation of a continuous operation in a mixer-settler; 2.4.5. The performance equation for continuous operation in a column; 2.5. Bibliography; Chapter 3. Gas-solid and Solid-solid Reactors and Particle Conversion Operations; 3.1. Overall presentation of gas-solid and solid-solid reactors; 3.2. Gas-solid reactor hydrodynamic behavior and heat transfer between phases; 3.2.1. Hydrodynamic regimes; 3.2.2. Fixed or moving packed beds; 3.2.3. Fluidized beds. 3.2.4. Entrained bed (riser)3.3. The performance equations of gas-solid packed-bed reactors; 3.3.1. Gas-solid fixed packed bed reactors; 3.3.2. Gas-solid reactor with cross-flow contacting; 3.3.3. Shaft furnace (moving packed-bed reactor); 3.4. The performance equations of fluidized-bed reactors; 3.4.1. In situ particle conversion; 3.4.2. Gasification; 3.5. Solid-solid reactors; 3.5.1. Rotary hearth furnace; 3.5.2. Rotary kiln; 3.5.3. Multiple hearth furnace; 3.6. Bibliography; Chapter 4. Blast Furnaces; 4.1. Overview of blast furnaces; 4.2. Iron blast furnace; 4.2.1. Description. 4.2.2. Charge and products4.2.3. The phenomena; 4.2.4. Modeling of blast furnace operation and process control; 4.3. Ferromanganese blast furnace; 4.3.1. Description; 4.3.2. Zones and reactions; 4.3.3. Mass balances and operating line; 4.3.4. Heat balances; 4.4. Zinc blast furnace: the Imperial smelting furnace; 4.4.1. Description; 4.4.2. Zones and reactions; 4.4.3. Mass balances and operating line; 4.5. Lead blast furnace; 4.6. Bibliography; Chapter 5. Smelting Reduction Operations; 5.1. Overview of smelting reduction operations.
Subject Extraction (Chemistry)
Metallurgy
Links to Related Works
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