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Essential Readings in Light Metals

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Table of Contents

  1. Altmetric Badge
    Book Overview
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    Chapter 1 Principles of Aluminum Electrolysis
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    Chapter 2 The Solubility of Aluminum in Cryolite Melts
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    Chapter 3 Viscosity of Molten NaF-AlF 3 -Al 2 O 3 -CaF 2 Mixtures
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    Chapter 4 On the Solubility of Aluminium Carbide in Cryolitic Melts — Influence on Cell Performance
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    Chapter 5 Liquidus Curves for the Cryolite — AlF 3 — CaF 2 — Al 2 O 3 System in Aluminum Cell Electrolytes
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    Chapter 6 The Solubility of Aluminium in Cryolitic Melts
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    Chapter 7 Dissolved Metals in Cryolitic Melts
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    Chapter 8 Electrical Conductivity of Cryolitic Melts
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    Chapter 9 Electrical Conductivity of Molten Cryolite-Based Mixtures Obtained with a Tube-type Cell Made of Pyrolytic Boron Nitride
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    Chapter 10 Liquidus Temperature and Alumina Solubility in the System Na 3 AlF 6 -AlF 3 -LiF-CaF 2 -MgF 2
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    Chapter 11 Lithium-Modified Low Ratio Electrolyte Chemistry for Improved Performance in Modern Reduction Cells
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    Chapter 12 Production of Aluminum with Low Temperature Fluoride Melts
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    Chapter 13 The Structure of Alumina Dissolved in Cryolite Melts
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    Chapter 14 The Dissolution of Alumina in Cryolite Melts
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    Chapter 15 Further Studies of Alumina Dissolution under Conditions Similar to Cell Operation
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    Chapter 16 Studies on Anode Effect in Aluminium Electrolysis
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    Chapter 17 Direct Observation of the Anode Effect by Radiography
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    Chapter 18 On the anode effect in aluminum electrolysis
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    Chapter 19 Anodic Overpotentials in the Electrolysis of Alumina
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    Chapter 20 Cathode Voltage Loss in Aluminum Smelting Cells
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    Chapter 21 Interpreting the Components of Cell Voltage
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    Chapter 22 Thermodynamics of Electrochemical Reduction of Alumina
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    Chapter 23 Field Study of the Anodic Overvoltage in Prebaked Anode Cells
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    Chapter 24 Current Efficiency and Alumina Concentration
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    Chapter 25 Continuous Measurement of Current Efficiency, by Mass Spectrometry, on a 280 KA Prototype Cell
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    Chapter 26 The Influence of Dissolved Metals in Cryolitic Melts on Hall Cell Current Inefficiency
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    Chapter 27 The Interaction between Current Efficiency and Energy Balance in Aluminium Reduction Cells
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    Chapter 28 A Laboratory Study of Current Efficiency in Cryolitic Melts
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    Chapter 29 Current Efficiency Studies in a Laboratory Aluminium Cell Using the Oxygen Balance Method
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    Chapter 30 Current Efficiency in Prebake and Søderberg Cells
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    Chapter 31 Bath /Freeze Heat Transfer Coefficients: Experimental Determination and Industrial Application
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    Chapter 32 Sludge in Operating Aluminium Smelting Cells
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    Chapter 33 The Behaviour of Phosphorus Impurities in Aluminium Electrolysis Cells
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    Chapter 34 See-through Hall-Heroult Cell
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    Chapter 35 Metal Pad Velocity Measurements in Prebake and Soderberg Reduction Cells
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    Chapter 36 Metal Pad Velocity Measurements by the Iron Rod Method
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    Chapter 37 On the Bath Flow, Alumina Distribution and Anode Gas Release in Aluminium Cells
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    Chapter 38 Bubble Noise from Søderberg Pots
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    Chapter 39 Simulation of Thermal, Electric and Chemical Behaviour of an Aluminum Cell on a Digital Computer
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    Chapter 40 Estimation of Frozen Bath Shape in an Aluminum Reduction Cell by Computer Simulation
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    Chapter 41 A Water-Model Study of the Ledge Heat Transfer in an Aluminium Cell
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    Chapter 42 Computation of Aluminum Reduction Cell Energy Balance Using ANSYS® Finite Element Models
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    Chapter 43 Thermo-Electric Design of a 400 kA Cell Using Mathematical Models: A Tutorial
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    Chapter 44 A Modelling Approach to Estimate Bath and Metal Heat Transfer Coefficients
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    Chapter 45 Computer Model for Magnetic Fields in Electrolytic Cells Including the Effect of Steel Parts
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    Chapter 46 The Effect of Some Operating Variables on Flow in Aluminum Reduction Cells
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    Chapter 47 Magnetics and Metal Pad Instability
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    Chapter 48 Stability of Aluminum Cells - A New Approach
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    Chapter 49 Analysis of Magnetohydrodynamic Instabilities in Aluminum Reduction Cells
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    Chapter 50 Magnetohydrodynamic Effect of Anode Set Pattern on Cell Performance
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    Chapter 51 Stability of Interfacial Waves in Aluminium Reduction Cells
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    Chapter 52 Using a Magnetohydrodynamic Model to Analyze Pot Stability in Order to Identify an Abnormal Operating Condition
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    Chapter 53 Wave Mode Coupling and Instability in the Internal Wave in Aluminum Reduction Cells
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    Chapter 54 Comparison of Various Methods for Modeling the Metal-Bath Interface
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    Chapter 55 Physical Modelling of Bubble Behaviour and Gas Release from Aluminum Reduction Cell Anodes
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    Chapter 56 Coupled Current Distribution and Convection Simulator for Electrolysis Cells
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    Chapter 57 Effect of the Bubble Growth Mechanism on the Spectrum of Voltage Fluctuations in the Reduction Cell
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    Chapter 58 Modeling the Bubble Driven Flow in the Electrolyte as a Tool for Slotted Anode Design Improvement
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    Chapter 59 Planning Smelter Logistics: A Process Modeling Approach
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    Chapter 60 CFD Modeling of the Fjardaal Smelter Potroom Ventilation
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    Chapter 61 Heat Transfer Considerations for DC Busbars Sizing
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    Chapter 62 The Impact of Cell Ventilation on the Top Heat Losses and Fugitive Emissions in an Aluminium Smelting Cell
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    Chapter 63 Mathematical Modelling of Aluminum Reduction Cell Potshell Deformation
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    Chapter 64 Development of Large Prebaked Anode Cells by Alcoa
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    Chapter 65 Aluminium Pechiney 280 kA Pots
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    Chapter 66 AP 50: The Pechiney 500 kA Cell
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    Chapter 67 The Pot Technology Development in China
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    Chapter 68 VAW Experience in Smelter Modernization
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    Chapter 69 From 110 to 175 kA: Retrofit of VAW Rheinwerk Part I: Modernization Concept
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    Chapter 70 From 110 to 175 kA: Retrofit of VAW Rheinwerk Part II: Construction & Operation
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    Chapter 71 Productivity Increase at Søral Smelter
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    Chapter 72 Reduction Cell Technology Development at Dubal Through 20 Years
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    Chapter 73 Potline Amperage Increase from 160 kA to 175 kA during One Month
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    Chapter 74 AP35: The Latest High Performance Industrially Available New Cell Technology
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    Chapter 75 Tomago Aluminium AP22 Project
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    Chapter 76 Development of D18 Cell Technology at Dubal
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    Chapter 77 New Cathodes in Aluminum Reduction Cells
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    Chapter 78 Dimensioning of Cooling Fins for High-Amperage Reduction Cells
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    Chapter 79 Satisfying Financial Institutions for Major Capital Projects
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    Chapter 80 Development and Deployment of Slotted Anode Technology at Alcoa
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    Chapter 81 Innovative Solutions to Sustainability in Hydro
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    Chapter 82 Current Pickup and Temperature Distribution in Newly Set Prebaked Hall-Héroult Anodes
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    Chapter 83 Thermal effects by anode changing in prebake reduction cells
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    Chapter 84 Considerations in the Selection of Alumina for Smelter Operation
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    Chapter 85 Alumina Transportation to Cells
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    Chapter 86 Study of Alumina Behavior in Smelting Plant Storage Tanks
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    Chapter 87 New Aerated Distribution (ADS) and Anti Segregation (ASS) Systems for Alumina
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    Chapter 88 Beryllium in Pot Room Bath
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    Chapter 89 Hard Gray Scale
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    Chapter 90 Aluminium Fluoride — A Users Guide
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    Chapter 91 Crusting Behavior of Smelter Aluminas
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    Chapter 92 On Alumina Phase Transformation and Crust Formation in Aluminum Cells
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    Chapter 93 Heat Transfer, Thermal Conductivity, and Emissivity of Hall-Heroult Top Crust
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    Chapter 94 Improving Anode Cover Material Quality at Nordural — Quality Tools and Measures
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    Chapter 95 Appraisal of the Operation of Horizontal-Stud Cells with the Addition of Lithium Fluoride
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    Chapter 96 Technical Results of Improved Soederberg Cells
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    Chapter 97 Strategies for Decreasing the Unit Energy and Environmental Impact of Hall Heroult Cells
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    Chapter 98 Operational and Control Improvements in Reduction Lines at Aluminium Delfzijl
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    Chapter 99 Modeling Power Modulation
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    Chapter 100 Smelters in the EU and the Challenge of the Emission Trading Scheme
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    Chapter 101 Challenges in Power Modulation
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    Chapter 102 Hibernating Large Soderberg Cells
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    Chapter 103 Thermal Bake-Out of Reduction Cell Cathodes — Advantages and Problem Areas
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    Chapter 104 The Economics of Shutting and Restarting Primary Aluminium Smelting Capacity
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    Chapter 105 Brazil 2001 Energy Crisis — The Albras Approach
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    Chapter 106 Potline Startup with Low Anode Effect Frequency
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    Chapter 107 Cell Preheat/Start-up and Early Operation
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    Chapter 108 Loss in Cathode Life Resulting from the Shutdown and Restart of Potlines at Aluminum Smelters
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    Chapter 109 Simultaneous Preheating and Fast Restart of 50 Aluminium Reduction Cells in an Idled Potline
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    Chapter 110 Overview of Process Control in Reduction Cells and Potlines
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    Chapter 111 A Demand Feed Strategy for Aluminium Electrolysis Cells
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    Chapter 112 Design Considerations for Selecting the Number of Point Feeders in Modern Reduction Cells
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    Chapter 113 Pseudo Resistance Curves for Aluminium Cell Control - Alumina Dissolution and Cell Dynamics
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    Chapter 114 Aiming for Zero Anode Effects
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    Chapter 115 Reduction of CF 4 Emissions from the Aluminum Smelter in Essen
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    Chapter 116 The Initiation, Propagation and Termination of Anode Effects in Hall-Heroult Cells
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    Chapter 117 Operation of 150 KA Prebaked Furnaces with Automatic Voltage Control
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    Chapter 118 Bath Chemistry Control System
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    Chapter 119 The Liquidus Enigma
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    Chapter 120 Control of Bath Temperature
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    Chapter 121 Noise Classification in the Aluminum Reduction Process
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    Chapter 122 Increased Current Efficiency and Reduced Energy Consumption at the TRIMET Smelter Essen Using 9 Box Matrix Control
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    Chapter 123 A Nonlinear Model Based Control Strategy for the Aluminium Electrolysis Process
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    Chapter 124 Bath and Liquidus Temperature Sensor for Molten Salts
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    Chapter 125 Anode Signal Analysis — The Next Generation in Reduction Cell Control
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    Chapter 126 Alcoa STARprobe™
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    Chapter 127 A Study of Factors Affecting Fluoride Emission from 10,000 Ampere Experimental Aluminum Reduction Cells
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    Chapter 128 The Characterisation of Aluminium Reduction Cell Fume
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    Chapter 129 Factors Affecting Fluoride Evolution from Hall-Heroult Smelting Cells
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    Chapter 130 A Study of the Equilibrium Adsorption of Hydrogen Fluoride on Smelter Grade Aluminas
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    Chapter 131 The Role and Fate of SO 2 in the Aluminium Reduction Cell Dry Scrubbing Systems
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    Chapter 132 Sulphur Containing Compounds in the Anode Gas from Aluminium Cells, A Laboratory Investigation
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    Chapter 133 Mathematical Model of Fluoride Evolution from Hall-Héroult Cells
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    Chapter 134 Factors Influencing Cell Hooding and Gas Collection Efficiencies
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    Chapter 135 Sulfur and Fluorine Containing Anode Gases Produced during Normal Electrolysis and Approaching an Anode Effect
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    Chapter 136 Understanding the Effects of the Hydrogen Content of Anodes on Hydrogen Fluoride Emissions from Aluminium Cells
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    Chapter 137 Effect of Open Holes in the Crust on Gaseous Fluoride Evolution from Pots
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    Chapter 138 Alumina Structural Hydroxyl as a Continuous Source of HF
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    Chapter 139 Investigation of Solutions to Reduce Fluoride Emissions from Anode Butts and Crust Cover Material
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    Chapter 140 Global Considerations of Aluminium Electrolysis on Energy and the Environment
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    Chapter 141 The Surface Chemistry of Secondary Alumina from the Dry Scrubbing Process
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    Chapter 142 SO 2 Emission Control in the Aluminium Industry
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    Chapter 143 Reduction of HF Emissions from the TRIMET Aluminum Smelter (Optimizing Dry Scrubber Operations and Its Impact on Process Operations)
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    Chapter 144 Handling CO 2 EQ from an Aluminum Electrolysis Cell
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    Chapter 145 Dry Scrubbing for Modern Pre-Bake Cells
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    Chapter 146 Pot Gas Heat Recovery and Emission Control
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    Chapter 147 The Applicability of Carbon Capture and Sequestration in Primary Aluminium Smelters
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    Chapter 148 Dusting Properties of Industrial Aluminas
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    Chapter 149 Evaluation of Fluorocarbon Emissions from the Aluminum Smelting Process
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    Chapter 150 Perfluorocarbon (PFC) Generation at Primary Aluminum Smelters
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    Chapter 151 Factors Affecting PFC Emissions from Commercial Aluminum Reduction Cells
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    Chapter 152 Protocol for Measurement of Tetrafluoromethane and Hexafluoroethane from Primary Aluminum Production
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    Chapter 153 On Continuous PFC Emission Unrelated to Anode Effects
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    Chapter 154 Impact of Alternative Processes for Aluminium Production on Energy Requirements
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    Chapter 155 Alternate Smelting Processes for Aluminum
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    Chapter 156 Technoeconomic Assessment of the Carbothermic Reduction Process for Aluminum Production
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    Chapter 157 Solid State Carbothermal Reduction of Alumina
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    Chapter 158 Production of Aluminum-Silicon Alloys from Sand and Clay in Hall Cells
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    Chapter 159 Bench Scale Electrolysis of Alumina in Sodium Fluoride - Aluminum Fluoride Melts Below 900°C
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    Chapter 160 Electrolysis of Alumina in a Molten Salt at 760°C
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    Chapter 161 Aluminum Reduction via Near Room Temperature Electrolysis in Ionic Liquids
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Title
Essential Readings in Light Metals
Published by
Springer International Publishing, March 2017
DOI 10.1007/978-3-319-48156-2
ISBNs
978-3-31-948155-5, 978-3-31-948156-2
Editors

Bearne, Geoff, Dupuis, Marc, Tarcy, Gary

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The data shown below were compiled from readership statistics for 6 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 6 100%

Demographic breakdown

Readers by professional status Count As %
Student > Master 2 33%
Student > Doctoral Student 1 17%
Lecturer 1 17%
Unknown 2 33%
Readers by discipline Count As %
Energy 2 33%
Materials Science 1 17%
Unknown 3 50%