
Energy Technology 2015
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Content
2 - Half Title [Seite 2]
3 - Title Page [Seite 4]
4 - Copyright Page [Seite 5]
5 - Table of Contents [Seite 6]
6 - About the Editors [Seite 11]
7 - Session Chairs [Seite 18]
8 - Energy Technologies and Carbon DioxideManagement Symposium 2015 [Seite 21]
8.1 - Carbon Management [Seite 22]
8.1.1 - A Thermodynamic Study of Mixed Carbon Feedstock Gasification Slags [Seite 23]
8.1.2 - Evaluation of Heat Treatment Performance of Potential Pipe Steels in CCS-Environment [Seite 33]
8.1.3 - Economic Assessment of Methanol Synthesis by CO2 from Coal-Fired Power Plants [Seite 41]
8.1.4 - Thermal Wastes from Energy Conversions and Global Anthropogenic Warming [Seite 46]
8.2 - Iron & Steel [Seite 53]
8.2.1 - Influence of the Initial Solidification Controlling on the Energy Saving during Continuous Casting [Seite 54]
8.2.2 - Performance of Twin Oxygen-Coal Lances for PCI Operation in Blast Furnace Iron Making [Seite 61]
8.2.3 - Energy Saving and CO2 Emission Reducing Analysis of Chinese Iron and Steel Industry [Seite 69]
8.2.4 - Investigation on the Heat Recovery from High Temperature Slags [Seite 78]
8.2.5 - Optimal Distribution of Byproduct Gases in Iron and Steel Industry Based on Mixed Integer Linear Programming (MILP) [Seite 86]
8.3 - Metal Processing / Molten Salt / Electrochemistry [Seite 94]
8.3.1 - Energy Efficient Separation of Magnetic Alloy from the Carbothermic Reduction of Nkana Cu-Co Concentrates [Seite 95]
8.3.2 - LCA Evaluation for Different Treatment Processes of Nickel Laterite Ore [Seite 104]
8.3.3 - Low Temperature Sulphidization of Cu-Co Slag in the Presence of Calcium Sulphide [Seite 115]
8.3.4 - A Kinetic Analysis of Acid Leaching of Niobium and Zirconium from Titania Waste Residue Stream: An Energy Efficient Methodology for the Reclamation of Metal Values [Seite 124]
8.3.5 - The Optimization Formula Design of CuxZn1-xO Infrared Radiation Material and Coating Slurry [Seite 132]
8.3.6 - The Role of Austenitizing Routines of Pipe Steels during CCS [Seite 140]
8.3.7 - Evaluation of Surface Tension for the NaNO3-KNO3-Ca(NO3)2 System and Its Sub-System [Seite 147]
8.4 - Solar Energy [Seite 154]
8.4.1 - Development of High Flux Solar Simulators for Solar Thermal Research [Seite 155]
9 - Recycling and Sustainability Update [Seite 166]
9.1 - Waste [Seite 167]
9.1.1 - The Removal of Phosphate and Ammonia Nitrogen from Wastewater Using Steel Slag [Seite 168]
9.1.2 - Sustainable Recycling Technologies for Bauxite Residue (Red Mud) Utilization [Seite 176]
9.2 - Recycling [Seite 183]
9.2.1 - Investigation on Recycling of Ag from Pb-Cu-Ag Alloy by Vacuum Distillation [Seite 184]
9.2.2 - Recycling of Sinter Plant Offgas Cleaning System Dust by Pre-Agglomeration [Seite 193]
9.2.3 - Recovery of Metals from Waste Printed Circuit Boards by Leaching with 1-Ethyl-3-Methyl-Imidazolium Hydrogen Sulfate Ionic Liquid [Seite 201]
9.2.4 - Application of 1-Methylimidazolium Hydrogen Sulfate Ionic Liquid to the Oxidative Leaching of Copper and Zinc in Industrial Brass Dross [Seite 208]
9.3 - Poster Session [Seite 215]
9.3.1 - Experimental Study on Reduction in Low Grade Lateritic Nickel Ore Mixed with Pickling Sludge [Seite 216]
9.3.2 - Recycling Wastes in the Alumina and the Cement Industry [Seite 224]
9.3.3 - Evaluation of the Silver Recovery from Radiographic Films in a Filter Press Electrochemical Reactor [Seite 230]
9.3.4 - Leaching of Gold from Printed Circuit Boards Scrap of Mobile Phones [Seite 239]
10 - Magnetic Materials for Energy Applications [Seite 246]
10.1 - Soft Magnetic Materials I [Seite 247]
10.1.1 - Effect of Electric Current Pulse on Grain Boundary of Grain Oriented Silicon Steel during Primary Recrystallization Annealing [Seite 248]
10.2 - Soft Magnetic Materials II [Seite 256]
10.2.1 - Magnetostriction of Co-Fe-Based Amorphous Soft Magnetic Microwires [Seite 257]
10.3 - Poster Session [Seite 264]
10.3.1 - Magnetostructural Transition in Heusler Mn-Ni-In Melt Spun Ribbons [Seite 265]
10.3.2 - Magnetic Properties of Nanocrystalline Microwires [Seite 272]
10.3.3 - On Magnetocaloric Properties of (Pr,Dy)Fe9 Alloys [Seite 279]
11 - Sustainable Energy and Layered Double Hydroxides [Seite 284]
11.1 - Sustainable Energy and Layered Double Hydroxides [Seite 285]
11.1.1 - Technical Innovation and Entrepreneurial Potential of "Hydrotalcite Like" Materials [Seite 286]
11.1.2 - Layered Double Hydroxides in Energy Research: Advantages and Challenges [Seite 294]
11.1.3 - Modelling the Structure and Vibrational Properties of Layered Double Hydroxides [Seite 302]
11.1.4 - Synthesis of Hydrotalcite-Like Compounds from Blast Furnace Slag: The Effect of Synthesis Parameters on Structure and Crystallinity [Seite 309]
12 - High-Temperature Systems for Energy Conversion and Storage [Seite 316]
12.1 - Solid Oxide Fuel Cell: Recent Developments II [Seite 317]
12.1.1 - Evaluating Electrophoretically Deposited Cu-Mn-O Spinel Coatings on Stainless Steel Substrates Used in Solid Oxide Fuel Cell Interconnects [Seite 318]
12.2 - Innovation in Energy Conversion and Storage I [Seite 326]
12.2.1 - Degradation of Sm2Zr2O7 Thermal Barrier Coating Caused by Calcium-Magnesium-Aluminum-Silicon Oxide (CMAS) Deposition [Seite 327]
13 - Structural Materials, Heat Transport Fluids, and Novel System Designs for High Power and Process Heat Generation [Seite 335]
13.1 - Heat Transport Fluids I [Seite 336]
13.1.1 - Minimum System Entropy Production for the Figure of Merit of High Temperature Heat Transfer Fluid Properties [Seite 337]
14 - Author Index [Seite 351]
15 - Subject Index [Seite 353]
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