Li / Post Guillen / Verhulst | Energy Technology 2016 | E-Book | www.sack.de
E-Book

E-Book, Englisch, 192 Seiten, eBook

Reihe: The Minerals, Metals & Materials Series

Li / Post Guillen / Verhulst Energy Technology 2016

Carbon Dioxide Management and Other Technologies
1. Auflage 2016
ISBN: 978-3-319-48182-1
Verlag: Springer International Publishing
Format: PDF
Kopierschutz: 1 - PDF Watermark

Carbon Dioxide Management and Other Technologies

E-Book, Englisch, 192 Seiten, eBook

Reihe: The Minerals, Metals & Materials Series

ISBN: 978-3-319-48182-1
Verlag: Springer International Publishing
Format: PDF
Kopierschutz: 1 - PDF Watermark



Topics on CO2 sequestration and reduction in greenhouse gas emissions from process engineering and materials for clean energy are covered. Papers addressing sustainable technologies in extractive metallurgy, materials processing and manufacturing industries with reduced energy consumption and CO2 emission are also included, as well as industrial energy efficient technologies including innovative ore beneficiation, smelting technologies, recycling and waste heat recovery. The book also carries contributions from all areas of non-nuclear and non-traditional energy sources, including renewable energy sources such as solar, wind, biomass, etc. The book also emphasizes novel mineral beneficiation, processing, and extraction techniques leading to waste minimization of critical rare-earth materials used in energy systems (e.g., magnets, display and lighting devices).

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Weitere Infos & Material


1;Cover;1
2;Half Title;2
3;Title Page;4
4;Copyright Page;5
5;Table of Contents;6
6;Preface;9
7;Editors;10
8;Session C hairs;17
9;Energy Technologies and Carbon Dioxide Management;18
9.1;Session I;19
9.1.1;Reduction of CO2 Emissions by Chemical Synthesis Processes in the Cement Industry;20
9.1.2;Research on Greenhouse Gas Emission of Solid Dust Recovery Using Rotary Hearth Furnace Process in China;28
9.1.3;Thermodynamic Analysis of Hydrogen Production from COG-Steam Reforming Process Using Blast Furnace Slag as Heat Carrier;37
9.1.4;CO2 Gasification of Catalysts-Loaded Petroleum Coke at Different Grinding M edium;44
9.2;Session II;52
9.2.1;Heat Recovery from High Temperature Slags: Chemical Methods;53
9.2.2;Corrosion Fatigue of X46Cr13 in CCS Environment;61
9.2.3;Power Generation by Organic Rankine Cycle from Low Temperature Waste Heat of Metallurgical Industry;69
9.2.4;Preparation of Ti-Al-V Alloys by Aluminothermic Reaction;77
9.2.5;Long Term Prediction of Linz-Donawitz Converter Gas (LDG) in Steel Making Process;85
9.2.6;Coke Modification Using Hydrothermal Oxidation Treatment;92
9.2.7;Optimization and Management of Byproduct Gas Distribution in Steel Mills Under Time-of-Use (TOU) Electricity Price;99
9.3;Session III;107
9.3.1;Preparation and Characterization of Stearic Acid/SiO2 Nano-encapsulated Phase Change Materials via Sol-gel Method;108
9.4;Session IV;116
9.4.1;Reduction of GHG Emissions through the Conversion of Dairy Waste to Value-Added Materials and Products;117
9.4.2;Study on Preparing Ti6Al4V Alloys from V-Ti Bearing Beach Placers;125
9.4.3;Particles Flow Behavior Around Tubes in Moving Bed;133
9.5;Poster Session;140
9.5.1;Effect of Microwave Irradiation on Graphitization of Carbon Matrix in Pulverized Coal;141
9.5.2;Effect of Microwave Irradiation on Improving Coal Grindability;150
10;High-Temperature Systems for Energy Conversion and Storage;156
10.1;Ceramic Reliability I;157
10.1.1;Thermomechanical Properties of Bilayer La2Zr2O7 Thermal Barrier C oatings;158
10.2;Recent Advancements in Solid Oxide Fuel Cell Technology II;164
10.2.1;An Improvement of SOFC Durability by the Mass Transport Analysis at the Interfaces;165
11;Systems for Energy Conversion and Storage I;173
11.1;CH4 Reforming by CO2 and O2 Using Ni-M (M= Cu, Fe, Co, Mn, Zn, Cr) Bimetallic Aerogel C atalysts;174
11.2;Electro-spraying and Combustion of Ethanol in a Micro-scale Combustor under Combined Electric Field;182
12;Author Index;189
13;Subject Index;191


The Minerals, Metals & Materials Society (TMS) is a member-driven international professional society dedicated to fostering the exchange of learning and ideas across the entire range of materials science and engineering, from minerals processing and primary metals production, to basic research and the advanced applications of materials. Included among its nearly 13,000 professional and student members are metallurgical and materials engineers, scientists, researchers, educators, and administrators from more than 70 countries on six continents. For more information on TMS, visit www.tms.org.



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