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Advances in Materials Science for Environmental and Energy Technologies IV


Advances in Materials Science for Environmental and Energy Technologies IV


Ceramic Transactions Series, Band 253 1. Aufl.

von: Josef Matyas, Tatsuki Ohji, Gary Pickrell, Winnie Wong-Ng, Raghunath Kanakala

153,99 €

Verlag: Wiley
Format: PDF
Veröffentl.: 09.09.2015
ISBN/EAN: 9781119190141
Sprache: englisch
Anzahl Seiten: 240

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Beschreibungen

<p>This proceedings contains a collection of 20 papers from the following five <b>2014 Materials Science and Technology (MS&T'14)</b> symposia:</p> <ul> <li>Materials Issues in Nuclear Waste Management in the 21st Century</li> <li>Green Technologies for Materials Manufacturing and Processing V</li> <li>Nanotechnology for Energy, Healthcare and Industry</li> <li>Materials for Processes for CO<sub>2</sub> Capture, Conversion, and Sequestration</li> <li>Materials Development for Nuclear Applications and Extreme Environments</li> </ul>
Preface ix <p><b>MATERIALS ISSUES IN NUCLEAR WASTE MANAGEMENT</b></p> <p>Uptake of Uranium by Tungstic Acid 3<br /><i>Hamed Albusaidi, Cory K. Perkins, and Allen W. Apblett</i></p> <p>Electrical Conductivity Method for Monitoring Accumulation of Crystals 13<br /><i>Matthew K. Edwards, Josef Matyáš, Jarrod V. Crum, Charles C. Bonham, and Michael J. Schweiger</i></p> <p>Crystallization in High Level Waste (HLW) Glass Melters: Savannah River Site Operational Experience 23<br /><i>Kevin M. Fox, David K. Peeler, and Albert A. Kruger</i></p> <p>Scoping Melting Studies of High Alumina Waste Glass Compositions 37<br /><b>Jared O. Kroll, Michael J. Schweiger, John D. Vienna</b></p> <p>Research-Scale Melter: An Experimental Platform for Evaluating Crystal Accumulation in High-Level Waste Glasses 49<br /><i>Josef Matyáš, Gary J. Sevigny, Michael J. Schweiger, and Albert A. Kruger</i></p> <p>Characterization of High Level Nuclear Waste Glass Samples Following Extended Melter Idling 59<br /><i>David K. Peeler, Kevin M. Fox, and Albert A. Kruger</i></p> <p>Synthesis of Mineral Matrices Based on Enriched Zirconium Pyrochlore for Immobilization of Actinide-Containing Waste 73<br /><i>K. Podbolotov and T. Barinova</i></p> <p>Corrosion Evaluation of Melter Materials for Radioactive Waste Vitrification 83<br /><i>Marissa M. Reigel, Ken J. Imrich, and Carol M. Jantzen</i></p> <p><b>GREEN TECHNOLOGIES FOR MATERIALS MANUFACTURING AND PROCESSING</b></p> <p>Green Flame Retardant Based on a Ceramic Precursor 99<br /><i>Bhawani Regmi and Allen W. Apblett</i></p> <p>Single-Source Precursor Approach to Barium Dimolybdate 109<br /><i>Ahmed Moneeb Allen W. Apblett, Abdullah Al-Abdulrahman, and Abdulaziz Bagabas</i></p> <p>Effects on Biomass Char Addition on Combustion Process of Pulverized Coal 117<br /><i>Yi-ran Liu, Yingli , and Bingchang Li</i></p> <p>A Comparative Analysis for Charpy Impact Energy in Polyester Composites Reinforced with Malva, Ramie and Curaua Fibers 127<br /><i>Frederico Muylaert Margem, André Raeli Gomes, Luiz Gustavo Xavier Borges, and Sergio Neves Monteiro</i></p> <p>Research on Simultaneous Injection of Waste Tires with Pulverized Coal for Blast Furnace 135<br /><i>Bingji Yan, Jianliang Zhang, Hongwei Guo, and Feng Liu</i></p> <p>Research on using Blast Furnace Slag to Produce Building Stone 145<br /><i>Bingji Yan, Jianliang Zhang, Hongwei Guo, Zhiwen Shi, and Feng Liu</i></p> <p>A Green Leaching Method of Decomposing Synthetic CaWO4 by HCl-H3PO4 in Tungsten Producing Process 157<br /><i>Liang Liu and Jilai Xue</i></p> <p><b>NANOTECHNOLOGY FOR ENERGY, HEALTHCARE AND INDUSTRY</b></p> <p>Synthesis of Coated Nano Calcium Carbonate Particles and their Characterization 169<br /><i>S. E. Benjamin and Farah Mustafa</i></p> <p>Synthesis of TiO2 Nanostructures via Hydrothermal Method 177<br /><i>Nursev Bilgin, Lutfi Agartan, Jongee Park, and Abdullah Ozturk</i></p> <p>Carbon Nanotube-Based Impedimetric Biosensors for Bone Marker Detection 187<br /><i>Mitali Patil, Madhumati Ramanathan, Vesselin Shanov, and Prashant N. Kumta</i></p> <p><b>MATERIALS AND PROCESSES FOR CO2 CAPTURE, CONVERSION, AND SEQUESTRATION</b></p> <p>High CO2 Permeation Flux Enabled by Al2O3 Modifier and In-Situ Infiltration of Molten Carbonate into Gd-Doped CeO2 as a CO2 Separation Membrane 197<br /><i>Jingjing Tong, Zachary Bills, Lingling Zhang, Jie Fang, Minfang Han, and Kevin Huang</i></p> <p><b>MATERIALS DEVELOPMENT FOR NUCLEAR APPLICATIONS AND EXTREME ENVIRONMENTS</b></p> <p>Superplasticity in Ceramics at High Temperature 207<br /><i>Michael Opoku, Raghunath Kanakala, and Indrajit Charit</i></p> <p>Author Index 219</p>

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