Freshly Printed - allow 7 days lead
Couldn't load pickup availability
Advances in Materials Science for Environmental and Energy Technologies
Tatsuki Ohji (Edited by), T Ohji (Author), Mrityunjay Singh (Edited by), Elizabeth Hoffman (Edited by), Matthew Seabaugh (Edited by), Gary Yang (Edited by)
9781118273425, Wiley
Hardback, published 16 November 2012
232 pages
24.1 x 16.3 x 1.7 cm, 0.467 kg
With contributed papers from the 2011 Materials Science and Technology symposia, this is a useful one-stop resource for understanding the most important issues in advances in materials science for environmental and energy technologies. Logically organized and carefully selected, the articles cover the themes of the symposia: Green Technologies for Materials Manufacturing and Processing; Materials Science Challenges for Nuclear Applications; Materials for Nuclear Waste Disposal and Environmental Cleanup; Energy Conversion/Fuel Cells; and Energy Storage: Materials, Systems and Applications.
Preface ix GREEN TECHNOLOGIES FOR MATERIALS MANUFACTURING AND PROCESSING Mesoporous Materials For Sorption of Actinides 3 Environmentally Friendly Tin Oxide Coating through Aqueous 13 Solution Process Investigation of the Morphological Change into the Fabrication of 25 Fabrication of Solid Electrolyte Dendrites through Novel Smart 33 Microstructural and Mechanical Properties of the Extruded a-p 41 The Characteristics of High Strength and Lead-Free Machinable 47 Preparation of Biomass Char for Ironmaking and Its Reactivity 55 Intelligent Energy Saving System in Hot Strip Mill 65 Hot Gas Cleaning with Gas-Solid Reactions and Related Materials 77 Polyalkylene Carbonate Polymers—A Sustainable Material Alternative 89 MATERIALS FOR NUCLEAR WASTE DISPOSAL AND ENVIRONMENTAL CLEANUP Radiation Shielding Simulation for Wollastonite-Based Chemically 113 Empirical Model for Formulation of Crystal-Tolerant HLW Glasses 121 ENERGY CONVERSION/FUEL CELLS Manganese Cobalt Spinel Oxide Based Coatings for SOFC 141 C02 Conversion into C/CO Using ODF Electrodes with SOEC 147 Heterofoam: New Concepts and Tools for Heterogeneous Functional 155 Study on Heteropolyacids/Ti/Zr Mixed Inorganic Composites for Fuel 165 ENERGY STORAGE: MATERIALS, SYSTEMS AND APPLICATIONS Fatigue Testing of Hydrogen-Exposed Austenitic Stainless Steel in 175 LiMnxFe-,_x P04 Glass and Glass-Ceramics for Lithium Ion Battery 187 The Absorption of Hydrogen on Low Pressure Hydride Materials 197 Polymethylated Phenanthrenes as a Liquid Media for Hydrogen 209 Author Index 221
Allen W. Apblett and Zeid Al-Othman
Yoshitake Masuda, Tatsuki Ohji, and Kazumi Kato
ZnO Microtubes and Microrods by a Simple Liquid Process using Zn Layered Hydroxide Precursor
Seiji Yamashita, M. Fuji, C. Takai, and T. Shirai
Processing
Soshu Kirihara, Satoko Tasaki, Hiroya Abe, Katsuya Noritake, and Naoki Komori
Duplex Phase Brass Cu-40Zn-Ti Alloy
H. Atsumi, H. Imai, S. Li, K. Kondoh, Y. Kousaka, and A. Kojima
a-p Duplex Phase Brass Cu-40Zn-Cr-Fe-Sn-Bi Alloy
H. Atsumi, H. Imai, S. Li, K. Kondoh, Y. Kousaka, and A. Kojima
Hu Zhengwen, Zhang Jianliang, Zhang Xu, Fan Zhengyun, and Li Jing
H. Imanari, K. Ohara, K. Kitagoh, Y. Sakiyama, and F. Williams
for Advanced Clean Power Generation from Coal
Hiromi Shirai and Hisao Makino
to Traditional Petrochemical Based Plastics
P. Ferraro
Characterizing the Defect Population Introduced by Radiation 99
Damage*
Paul S. Follansbee
Bonded Phosphate Ceramics
J. Pleitt, H. A. Colorado, and C. H. Castano
J. Matyas, A. Huckleberry, C. A. Rodriguez, J. D. Vienna, and A. A. Kruger
Novel SOFC Processing Techniques Employing Printed Materials 129
P. Khatri-Chhetri, A. Datar, and D. Cormier
Interconnects
Jeffrey W. Fergus, Yingjia Liu, and Yu Zhao
Bruce Kang, Huang Guo, and Gulfam Iqbal
Material Design
K. L. Reifsnider, F. Rabbi, R. Raihan, Q. Liu, P. Majumdar, Y. Du, and J. M. Adkins
Cell Electrolytes
Uma Thanganathan
an Undergraduate Materials Laboratory
Patrick Ferro, John Wallace, Adam Nekimken, Travis Dreyfoos, Tyler Spilker, and Elliot Marshall
Tsuyoshi Honma and Takayuki Komatsu
Gregg A. Morgan, Jr. and Paul S. Korinko
Storage
Mikhail Redko
Subject Areas: Mechanical engineering & materials [TG]
