
Advances in Materials Science for Environmental and Nuclear Technology
Description
Alles über E-Books | Antworten auf Fragen rund um E-Books, Kopierschutz und Dateiformate finden Sie in unserem Info- & Hilfebereich.
More details
Other editions
Additional editions


Content
MATERIALS SOLUTIONS FOR THE NUCLEAR RENAISSANCE.
Irradiation Effects in Ceramics for Plutonium Disposition (C. Davoisne, W. E. Lee, M. C. Stennett, N. C. Hyatt, N. Peng, and C. Jeynes).
Synthesis and Structures of Gd2 (Zr2-xCex)O7: A Model Ceramic System for Plutonium Disposition (D. P. Reid, M. C. Stennett, and N. C. Hyatt).
Waste Form Development for SRS MOX Plant Effluent (Erich Hansen, Timothy Jones, Tommy Edwards, and Alex Cozzi).
Flammable Gasses in the Saltstone Process Flowsheet (A. D. Cozzi).
Development of Crystal-Tolerant Waste Glasses (J. Matyas, J. D. Vienna, A. Kimura, M. Schaible, and R. M. Täte).
Phase Stability of Defense Waste Processing Facility (DWPF) Type High Level Nuclear Waste Glasses (Amanda L. Billings, Carol M. Jantzen, Connie C. Herman, and Sharon L. Marra).
Alkali/Akaline-Earth Content Effects on Properties of High-Alumina Nuclear Waste Glasses (J. S. McCloy, C. Rodriguez, C. Windisch, C. Leslie, M. J. Schweiger, B. R. Riley, and J. D. Vienna).
Nepheline Crystallization in Nuclear Waste Glasses (Kevin M. Fox, David K. Peeler, and Thomas B. Edwards).
Cold Crucible Vitrification of SRS SB4 HLW Surrogate at High Waste Loadings (A. P. Kobelev, S. V. Stefanovsky, V. V. Lebedev, D. Y. Suntsov, M. A. Polkanov, O. A. Knyazev, and J. C. Marra).
An Extraction of Platinum Group Metals and Molybdenum from Molten Borosilicate Glass Using Cu and Cu5Si (Kazuyoshi Uruga).
Microstructure of Laser-Melted Zirconium Carbide Ceramics (H. F. Jackson, D. D. Jayaseelan, W. J. Clegg, M. J. Reece, F. Inam, D. Manara, C. Perinetti Casoni, and W. E. Lee).
On the Mechanism of Radiation Damage in Zircon by High-Energy Electrons (N. Jiang).
Anelasticity in Austenitic Steels (Ashwin Rao, P. John Bouchard, and Michael E. Fitzpatrick).
Molten Salts for Nuclear Cogeneration (Luke Olson, James Ambrosek, Guoping Cao, Kumar Sridharan, Mark Anderson, and Todd Allen).
GREEN ENGINEERING AND ENVIRONMENTAL STEWARDSHIP.
Development of Low-Cost Functional Geopolymeric Materials (Mazen Alshaaer, Faten Slaty, Hani Khoury, Hubert Rahier, and Jan Wastiels).
Green Technology for Extraction of Iron from Ores and Other Materials (Allen W. Apblett and Kevin Barber).
Nanotechnology for Uranium Separations and Immobilization (Kevin Barber, Allen W. Apblett, Sulaiman Al-Fadul, Alan Piquette, and Mohamed Chehbouni).
How the Classic Materials Science Stool is being Changed by the Sustainability Stool (Marsha S. Bischel and Amy A. Costello).
Impact of Materials Selection on the Sustainability of Wind Energy (Davion M. Hill and Narasi Sridhar).
Precipitation Behavior of Chromium in Chromium(IH)-Bearing Slag (Xingrong Wu, Liaosha Li, Ping Wang, Zhaojin Wu, and Yuanchi Dong).
Improved Energy Efficiency and Environmental Benefits for Calcium Treatment in Steel (James Yanker and David Dudek).
NANOTECHNOLOGY FOR ENERGY.
Optical Characterization of Chemically Deposited SbCuS Thin Films (Chinedu Ekuma, Mishack Nnabuchi, Nwabueze Aja, and Israel Owate).
Examining Defects in Solid Core 2-D Photonic Band-Gap Fibers with High Index Inclusions (Neal T. Pfeiffenberger and Gary R. Pickrell).
Nanophased Materials in Supercritical CO2: Ceramic Nanopowder Synthesis, Encapsulation and Deposition (J. C. Ruiz, F. Charton, S. Sarrade, A. Hertz, B. Fournel, A. Julbe, and C. Guizard).
Influence of Gas Flow Rate on the Formation of ZnO Nanorods and Their Effects on Photoelectrochemical Response (Sudhakar Shet, Kwang-Soon Ahn, Ravindra Nuggehalli, Yanfa Yan, Todd Deutsch, John Turner, and Mowafak Al-Jassim).
Nanocoating Enhanced Optical Fiber Sensors (M. Smietana, W. J. Bock, J. Szmidt, and G. R. Pickrell).
Surface Plasmon Resonant Enhanced Optical Transmission through ZnO/Ag/ZnO Multilayered Films (Pangpang Wang, Dongyan Zhang, Chang Huang, Xiaoping Song, and Ri-ichi Murakami).
Controlled Shape Synthesis of BaTiO3-(Mn0.5Zn0.5)Fe2O4 Nanocomposites (Yaodong Yang, Wenwei Ge, Shashank Priya, Yu U. Wang, Jie-Fang Li, and D. Viehland).
Author Index.
System requirements
File format: PDF
Copy-Protection: Adobe-DRM (Digital Rights Management)
System requirements:
- Computer (Windows; MacOS X; Linux): Install the free reader Adobe Digital Editions prior to download (see eBook Help).
- Tablet/smartphone (Android; iOS): Install the free app Adobe Digital Editions or the app PocketBook before downloading (see eBook Help).
- E-reader: Bookeen, Kobo, Pocketbook, Sony, Tolino and many more (only limited: Kindle).
The file format PDF always displays a book page identically on any hardware. This makes PDF suitable for complex layouts such as those used in textbooks and reference books (images, tables, columns, footnotes). Unfortunately, on the small screens of e-readers or smartphones, PDFs are rather annoying, requiring too much scrolling.
This eBook uses Adobe-DRM, a „hard” copy protection. If the necessary requirements are not met, unfortunately you will not be able to open the eBook. You will therefore need to prepare your reading hardware before downloading.
Please note: We strongly recommend that you authorise using your personal Adobe ID after installation of any reading software.
For more information, see our eBook Help page.