Reaction of Titanium Beryllide with Water Vapor
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概要
- 論文の詳細を見る
- 一般社団法人 日本原子力学会の論文
- 2004-04-25
著者
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Munakata Kenzo
Department Of Advanced Energy Engineering Science Interdisciplinary Graduate School Of Engineering S
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Munakata Kenzo
Department Of Advanced Energy Engineering Science Interdisciplinary Graduate School Of Engineering S
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KAWAMURA Hiroshi
Naka Research Establishment, Japan Atomic Energy Research Institute
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UCHIDA Munenori
Oarai Research Establishment, Japan Atomic Energy Research Institute
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Uchida Munenori
Oarai Research Establishment Japan Atomic Energy Research Institute
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Kawamura Hiroshi
Naka Research Establishment Japan Atomic Energy Research Institute
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- Adsorption of Noble Gases on H-Mordenite
- Dynamics of Adsorption of Kr and Xe on MS5A and Activated Charcoal
- Screening Test of Adsorbents for Recoverty of Krypton
- Tritium Release from Improved Ceramic Tritium Breeder with Catalytic Function
- Removal of Carbon Dioxide in Reprocessing Spent Nuclear Fuel off Gas by Adsorption
- Adsorption Equilibria of Krypton, Xenon, Nitrogen and Their Mixtures on Molecular Sieve 5A and Activated Charcoal
- Development of an Improved Ceramic Tritium Breeder, -Ceramic Breeder with Catalytic Function
- Adsorption of Krypton on Adsorbents at Cryogenic Temperatures
- Ab Initio Study of Electron State in Li_4SiO_4 Crystal
- Reaction of Titanium Beryllide with Water Vapor
- Vacancy Solution Model Formulated by the NRTL Equation for Correlation of Adsorption Equilibria
- Synthesis of Zeolitic Material from Paper Sludge Ash Using Diatomite
- Selective Recovery of Radioactive Carbon Dioxide Released from Nuclear Off-gas by Adsorption
- Catalytic oxidation of tritium in wet gas.