Adsorption of Noble Gases on H-Mordenite
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概要
- 論文の詳細を見る
Release of nuclear off-gas that contains various radioactive components to the environment could jeopardize public health and safety. Therefore a screening test was carried out to find suitable adsorbents for the removal of the radioactive noble gases from the reprocessing off-gas. The adsorption capacities of various adsorbents for Kr and Xe were investigated. Carbon based adsorbents such as Ambersorb 572, Merck, Ryujou-Shirasagi G2x4/6-3 and Molsievon X2M4/6 were found to have large adsorption capacities. The H-mordenite, a non-carbon based adsorbent prepared from natural mordenite by ion exchange with a HCl solution, demonstrated a large adsorption capacity for Kr almost comparable to that of activated charcoal. Since non-carbon based adsorbents have a very important feature, that is they are not susceptible to fire hazards, the adsorption equilibria of Kr and Xe on the H-mordenite adsorbent were more thoroughly studied. The adsorption experiments on the H-mordenite were conducted in the temperature range of 77 K to 353 K using a packed bed column. The adsorption isotherms obtained for the H-mordenite were successfully correlated with the vacancy solution model over wide partial pressure and temperature ranges.
- 社団法人 日本原子力学会の論文
- 2002-11-25
著者
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MUNAKATA Kenzo
Department of Materials-Process Engineering & Applied Chemistry for Environments, Akita University
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宗像 健三
Kyushu Univ. Fukuoka Jpn
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YOKOYAMA YOSHIHIRO
Department of Marine Bioscience, Fukui Prefectural University
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TANAKA Kenji
Department of Energy Conversion, Graduate School of Engineering Sciences, Kyushu University
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IANOVSKI Dmitri
Department of Advanced Energy Engineering Science, Interdisciplinary Graduate School of Engineering
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KANJO Seigo
Department of Advanced Energy Engineering Science, Interdisciplinary Graduate School of Engineering
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IGARASHI Yasuhito
Department of Chemical Research, Metrological Research Institute
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YAMATSUKI Satoshi
Department of Advanced Energy Engineering Science, Interdisciplinary Graduate School of Engineering,
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KOGA Akinori
Department of Advanced Energy Engineering Science, Interdisciplinary Graduate School of Engineering,
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Nishikawa Masabumi
Department of Advanced Energy Engineering Science, Interdisciplinary Graduate School of Engineering
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FUKUMATSU Teruki
Department of Advanced Energy Engineering Science, Interdisciplinary Graduate School of Engineering
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Munakata Kenzo
Department Of Advanced Energy Engineering Science Interdisciplinary Graduate School Of Engineering S
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Koga Akinori
Department Of Advanced Energy Engineering Science Interdisciplinary Graduate School Of Engineering K
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Ianovski Dmitri
Department Of Advanced Energy Engineering Science Interdisciplinary Graduate School Of Engineering K
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Yokoyama Y
Department Of Advanced Energy Engineering Science Interdisciplinary Graduate School Of Engineering S
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Nishikawa M
Department Of Advanced Energy Engineering Science Interdisciplinary Graduate School Of Engineering S
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Nishikawa Masabumi
Department Of Nuclear Engineering Kyushu University
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Nishikawa Masabumi
Department Of Advanced Energy Engineering Science Interdisciplinary Graduate School Of Engineering S
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Kanjo Seigo
Department Of Advanced Energy Engineering Science Interdisciplinary Graduate School Of Engineering K
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Yokoyama Yoshihiro
Department Of Advanced Energy Engineering Science Interdisciplinary Graduate School Of Engineering S
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Igarashi Yasuhito
Department Of Chemical Research Meteorological Research Institute
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Fukumatsu Teruki
Department Of Advanced Energy Engineering Science Interdisciplinary Graduate School Of Engineering S
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Yamatsuki Satoshi
Department Of Advanced Energy Engineering Science Interdisciplinary Graduate School Of Engineering K
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Tanaka Kenji
Department Of Advanced Energy Engineering Science Interdisciplinary Graduate School Of Engineering S
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