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Preparation of the Fibrous Adsorbent Containing Amidoxime Group and Adsorption Property for Uranium
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- KATOH Shunsaku
- Government Industrial Research Institute, Shikoku
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- SUGASAKA Kazuhiko
- Government Industrial Research Institute, Shikoku
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- SAKANE Kohji
- Government Industrial Research Institute, Shikoku
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- TAKAI Nobuharu
- Institute of Industries and Science, University of Tokyo
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- TAKAHASHI Hiroshi
- Institute of Industries and Science, University of Tokyo
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- UMEZAWA Yoshio
- Central Research Laboratory Mitsubishi Chemical Industries, Ltd.
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- ITAGAKI Kohji
- Central Research Laboratory Mitsubishi Chemical Industries, Ltd.
Bibliographic Information
- Other Title
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- アミドキシム基を含有する繊維の調製とウラン吸着性
- 繊維状高分子吸着剤による海水からウランの採取に関する研究 I アミドキシム基を含有する繊維の調製とウラン吸着性
- Preparation of fibrous adsorbent containing amidoxime group and adsorption property for uranium
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Description
A fibrous adsorbent containing amidoxime group (AO-fiber) was made of comercial polyacrylonitrile fiber by reaction of hydroxylamine in order to obtain a new fibrous adsorbent for the extraction of uranium from sea water.<BR>The infrared spectra of AO-fiber e xhibited the characteristic absorption of amidoxime, i. e. amine stretching absorption at 3400 cm-1, OH stretching at 3320 cm-1, CN stretching of the hydroxyimino group at 1650 cm-1 and NO stretching of the hydroxyimino group at 930 cm-1is The sum of the adsorption capacities of acid and alkaline on the AO-fiber coincided with the amount of hydroxylamine formed by acid hydrolysis, and showed linear correlation with the adsorption capacity of Cu (II). On the other hand the adsorption capacity of acid on the AO resin was in accord with the adsorption capacity of Cu (II). Based on these observations, formation of another functional group, i. e. hydroxamic acid was assumed in addition to hydroxylamine in the AO-fiber. Capability of uranium adsorption of the AO-fiberincreased with increasing the adsorption capacity of Cu (II) when prepared from the same raw material of polyacrylonitrile fiber. The maximum amout of the uranium adsorption from sea water was 100 μg/g for a week.
Journal
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- NIPPON KAGAKU KAISHI
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NIPPON KAGAKU KAISHI 1982 (9), 1449-1454, 1982-09-10
The Chemical Society of Japan
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Keywords
Details 詳細情報について
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- CRID
- 1390001204388056064
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- NII Article ID
- 130004157392
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- COI
- 1:CAS:528:DyaL38XlvVKjsL8%3D
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- ISSN
- 21850925
- 03694577
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- Data Source
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- JaLC
- Crossref
- CiNii Articles
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- Abstract License Flag
- Disallowed