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水性二相系高速向流クロマトグラフィーによる無機イオンの分離
https://sucra.repo.nii.ac.jp/records/13147
https://sucra.repo.nii.ac.jp/records/13147a9c595d3-147f-44ad-8f07-acfa8afef736
名前 / ファイル | ライセンス | アクション |
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A1002489.pdf (360.9 kB)
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Item type | 学術雑誌論文 / Journal Article(1) | |||||
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公開日 | 2008-03-12 | |||||
タイトル | ||||||
タイトル | 水性二相系高速向流クロマトグラフィーによる無機イオンの分離 | |||||
言語 | ||||||
言語 | jpn | |||||
キーワード | ||||||
主題Scheme | Other | |||||
主題 | high-speed countercurrent chromatography | |||||
キーワード | ||||||
主題Scheme | Other | |||||
主題 | aqueous biphasic system | |||||
キーワード | ||||||
主題Scheme | Other | |||||
主題 | inorganic ions | |||||
キーワード | ||||||
主題Scheme | Other | |||||
主題 | optimization | |||||
資源タイプ | ||||||
資源タイプ識別子 | http://purl.org/coar/resource_type/c_6501 | |||||
資源タイプ | journal article | |||||
タイトル(別言語) | ||||||
その他のタイトル | Separation of inorganic ions by high-speed countercurrent chromatography with an aqueous biphasic system(<Special Articles>The First Papers of Prospective Analytical Chemists) | |||||
著者 |
石井, 一行
× 石井, 一行× 田中, 由香× 秦, 恭子× 後藤, 将治× 齊藤, 和憲× 南澤, 宏明× 渋川, 雅美 |
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著者 ローマ字 | ||||||
ISHII, Kazuyuki | ||||||
著者 ローマ字 | ||||||
TANAKA, Yuka | ||||||
著者 ローマ字 | ||||||
HATA, Kyoko | ||||||
著者 ローマ字 | ||||||
GOTO, Masaharu | ||||||
著者 ローマ字 | ||||||
SAITOH, Kazunori | ||||||
著者 ローマ字 | ||||||
MINAMISAWA, Hiroaki | ||||||
著者 ローマ字 | ||||||
SHIBUKAWA, Masami | ||||||
著者 所属 | ||||||
日本大学生産工学部応用分子化学科(現 : ジーエルサイエンス株式会社販売推進部カスタマーサポートセンター) | ||||||
著者 所属 | ||||||
日本大学生産工学部応用分子化学科 | ||||||
著者 所属 | ||||||
日本大学生産工学部応用分子化学科 | ||||||
著者 所属 | ||||||
日本大学生産工学部応用分子化学科(現 : マイルストーンゼネラル株式会社カスタマーサービス) | ||||||
著者 所属 | ||||||
日本大学生産工学部応用分子化学科 | ||||||
著者 所属 | ||||||
日本大学生産工学部教養・基礎科学系 | ||||||
著者 所属 | ||||||
日本大学生産工学部応用分子化学科 | ||||||
著者 所属(別言語) | ||||||
Department of Applied Molecular Chemistry, College of Industrial Technology, Nihon University | ||||||
著者 所属(別言語) | ||||||
Department of Applied Molecular Chemistry, College of Industrial Technology, Nihon University | ||||||
著者 所属(別言語) | ||||||
Department of Applied Molecular Chemistry, College of Industrial Technology, Nihon University | ||||||
著者 所属(別言語) | ||||||
Department of Applied Molecular Chemistry, College of Industrial Technology, Nihon University | ||||||
著者 所属(別言語) | ||||||
Department of Applied Molecular Chemistry, College of Industrial Technology, Nihon University | ||||||
著者 所属(別言語) | ||||||
Department of Basic Science, College of Industrial Technology, Nihon University 7Department of Applied Molecular Chemistry, College of Industrial Technology, Nihon University | ||||||
著者 所属(別言語) | ||||||
Department of Applied Molecular Chemistry, College of Industrial Technology, Nihon University | ||||||
書誌情報 |
分析化学 巻 53, 号 9, p. 911-917, 発行日 2004 |
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年月次 | ||||||
2004-9 | ||||||
出版者名 | ||||||
出版者 | 社団法人日本分析化学会 | |||||
ISSN | ||||||
収録物識別子タイプ | ISSN | |||||
収録物識別子 | 05251931 | |||||
抄録 | ||||||
内容記述タイプ | Abstract | |||||
内容記述 | 本研究では,水性二相系高速向流クロマトグラフィー(HSCCC)による無機化合物の分離を目的として,操作条件と分離性能の関係を検討した.HSCCC 装置としてはJ型コイルプラネット向流クロマトグラフ,水性二相系としてはポリエチレングリコール(PEG)-Na_2SO_4系を用い,無機陰イオン (IO_3^-,I^-,NO_3^-,SCN^-)をモデル化合物として,二相系の組成,ドラムの回転速度及び移動相流量と分離度の関係を検討した.その結果,カラムを巻き付けたドラムの回転速度が大きいほど固定相保持百分率が減少したが,それにもかかわらず分離度は大きくなるという現象が観測された. 理論段数を測定したところ,分離度の増加はほぼ理論段数の増加で説朋できることが明らかになった.これは,回転速度の増加に伴って二相のかくはんが激しくなり,液滴が小さくなることによるものと推測される.一方,移動相流量は分離効率に大きな影響を与えなかった.得られた結果に基づいて最適条件を設定し, Cr(III)とCr(VI)の分離を試みたところ良好な分離結果が得られた. The optimum experimental conditions for J coil planet centrifuge high-speed countercurrent chromatography (HSCCC) with aqueous biphasic systems consisting of polyethylene glycol (PEG) and sodium sulfate were investigated using some inorganic anions as model compounds. The PEG-rich upper phase was used as the stationary phase and the salt-rich lower phase was used as the mobile phase. In order to eliminate fluctuations of the base line of chromatograms owing to emulsification caused by excessive mixing of the two phases, water was mixed with the eluate from the column prior to UV detection. The resolution of iodate ion and iodide ion increased with an increase in the revolution speed of the Teflon tube column holder although the volume of the stationary phase retained in the column decreased. This was due to an improvement of the separation efficiency, shown as an increase in theoretical number of sample compounds. The increase in the flow rate of the mobile phase caused a decrease in the stationary phase volume. However, the resolution did not depend on the flow rate in the range studied. This may be interpreted in terms of relatively high distribution ratios of the inorganic anions used in this study. Separation of some inorganic anions and that of chromium(III) ion and chromate(VI) ion were easily accomplished by HSCCC with PEG |
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その他の言語 | ||||||
言語 | eng | |||||
版 | ||||||
[出版社版] | ||||||
著者版フラグ | ||||||
出版タイプ | VoR | |||||
出版タイプResource | http://purl.org/coar/version/c_970fb48d4fbd8a85 | |||||
資源タイプ | ||||||
内容記述タイプ | Other | |||||
内容記述 | text | |||||
フォーマット | ||||||
内容記述タイプ | Other | |||||
内容記述 | application/pdf | |||||
作成日 | ||||||
日付 | 2008-03-11 | |||||
日付タイプ | Created | |||||
アイテムID | ||||||
A1002489 |