Separation of Inorganic Anions by a Diol-modified Silica Stationary Phase with Acidic Eluent
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- YOSHII Sakura
- Graduate School of Science and Technology, Gunma University
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- KOZAKI Daisuke
- Faculty of Science and Technology, Kochi University
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- HOSOKAWA Takayuki
- Faculty of Science and Technology, Kochi University
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- ITABASHI Hideyuki
- Graduate School of Science and Technology, Gunma University
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- MORI Masanobu
- Faculty of Science and Technology, Kochi University
Bibliographic Information
- Other Title
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- 酸性溶離液を用いるジオール修飾シリカゲル固定相による無機陰イオン分離
- サンセイ ヨウリエキ オ モチイル ジオール シュウショク シリカゲル コテイソウ ニ ヨル ムキ インイオン ブンリ
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Abstract
<p>This study describes inorganic anions using a column packed with a diol-modified silica gel stationary phase (diol-silica; TSKgel OH-120). In an acid eluent, such as tartaric acid or malic acid, the elution order of the analyte anions in ion chromatography using a diol-silica column was comparable to that using conventional anion-exchange columns, except for the fluoride ion. Fluoride ion would be strongly retained onto the silica gel, which is a support to fix diol functional groups. The retentions for anions was found to be enhanced by H+ in the eluent. This might electrostatically interact anions by protons retained onto diol functional groups in the column. Furthermore, the retention time of sulfate ion, which is a divalent strong acid anion, was largely reduced with increases of the column temperature up to 80 °C, while nitrite ion was slightly increased. The increase of the retention time of the nitrite ion was considered because of oxidization with elution of acidic eluent at a higher column temperature than 70 °C. The anion separation the by diol-silica stationary phase under acidic elution conditions was expected to be an ion-dipole interaction with the eluent ion and/or an electrostatic interaction with the stationary phase.</p>
Journal
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- BUNSEKI KAGAKU
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BUNSEKI KAGAKU 68 (3), 201-206, 2019-03-05
The Japan Society for Analytical Chemistry
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Details 詳細情報について
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- CRID
- 1390845713074979456
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- NII Article ID
- 130007623957
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- NII Book ID
- AN00222633
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- NDL BIB ID
- 029592203
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- ISSN
- 05251931
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- Text Lang
- ja
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- Data Source
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- JaLC
- NDL
- Crossref
- CiNii Articles
- KAKEN
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- Abstract License Flag
- Disallowed