4.7 Article

Extraction and mechanism investigation of trace roxithromycin in real water samples by use of ionic liquid-salt aqueous two-phase system

期刊

ANALYTICA CHIMICA ACTA
卷 653, 期 2, 页码 178-183

出版社

ELSEVIER
DOI: 10.1016/j.aca.2009.09.011

关键词

[Bmim]BF4-salt aqueous two-phase system; Roxithromycin; Extraction; Real water samples

资金

  1. China National Science Foundation [20777029]
  2. Jiangsu University Science Foundation [07KJB610021]
  3. Jilin Education Department Foundation [20070156]

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The ionic liquid, as a green solvent, has several advantages over the organic solvents in traditional liquid-liquid extraction. Aqueous two-phase system (ATPS) consisting of a hydrophilic ionic liquid (1-butyl-3-methylimidazolium tetrafluoraborate, [Bmim]BF4) and Na2CO3, which is a novel, simple, non-toxic and effective sample pretreatment technique coupled with molecular fluorescence spectrophotometry, was developed for the simultaneous separation, enrichment and rapid analysis of roxithromycin. The extraction yield of roxithromycin in [Bmim]BF4-Na2CO3 aqueous two-phase system is influenced by the types of salts, concentrations of Na2CO3 and [Bmim]BF4, as well as the extracting temperature. Under the optimum conditions, the average extraction efficiency is up to 90.7%. The mechanism of ionic liquid-salt ATPS formation was discussed by hydration theory, and the extraction mechanism of the [Bmim]BF4-salt ATPS was investigated by FT-IR spectroscopy and UV-vis spectroscopy. The results demonstrate that no chemical (bonding) interactions are observed between ionic liquid and roxithromycin, while the nature properties of the roxithromycin are not altered. This method was practical when applied to the analysis of roxithromycin in real water samples with the detection limit of 0.03 mu g mL(-1), relative standard deviation (RSD) of 1.9% (n=13), and linear ranges of 1.00-20.00 mu g mL(-1). The proposed extraction technique will be promising in the separation of other small biomolecules. (c) 2009 Elsevier B.V. All rights reserved.

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