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Multi-residue analysis of selected pharmaceuticals in wastewater samples by stir-bar sorptive extraction followed by liquid desorption and liquid chromatography-mass spectrometry

机译:搅拌棒吸附萃取后液解吸和液相色谱 - 质谱法用多残基分析废水样品中所选药物。

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摘要

New organic pollutants such as pharmaceuticals have been recently classified as emerging pollutants. These are chemically active compounds and may pose a risk to environmental organisms as well as to humans. Nowadays, separation and analytical techniques enable detection and quantification at extremely low concentrations. We aimed to develop and optimise a new method that would minimise (organic) solvent consumption and miniaturise and simplify sample preparation through the use of stirbar sorptive extraction of selected pharmaceuticals, followed by liquid desorption and liquid chromatography coupled to mass spectrometry. Several conditions and parameters that affect the extraction procedure (extraction time, sample pH, sample volume, extraction temperature, and addition of salt and organic modifier) were evaluated for suitable extraction efficiency. The optimised method (sample volume, 20 mL; sample pH, 9; extraction time, 150 min; and desorption time, 15 min; in an acetonitrile and methanol [50 : 50 v/v] mixture at 50 degrees C, without any added modifier) was validated and provided recoveries above 80% for 12 analytes, and for 6 analytes they were between 45% and 65%, while for another 6 analytes the recoveries were below 25%. The method provided a wide linear range (mainly 1.25-1250 ng L-1, R-2 > 0.99) with very low limits of quantification for all analytes (1.25-5.0 ng L-1). The method was used to test 15 wastewater samples and 22 out of 24 monitored pharmaceuticals were detected, generally in concentrations below 200 ng L-1.
机译:最近被归类为新兴污染物的新有机污染物。这些是化学活性化合物,可能对环境生物以及人类造成风险。如今,分离和分析技术能够以极低的浓度检测和定量。我们旨在开发和优化一种最小化(有机)溶剂消耗和小型化的新方法,并通过使用搅拌棒吸附萃取所选药物的液体解吸和液相色谱法偶联至质谱法,简化样品制备。评价影响提取过程的几种条件和参数(提取时间,样品pH,样品体积,提取温度和添加盐和有机改性剂),以获得合适的提取效率。优化方法(样品体积,20mL;样品pH值,9;提取时间,150分钟;和解吸时间,15分钟;在乙腈和甲醇[50:50V / V]混合物,50℃,无任何添加经过验证的改性剂,并提供了120%以上的回收率,对于12分析物,6分析物,它们在45%和65%之间,而另外6分析物回收率低于25%。该方法提供了宽线性范围(主要是1.25-1250ng L-1,R-2> 0.99),所有分析物的定量极限非常低(1.25-5.0 ng l-1)。该方法用于测试15种废水样品,并检测24种监测药物中的22个,通常以低于200ng L-1的浓度。

著录项

  • 来源
    《Analytical methods》 |2017年第36期|共12页
  • 作者单位

    Univ Ljubljana Fac Pharm Dept Biopharmaceut &

    Pharmacokinet Askerceva 7 Ljubljana 1000 Slovenia;

    Univ Ljubljana Fac Pharm Dept Biopharmaceut &

    Pharmacokinet Askerceva 7 Ljubljana 1000 Slovenia;

    Univ Ljubljana Fac Pharm Dept Biopharmaceut &

    Pharmacokinet Askerceva 7 Ljubljana 1000 Slovenia;

    Univ Ljubljana Fac Pharm Dept Biopharmaceut &

    Pharmacokinet Askerceva 7 Ljubljana 1000 Slovenia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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