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开发一种用于环境水样中药物和个人护理产品的酒吧吸附微萃取-大体积进样-气相色谱-质谱联用方法。

Development of a bar adsorptive micro-extraction-large-volume injection-gas chromatography-mass spectrometric method for pharmaceuticals and personal care products in environmental water matrices.

机构信息

Faculty of Sciences, Chemistry and Biochemistry Department and Center of Chemistry and Biochemistry, University of Lisbon, Campo Grande Ed. C8, 1749-016 Lisbon, Portugal.

出版信息

Anal Bioanal Chem. 2012 Jan;402(3):1355-64. doi: 10.1007/s00216-011-5515-0. Epub 2011 Nov 11.

Abstract

The combination of bar adsorptive micro-extraction using activated carbon (AC) and polystyrene-divinylbenzene copolymer (PS-DVB) sorbent phases, followed by liquid desorption and large-volume injection gas chromatography coupled to mass spectrometry, under selected ion monitoring mode acquisition, was developed for the first time to monitor pharmaceutical and personal care products (PPCPs) in environmental water matrices. Assays performed on 25 mL water samples spiked (100 ng L(-1)) with caffeine, gemfibrozil, triclosan, propranolol, carbamazepine and diazepam, selected as model compounds, yielded recoveries ranging from 74% to 99% under optimised experimental conditions (equilibrium time, 16 h (1,000 rpm); matrix characteristics: pH 5, 5% NaCl for AC phase; LD: methanol/acetonitrile (1:1), 45 min). The analytical performance showed good precision (RSD < 18%), convenient detection limits (5-20 ng L(-1)) and excellent linear dynamic range (20-800 ng L(-1)) with remarkable determination coefficients (r(2) > 0.99), where the PS-DVB sorbent phase showed a much better efficiency. By using the standard addition methodology, the application of the present analytical approach on tap, ground, sea, estuary and wastewater samples allowed very good performance at the trace level. The proposed method proved to be a suitable sorption-based micro-extraction alternative for the analysis of priority pollutants with medium-polar to polar characteristics, showing to be easy to implement, reliable, sensitive and requiring a low sample volume to monitor PPCPs in water matrices.

摘要

首次开发了使用活性炭 (AC) 和聚苯乙烯-二乙烯基苯共聚物 (PS-DVB) 吸附剂相的棒状吸附微萃取,再结合液体解吸和大体积进样气相色谱 - 质谱联用,在选择离子监测模式下进行采集,用于监测环境水样中的药物和个人护理产品 (PPCPs)。在优化实验条件下(平衡时间 16 小时(1000rpm);基质特性:pH5、5%NaCl 用于 AC 相;LD:甲醇/乙腈(1:1),45 分钟),对 25mL 加标(100ngL(-1)) 的水样(咖啡因、吉非罗齐、三氯生、普萘洛尔、卡马西平和地西泮作为模型化合物)进行检测,回收率在 74%至 99%之间。分析性能表现出良好的精密度(RSD<18%)、方便的检测限(5-20ngL(-1)) 和出色的线性动态范围(20-800ngL(-1)),具有显著的决定系数(r(2)>0.99),其中 PS-DVB 吸附剂相表现出更好的效率。通过使用标准添加法,该分析方法在自来水、地下水、海水、河口和废水样品中的应用可实现痕量水平的优异性能。该方法被证明是一种适用于分析具有中等极性到极性特征的优先污染物的基于吸附的微萃取替代方法,具有易于实施、可靠、灵敏且需要低样品体积的特点,可用于监测水中的 PPCPs。

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