4.6 Article

Sensitive determination of illicit drugs in wastewater using enrichment bag-based liquid-phase microextraction and liquid-chromatography tandem mass spectrometry

期刊

JOURNAL OF CHROMATOGRAPHY A
卷 1661, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.chroma.2021.462684

关键词

Illicit drugs; Environmental sample; Liquid-phase membrane extraction; Enrichment bag; LC-MS; MS

资金

  1. National Natural Science Foundation of China [21876055, 81801875]
  2. Shanghai Key Laboratory of Forensic Medicine, Key Laboratory of Forensic Expertise of the Ministry of Justice [KF202106]
  3. Fundamental Research Funds for the Central Universities in China [2019kfyXJJS023]
  4. Science, Technology and Innovation Commission of Shenzhen Municipality [JCYJ20190809101013454]
  5. Hubei Provincial Natural Science Foundation of China [2019CFB439]

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The study introduced an enrichment bag-based liquid-phase microextraction (EB-LPME) system for isolating and enriching illicit drugs from wastewater, showing high recoveries and enrichment factors. Compared to hollow fiber-LPME (HF-LPME), EB-LPME demonstrated larger effective SLM area and higher extraction recovery rates.
A B S T R A C T To concentrate trace level of analytes in complex wastewater, sample preparation is necessary prior to instrumental analysis. In this work, an enrichment bag-based liquid-phase microextraction (EB-LPME) system was therefore proposed for the first time to isolate and enrich the illicit drugs (am-phetamine, methamphetamine, 3,4-methylenedioxymethamphetamine (MDMA), ketamine, codeine and fentanyl) from wastewater. Under the optimum EB-LPME conditions, the recoveries of the model illicit drugs were 40-93% with enrichment factors up to 93. The optimized EB-LPME was compared to hollow fiber-LPME (HF-LPME) in terms of the thickness of the supported liquid membrane (SLM), the effective SLM area, extraction recovery and mass transfer flux. Compared with HF-LPME, EB-LPME possesses larger effective SLM area, and provided higher extraction recovery. In addition, EB-LPME provided larger mass transfer flux than HF-LPME, which was mainly due to the differences in SLM thickness. Therefore, SLM thickness was identified as the main mass transfer flux-determining factor experimentally. The matrix ef-fect of EB-LPME was evaluated using liquid chromatography-tandem mass spectrometry (LC-MS/MS), and excellent sample clean-up was confirmed. Subsequently, EB-LPME-LC-MS/MS was validated with satisfac-tory results, and the detection of limit of the proposed method was in the range of 0.3-8.7 ng/L. Finally, with standard addition method, EB-LPME-LC-MS/MS was successfully applied for the determination of the model drugs in a local hospital wastewater from Wuhan, China. This study clearly showed that EB-LPME displayed great potential as an efficient sample preparation method for isolation and enrichment of the drugs/pollutants from complex environmental samples for wastewater-based epidemiology in the near future. (c) 2021 Elsevier B.V. All rights reserved.

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