首页> 外文期刊>Analytical chemistry >Comprehensive Target Analysis for 484 Organic Micropollutants in Environmental Waters by the Combination of Tandem Solid-Phase Extraction and Quadrupole Time-of-Flight Mass Spectrometry with Sequential Window Acquisition of All Theoretical Fragment-Ion Spectra Acquisition
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Comprehensive Target Analysis for 484 Organic Micropollutants in Environmental Waters by the Combination of Tandem Solid-Phase Extraction and Quadrupole Time-of-Flight Mass Spectrometry with Sequential Window Acquisition of All Theoretical Fragment-Ion Spectra Acquisition

机译:串联固相萃取和四极其飞行时间质谱法组合对环境水中484种有机微量舒适性的综合目标分析,与所有理论碎片 - 离子谱采集的顺序窗口采集

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摘要

There are many thousands of chemicals in use for a wide range of purposes, and highly efficient analytical methods are required to monitor them for protection of the environment. In order to cope with this difficult task we developed a novel, comprehensive method for 484 substances in water samples. In this method target chemicals were extracted by tandem SPE and then determined by LC-QTOF-MS-SWATH. Targets were unambiguously identified using retention times, accurate masses of a precursor and two product ions, their ion ratios, and accurate MS/MS spectrum. Quantitation was achieved by the internal standard method using a precursor ion. Results of recovery tests at two concentrations (50 and 500 ng L-1) showed average recoveries of 87.5% and 87.0% (RSD, 9.1% and 9.4%), respectively. Limits of detection of one-half of the targets were below 1.0 ng L-1. The method was applied to the influent and effluent of a sewage treatment plant, and around 100 chemicals were detected. Results of examination on matrix effects using their extracts spiked with 209 pesticides showed that the ratios of detected amounts between the extracts and the standard solution were 89.8% (influent) and 91.7% (effluent), respectively. In addition, investigation on the stability of calibration curves by injecting the same standards for 1 year showed that their quantitative results did not change; average accuracy was 103.3% (RSD, 10.0%), indicating that the calibration curves can be used for an extended period of time without calibration, and quantitative retrospective analysis can be done after creating calibration curves for new targets.
机译:有数以千计的化学品用于广泛的目的,并且需要高效的分析方法来监测它们以保护环境。为了应对这项艰巨的任务,我们开发了一种新的水样中484种物质的新型综合方法。在该方法中,通过串联SPE提取靶分精,然后通过LC-QTOF-MS-SWATH确定。使用保留时间,精确的前体和两种产物离子,它们的离子比和精确的MS / MS光谱来明确识别靶标。通过使用前体离子的内标方法实现定量。两种浓度(50和500ng L-1)的回收试验结果分别显示出87.5%和87.0%(RSD,9.1%和9.4%)的平均回收率。检测靶标的极限低于1.0 ng L-1。将该方法应用于污水处理厂的流水和流出物,检测到约100个化学物质。使用其提取物用209种农药的提取物检测结果结果表明,检测量与标准溶液之间的检测量分别为89.8%(流水)和91.7%(流出物)。此外,还通过注入相同标准1年来调查校准曲线的稳定性表明,它们的定量结果没有变化;平均精度为103.3%(RSD,10.0%),表明校准曲线可用于延长的时间段而无需校准,并且可以在为新目标创建校准曲线后进行定量回顾性分析。

著录项

  • 来源
    《Analytical chemistry》 |2019年第12期|共7页
  • 作者

    Kadokami Kiwao; Ueno Daisuke;

  • 作者单位

    Univ Kitakyushu Inst Environm Sci &

    Technol 1-1 Hibikino Kitakyushu Fukuoka Japan;

    Saga Univ Grad Sch Agr 1 Honjyo Honjo Saga Japan;

  • 收录信息
  • 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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