首页> 外文期刊>Environmental Pollution >Determination of benzotriazole and benzothiazole derivatives in human urine by eco-friendly deep eutectic solvent-based ultrasound-assisted liquid-liquid microextraction followed by ultrahigh performance liquid chromatography quadrupole-time-of-flight mass spectrometry
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Determination of benzotriazole and benzothiazole derivatives in human urine by eco-friendly deep eutectic solvent-based ultrasound-assisted liquid-liquid microextraction followed by ultrahigh performance liquid chromatography quadrupole-time-of-flight mass spectrometry

机译:生态型深型溶剂基超声辅助液 - 液微萃取液相尿液中苯并三唑和苯并噻唑衍生物的测定,然后进行超高的性能液相色谱法中飞行时的飞行时间质谱法

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摘要

Benzotriazole (BTRs) and benzothiazole (BTHs) derivatives have been classified as high production volume pollutants of emerging concern. The present work describes a rapid and simple process using an eco-friendly deep eutectic solvent (DES) based-ultrasound-assisted liquid-liquid microextraction (DES-UALLME) technique to effectively extract five BTRs and four BTHs in human urine samples, and then applying ultrahigh-performance liquid chromatography and electrospray ionization (+)-quadrupole time-of-flight mass spectrometry (UHPLC-ESI (+)-QTOF-MS) for their detection and quantification. DESs are a group of novel & ldquo;green & rdquo; solvents, and their applications in sample pretreatment are appropriate for the requirements for green chemistry, environmental protection and sustainable development. Furthermore, to overcome the challenges related to different experimental conditions, multivariate experimental design approaches conducted by means of a multilevel categorical design and a Box-Behnken Design were applied to screen and optimize parameters that have significant influences on the extraction efficiency of DES-UALLME. After optimization, the method was validated and shown to possess low limits of quantitation (LOQs; 0.4 - 9 ng mL-1), high precision (3 & ndash;12%), and high accuracy (mean spiked recoveries; 80 & ndash;101%). The developed method was then successfully applied for the analysis of BTRs and BTHs in human urine samples. Interestingly, 5,6-dimethyl-1H-benzotriazole (XTR) was detected in almost all of the urine samples, which correlates with its high production and widely applications in industry processes and consumer products in Taiwan. These target analytes could potentially be used as biomarkers to assess exposure of BTRs and BTHs in biomonitoring programs and studies.
机译:苯并三唑(BTRS)和苯并噻唑(BTHS)衍生物被归类为新兴担忧的高产量污染物。本作本作使用基于生态友好的深度共晶溶剂(DES)的超声辅助液 - 液微萃取(DES-UALLME)技术来描述快速简便的方法,以有效提取5个BTR和四个BTH在人尿样中,然后施加超高效液相色谱和电喷雾电离(+) - 四极其飞行时间质谱(UHPLC-ESI(+) - QTOF-MS)的检测和定量。 Dess是一群新颖“绿色”溶剂及其在样品预处理中的应用适用于绿色化学,环境保护和可持续发展的要求。此外,为了克服与不同的实验条件相关的挑战,通过多级分类设计和箱BEHNKEN设计进行的多变量实验设计方法应用于筛选并优化对DES-UALLME提取效率产生重大影响的参数。优化后,该方法经过验证并显示出低定量限制(LOQ; 0.4-9 Ng ML-1),高精度(3&Ndash; 12%),以及高精度(平均尖刺回收; 80&Ndash; 101%)。然后成功地应用于人尿样中的BTR和BTH的分析。有趣的是,在几乎所有尿液样品中检测到5,6-二甲基-1H-苯并三唑(XTR),其与其在台湾工业流程和消费产品中的高生产和广泛应用相关。这些靶分析物可能被用作生物标志物,以评估BTR的暴露和BTH在生物监测计划和研究中。

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