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首页> 外文期刊>Journal of separation science. >Full automatic determination of chlorophenols in water using solid-phase microextraction/on-fiber derivatization and gas chromatography-mass spectrometry
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Full automatic determination of chlorophenols in water using solid-phase microextraction/on-fiber derivatization and gas chromatography-mass spectrometry

机译:固相微萃取/纤维衍生化和气相色谱-质谱法全自动测定水中的氯酚

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摘要

A fully automated combination of solid-phase microextraction and on-fiber derivatization coupled with gas chromatography-mass spectrometry was developed to determine 17 chlorophenols in aqueous samples. Optimal parameters for the automated process, such as fiber coating (polyacrylate), derivatization reagent (N,O-bis(trimethylsilyl) trifluoroacetamide), extraction time (60 min), derivatization time (5 min), incubation temperature (35°C), sample pH (3), and ionic strength (300 g L ~(-1) of NaCl), as well as desorption time (5 min) and desorption temperature (270°C) were established. The whole procedure took only 90 min and was performed automatically. The shortcomings of silylation derivatives, like incompleteness and instability, were overcome by using solid-phase microextraction on-fiber silylation in this study. The results from both pure water and river water samples showed that the method had a good linearity (r ~2 = 0.9993-1.0000), ranging from 0.01 to 100 μg L ~(-1). The related standard deviations were between 3.6 and 10.0%. The limits of detections and qualifications ranged from 0.03 to 3.11 ng L ~(-1) and 0.09 to 10.4 ng L ~(-1) for the CPs, respectively. The proposed method is superior to traditional solid phase extraction procedure.
机译:建立了固相微萃取和纤维衍生化与气相色谱-质谱联用的全自动组合方法,以确定含水样品中的17种氯酚。自动化过程的最佳参数,例如纤维涂层(聚丙烯酸酯),衍生试剂(N,O-双(三甲基甲硅烷基)三氟乙酰胺),萃取时间(60分钟),衍生时间(5分钟),孵育温度(35°C) ,样品的pH(3)和离子强度(300 g L〜(-1)的NaCl)以及解吸时间(5分钟)和解吸温度(270°C)均已建立。整个过程仅花费90分钟,并且是自动执行的。在这项研究中,使用固相微萃取纤维硅烷化可以克服甲硅烷基化衍生物的缺点,如不完全性和不稳定性。纯水和河水样品的结果表明,该方法具有良好的线性(r〜2 = 0.9993-1.0000),范围为0.01至100μgL〜(-1)。相关的标准偏差在3.6和10.0%之间。 CP的检出限和鉴定限分别为0.03至3.11 ng L〜(-1)和0.09至10.4 ng L〜(-1)。所提出的方法优于传统的固相萃取程序。

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