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通过空气采样和热解吸气相色谱-质谱法检测和定量空气中痕量的呋虫胺浓度。

Detection and quantification of trace airborne transfluthrin concentrations via air sampling and thermal desorption gas chromatography-mass spectrometry.

机构信息

University of Central Florida College of Medicine, Department of Internal Medicine, 6900 Lake Nona Blvd, Orlando, FL, 32827, USA.

PerkinElmer Inc., 940 Winter St, Waltham, MA, 02451, USA.

出版信息

J Chromatogr A. 2018 Oct 26;1573:156-160. doi: 10.1016/j.chroma.2018.08.066. Epub 2018 Sep 5.

Abstract

A rapid thermal desorption-gas chromatography-electron ionization-mass spectrometry (TD-GC-EI-MS) method for airborne transfluthrin detection is studied. Active air sampling of 9 L over 1 h at 23 °C through a Tenax®-loaded tube resulted in efficient capture of airborne transfluthrin. Subsequent thermal desorption was employed to achieve an LOD of 2.6 ppq (parts per quadrillion by volume). A minimum primary desorption temperature of 300 °C is necessary for optimal recovery of sample from the Tenax® adsorbent. The matrix effects of indoor air lead to an error of 10.9% and 10.5% recovery of sample (10 pg and 100 pg loaded tubes, respectively). The linear range was 74-74,000 ppq with a correlation coefficient of 0.9981. Active air sampling of a novel passive release device revealed a ∼150 pg/L airborne concentration gradient over 1 m, providing spatial characterization of the device's performance. This efficient method allows for the remote collection of samples and rapid analysis of airborne transfluthrin from industrial applications, optimization studies of commercial products as well as domestic/household monitoring.

摘要

研究了一种用于检测空气中氟氯菊酯的快速热解吸-气相色谱-电子电离-质谱法(TD-GC-EI-MS)。通过 Tenax®负载管在 23°C 下以 9L/h 的速率进行 1 小时的主动空气采样,可有效捕获空气中的氟氯菊酯。随后的热解吸可实现 2.6ppq(体积每万亿分率)的检测限。为了从 Tenax®吸附剂中最佳地回收样品,最小的初级解吸温度需要达到 300°C。室内空气的基质效应导致样品的回收率分别为 10.9%和 10.5%(分别为加载了 10pg 和 100pg 的管)。线性范围为 74-74,000ppq,相关系数为 0.9981。对一种新型被动释放装置的主动空气采样显示,在 1m 内空气中的浓度梯度约为 150pg/L,从而对该装置的性能进行了空间特征描述。这种高效的方法可用于远程采集样品并快速分析工业应用中的空气中氟氯菊酯、优化商业产品以及家庭/住宅监测。

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