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GC columns as micro-air samplers for the quantitative analysis of naphthalene vapours

机译:GC柱作为微空气采样器,用于萘蒸汽的定量分析

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摘要

Although linked to a number of adverse health effects, studies of naphthalene are lacking in the exposure-relevant literature. This compound, a major by-product of the incomplete combustion of most organic materials (traffic vehicle exhaust, power generation, tobacco smoke, etc.), has characteristics that are in between those of volatile and semivolatile organic compounds (VOCs and SVOCs) and has consequently often been excluded from studies of both compound classes. A new, highly quantitative, rapid and spatially well-resolved micro-sampling method was developed for the sampling of naphthalene vapours in indoor, outdoor and personal air. The method is based on GC capillary columns as air samplers, solvent extraction and GC-MS analysis. For the first time, naphthalene concentrations were quantitatively determined at the surface level (around the boundary layer) and at 1 mm height intervals above an emitting surface. Minimal sampling flow rates of 5 mL min(-1) were applied to reduce any geometrical or dynamical disturbance to the environmental air flow regime to a minimum. Toluene was highly efficient, precise and easy to apply in the extraction of the target compound from the GC column sampler. Method quantification was confirmed using a unique calibrated vapour generator based on an inert GC inlet. Using this source, a 13 ng L-1 limit of quantitation (LOQ) with 90% mass recovery over a linear dynamic range of five orders of magnitude in high precision and accuracy of +/- 13% and 35%, respectively, were determined and validated. The applicability and flexibility of the method was demonstrated by investigating the vapour concentration profiles generated "0"-20 mm above a naphthalene-emitting surface in outdoor air. The concept introduced in this research could be easily adopted for the reliable, sensitive and quantitative monitoring of other VOCs and SVOCs in different micro-spaces for various applications.
机译:虽然与许多不良健康效果相关,但在曝光相关文献中缺乏对萘的研究。该化合物,大多数有机材料的不完全燃烧的主要副产物(交通车辆排气,发电,烟草烟雾等),具有挥发性和半挥发性有机化合物(VOC和SVOC)之间的特征。因此,经常被排除在两种复合类别的研究之外。开发了一种新的,高度定量,快速和空间良好的微采样方法,用于室内,室外和个人空气中的萘蒸汽取样。该方法基于GC毛细管柱作为空气采样器,溶剂提取和GC-MS分析。首次,在表面水平(边界层周围)和在发射表面上方的1mm高度间隔处定量地测定萘浓度。应用5mL min(-1)的最小采样流速,以将环境空气流量的任何几何或动态干扰降至最低。甲苯高效,精确且易于在GC柱采样器中提取靶化合物的萃取。使用基于惰性GC入口的独特校准的蒸汽发生器确认方法定量。使用该来源,测定具有90%的定量限制(LOQ),具有90%的质量恢复,在高精度和精度为+/- 13%和35%的高精度,+/- 13%和35%的线性动态恢复并验证。通过研究在室外空气中产生“0”-20mm的萘-20mm至萘发射表面上方的蒸气浓度曲线来证明该方法的适用性和灵活性。本研究中介绍的概念可以很容易地采用不同的微空间中其他VOC和SVOC的可靠,灵敏和定量监测,用于各种应用。

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  • 来源
    《Analytical methods》 |2017年第3期|共9页
  • 作者单位

    Israel Inst Biol Res IIBR Dept Analyt Chem POB 19 IL-74100 Ness Ziona Israel;

    Israel Inst Biol Res IIBR Dept Analyt Chem POB 19 IL-74100 Ness Ziona Israel;

    Israel Inst Biol Res IIBR Dept Analyt Chem POB 19 IL-74100 Ness Ziona Israel;

    Israel Inst Biol Res IIBR Dept Analyt Chem POB 19 IL-74100 Ness Ziona Israel;

    Israel Inst Biol Res IIBR Dept Analyt Chem POB 19 IL-74100 Ness Ziona Israel;

    Israel Inst Biol Res IIBR Dept Analyt Chem POB 19 IL-74100 Ness Ziona Israel;

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  • 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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