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Design and validation of portable SPME devices for rapid field airsampling and diffusion based calibration

机译:便携式SPME设备的设计和验证,用于基于现场的快速空气采样和扩散

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The use of SPME fibers coated with porous polymer solid phases for quantitative purposes is limited due to effects such as interanalyte displacement and competitive adsorption. For air analysis, these problems can be averted by employing short exposure times to air samples flowing around the fiber. In these conditions, a simple mathematical model allows quantification without the need of calibration curves. This work describes two portable dynamic air sampling (PDAS) devices designed for application of this approach to nonequilibrium SPME sampling and determination of airborne volatile organic compounds (VOCs). The use of a PDAS device resulted in greater adsorbed VOC mass compared to the conventional SPME extraction in static air for qualitative screening of live plant aromas and contaminants in indoor air. For all studied air samples, an increase in the number of detected compounds and sensitivity was also observed. Quantification of aromatic VOCs in indoor air was also carried out using this approach and the PDAS/SPME device. Measured VOC concentrations were in lour parts-per-billion by volume range using only 30-s SPME fiber exposure and were comparable to those obtained with a standard NIOSH method 1501. The use of PDAS/SPME devices reduced the total air sampling and analysis time by several orders of magnitude compared to the NIOSH 1501 method.
机译:由于诸如分析物间的置换和竞争性吸附等效应,限制了将涂覆有多孔聚合物固相的SPME纤维用于定量目的。对于空气分析,可以通过在纤维周围流动的空气样品中采用较短的暴露时间来避免这些问题。在这些条件下,简单的数学模型无需校准曲线即可进行定量分析。这项工作描述了两个便携式动态空气采样(PDAS)设备,这些设备旨在将这种方法应用于非平衡SPME采样和确定空气中挥发性有机化合物(VOC)。与传统的静态空气中SPME提取相比,PDAS设备的使用产生了更大的吸附VOC量,用于定性筛选室内空气中的活植物香气和污染物。对于所有研究的空气样品,还观察到了检测到的化合物数量和灵敏度的增加。还使用这种方法和PDAS / SPME设备对室内空气中的芳香族VOC进行了定量。仅使用30秒的SPME纤维暴露,测得的VOC浓度按体积百万分之十亿分之十亿分之十,与使用标准NIOSH方法1501获得的挥发性有机物相当。与NIOSH 1501方法相比,降低了几个数量级。

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