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Field Portable Low Temperature Porous Layer Open Tubular Cryoadsorption Headspace Sampling and Analysis Part II: Applications

机译:现场便携式低温多孔层开式管状低温吸附顶空采样和分析第二部分:应用

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摘要

This paper details the sampling methods used with the field portable porous layer open tubular cryoadsorption (PLOT-cryo) approach, described in Part I of this two-part series, applied to several analytes of interest. We conducted tests with coumarin and 2,4,6-trinitrotoluene (two solutes that were used in initial development of PLOT-cryo technology), naphthalene, aviation turbine kerosene, and diesel fuel, on a variety of matrices and test beds. We demonstrated that these analytes can be easily detected and reliably identified using the portable unit for analyte collection. By leveraging efficiency-boosting temperature control and the high flow rate multiple capillary wafer, very short collection times (as low as 3 s) yielded accurate detection. For diesel fuel spiked on glass beads, we determined a method detection limit below 1 ppm. We observed greater variability among separate samples analyzed with the portable unit than previously documented in work using the laboratory-based PLOT-cryo technology. We identify three likely sources that may help explain the additional variation: the use of a compressed air source to generate suction, matrix geometry, and variability in the local vapor concentration around the sampling probe as solute depletion occurs both locally around the probe and in the test bed as a whole. This field-portable adaptation of the PLOT-cryo approach has numerous and diverse potential applications.
机译:本文详细介绍了由现场便携式多孔层开放式管式低温吸附(PLOT-cryo)方法使用的采样方法,该方法分为两部分系列的第一部分,该方法适用于多种目标分析物。我们在各种基质和测试床上用香豆素和2,4,6-三硝基甲苯(用于PLOT-cryo技术的最初开发的两种溶质),萘,航空涡轮机煤油和柴油进行了测试。我们证明了使用便携式单元进行分析物收集可以轻松检测并可靠地识别这些分析物。通过利用提高效率的温度控制和高流速的多个毛细管晶片,非常短的收集时间(低至3 s)可实现准确的检测。对于加标在玻璃珠上的柴油,我们确定了方法检测限低于1 ppm。我们观察到,与使用基于实验室的PLOT-cryo技术进行的以前的工作相比,使用便携式单元分析的单独样本之间的变异性更大。我们确定了三种可能有助于解释额外变化的可能原因:使用压缩空气源产生吸力,基质几何形状以及采样探头周围局部蒸汽浓度的变化,因为溶质耗竭同时发生在探头周围和内部。整体测试床。 PLOT-cryo方法的这种现场便携式适应方案具有众多多样的潜在应用。

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