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Quantitation Reference Compounds and VOC Recoveries from Soils By Purge-and-Trap GC/MS

机译:通过吹扫捕集GC / ms从土壤中定量参比化合物和VOC回收率

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摘要

Unquantified volatile organic compound (VOC) losses occur in every phase of VOC determination including sample collection, transport, storage, preparation, and analysis. Current quality assurance/quality control measures, such as surrogate spikes and internal standards, do not account for losses that occur during sample handling nor do they account for soil matrix effects. An alternate approach, the quantitation reference compound (QRC) approach, is presented that involves direction injection of the QRCs onto the soil matrix to account for any matrix effects and losses during subsequent processing steps prior to sample analysis. Final VOC quantitation is based on the QRC instead of the internal standard, which is used strictly to monitor instrument performance. Quantifying VOCs using the QRC approach on three spiked performance evaluation soils and one unprocessed spiked field soil resulted in target compound relative recoveries of 93-105%. In contrast, using the current quantitation approach, target compound recoveries were only 2-27%. Precision between the two approaches was equivalent (on an absolute basis) with relative standard deviations of 2-15% using the QRC approach.
机译:未量化的挥发性有机化合物(VOC)损失会在VOC测定的每个阶段发生,包括样品收集,运输,储存,制备和分析。当前的质量保证/质量控制措施,例如替代尖峰和内部标准,既没有考虑样品处理过程中发生的损失,也没有考虑土壤基质的影响。提出了另一种方法,定量参考化合物(QRC)方法,该方法涉及将QRC定向注入土壤基质中,以解决样品分析之前后续处理步骤中任何基质效应和损失。最终的VOC定量基于QRC而不是内部标准,内部标准严格用于监控仪器性能。使用QRC方法对三种加标性能评估土壤和一种未经处理的加标野外土壤进行VOC定量分析,目标化合物的相对回收率为93-105%。相反,使用当前的定量方法,目标化合物的回收率仅为2-27%。使用QRC方法时,两种方法之间的精度相当(绝对值),相对标准偏差为2-15%。

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