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Fizzy Extraction of Volatile and Semivolatile Compounds into the Gas Phase

机译:汽提挥发性和半挥发性化合物的气相萃取

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摘要

Extraction of volatile and semivolatile compounds from liquid matrixes with high yields, and transferring the extracts to detectors in real time, is challenging. Common extraction procedures involve heating the samples to release the analytes to the gas phase and, in some cases, trapping the gas-phase analytes into sorbents or containers. Here, we propose a new method for fast extraction of volatile and semivolatile compounds from liquid matrixes. This method involves dissolution of a carrier gas in the liquid sample by applying a moderate overpressure (similar to 150 kPa) and stirring the sample. An abrupt decompression of the extraction chamber leads to effervescence. In this step, many bubbles are instantly formed in the sample matrix. The dissolved carrier gas as well as dissolved volatiles are liberated into the headspace of the extraction chamber within a short period of time (few seconds). The gaseous effluent of the extraction chamber is immediately transferred to the online detector; in this case, an atmospheric pressure chemical ionization interface of a triple quadrupole mass spectrometer. The fast release of the gas-phase extract gives rise to a high signal recorded by the detector; several times higher than the signal recorded during direct infusion of headspace vapors without fizzy extraction. This feature provides the means to detect and quantify analytes present in solutions in a short period of time. Here we show that fizzy extraction is suitable for analysis of volatile/semivolatile compounds present in various samples, including those containing complex matrixes.
机译:从液体基质中以高收率提取挥发性和半挥发性化合物,并将提取物实时转移至检测器,具有挑战性。常见的提取程序包括加热样品以将分析物释放到气相中,并且在某些情况下,将气相分析物捕获到吸附剂或容器中。在这里,我们提出了一种从液体基质中快速提取挥发性和半挥发性化合物的新方法。该方法包括通过施加适度的超压(类似于150 kPa)并搅拌样品将载气溶解在液体样品中。提取室的突然减压会导致泡腾。在此步骤中,许多气泡立即在样品基质中形成。溶解的载气以及溶解的挥发物在短时间内(几秒钟)释放到萃取室的顶部空间。提取室的气体流出物立即转移到在线检测器;在这种情况下,是三重四极杆质谱仪的大气压化学电离界面。气相萃取物的快速释放引起检测器记录的高信号。比直接注入顶空蒸气而不起毛的过程中记录的信号高几倍。此功能提供了一种在短时间内检测和定量溶液中存在的分析物的方法。在这里,我们显示了碳酸泡沫萃取适用于分析各种样品(包括含有复杂基质的样品)中存在的挥发性/半挥发性化合物。

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