Breath Research Institute, Austrian Academy of Sciences, Rathausplatz 4, A-6850 Dornbirn, Austria.
Analyst. 2013 Mar 7;138(5):1405-18. doi: 10.1039/c2an36193k.
The stability of 41 selected breath constituents in three types of polymer sampling bags, Tedlar, Kynar, and Flexfilm, was investigated using solid phase microextraction and gas chromatography mass spectrometry. The tested molecular species belong to different chemical classes (hydrocarbons, ketones, aldehydes, aromatics, sulphurs, esters, terpenes, etc.) and exhibit close-to-breath low ppb levels (3-12 ppb) with the exception of isoprene, acetone and acetonitrile (106 ppb, 760 ppb, 42 ppb respectively). Stability tests comprised the background emission of contaminants, recovery from dry samples, recovery from humid samples (RH 80% at 37 °C), influence of the bag's filling degree, and reusability. Findings yield evidence of the superiority of Tedlar bags over remaining polymers in terms of background emission, species stability (up to 7 days for dry samples), and reusability. Recoveries of species under study suffered from the presence of high amounts of water (losses up to 10%). However, only heavier volatiles, with molecular masses higher than 90, exhibited more pronounced losses (20-40%). The sample size (the degree of bag filling) was found to be one of the most important factors affecting the sample integrity. To sum up, it is recommended to store breath samples in pre-conditioned Tedlar bags up to 6 hours at the maximum possible filling volume. Among the remaining films, Kynar can be considered as an alternative to Tedlar; however, higher losses of compounds should be expected even within the first hours of storage. Due to the high background emission Flexfilm is not suitable for sampling and storage of samples for analyses aiming at volatiles at a low ppb level.
采用固相微萃取和气相色谱-质谱联用技术研究了三种聚合物采样袋(特氟龙、金纳和菲力膜)中 41 种选定的呼吸成分的稳定性。测试的分子种类属于不同的化学类别(碳氢化合物、酮、醛、芳烃、硫、酯、萜烯等),除异戊二烯、丙酮和乙腈(分别为 106 ppb、760 ppb 和 42 ppb)外,均具有接近呼吸的低 ppb 水平(3-12 ppb)。稳定性测试包括污染物的背景排放、从干燥样品中的回收、从 80%相对湿度(37°C)的潮湿样品中的回收、袋子填充程度的影响以及可重复使用性。研究结果表明,在背景排放、物质稳定性(干燥样品可达 7 天)和可重复使用性方面,特氟龙袋优于其他聚合物。研究中各物质的回收率受到大量水的存在的影响(损失高达 10%)。然而,只有分子量高于 90 的较重挥发性物质才表现出更明显的损失(20-40%)。样本量(袋子的填充程度)是影响样品完整性的最重要因素之一。总之,建议将呼吸样本储存在预处理过的特氟龙袋中,最大填充体积下最多可储存 6 小时。在其余的薄膜中,金纳可以作为特氟龙的替代品;然而,即使在储存的最初几个小时内,化合物的损失也会更高。由于背景排放较高,菲力膜不适合用于挥发性物质低 ppb 水平的采样和储存。