开发多孔碳/聚二甲基硅氧烷薄膜固相微萃取膜,方便挥发性有机物的现场采样

ty10086 提交于 周三, 08/25/2021 - 16:16
文章英文标题
Development of porous carbon/polydimethylsiloxane thin-film solid-phase microextraction membranes to facilitate on-site sampling of volatile organic compounds
正文
本文介绍了基于Carboxen / PDMS薄膜-固相微萃取( TF-SPME )技术的热管式空气和人体呼吸样品中挥发性有机物( VOCs )的检测方法。采用负载Car / PDMS的碳网片和符合可持续化学原理的纳米碳/聚二甲基硅氧烷( NCar / PDMS )吸附剂开发了所提TF-SPME膜。采用体视显微镜系统检查膜表面,根据不同颗粒比例( 1 %、2.5 %、5 %、10 %、15 % )的影响进行评价。结果表明,与McReynolds标准相比,高颗粒比的膜具有更高的萃取效率,但含碳量为10 %和15 %的膜易碎,背景出血率较高。因此,5 %颗粒比的吸附剂被认为是最优的,并且发现卡伯恩涂层能够捕获最高的McReynolds标准量。此外,Car / PDMS和NCar / PDMS具有良好的重复性,对于所有被测分析物,其膜内相对标准偏差分别在可接受范围内-1.2 % ~ 21.9 %和1.7 % ~ 20 %。最后,将所制备的膜用于热水浴顶空氯化副产物(氯仿和二氯乙腈)的检测,并利用手持式气相色谱-质谱联用仪( GC-MS )对其进行了鉴定。在第二次应用中,使用台式GC-MS系统采样和鉴定了33种人体呼吸样品中的VOCs。
文章内容(英文)
This work presents the development of carboxen/polydimethylsiloxane (Car/PDMS) based thin film-solid phase microextraction (TF-SPME) method capable of identifying volatile organic compounds (VOCs) in hot-tub-air and human-breath samples. The proposed TF-SPME membranes were developed using carbon mesh sheets loaded with Car/PDMS and nanocarbon/polydimethylsiloxane (NCar/PDMS) sorbents consistent with sustainable chemistry principles. The membrane surfaces were examined using a stereo microscope system and were evaluated based on the effect of various particle ratios (1%, 2.5%, 5%, 10%, and 15%). The results showed that membranes with higher particle ratios provided a higher extraction efficiency when used with McReynolds standards; however, membranes containing 10% and 15% carbon were fragile and suffered from substantially higher background bleed. Hence, a sorbent with a 5% particle ratio was deemed to be optimal, and the carboxen coating was found to capture the highest amounts of the McReynolds standard. Moreover, Car/PDMS and NCar/PDMS were found to provide good repeatability, as their intra-membrane %RSDs fell within an acceptable range—1.2%–21.9% and 1.7%–20%, respectively—for all analytes tested. Finally, for proof-of-concept applications, the developed membranes were used to sample chlorination by-products (chloroform and dichloroacetonitrile) from hot tub headspace and were identified using a hand portable gas chromatography-mass spectrometry (GC-MS) system. In second application 33 VOCs in human-breath samples sampled and identified using a benchtop GC-MS system.
来源出处
Journal|[J]Sustainable Chemistry and PharmacyVolume 21, 2021.
DOI
https://doi.org/10.1016/J.SCP.2021.100435

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备注说明:

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