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室内空气中挥发性有机化合物的物种鉴定:利用气相色谱法解读质子转移反应质谱实时信号

Speciating volatile organic compounds in indoor air: using GC to interpret real-time PTR-MS signals.

作者信息

Ditto Jenna C, Huynh Han N, Yu Jie, Link Michael F, Poppendieck Dustin, Claflin Megan S, Vance Marina E, Farmer Delphine K, Chan Arthur W H, Abbatt Jonathan P D

机构信息

Department of Energy, Environmental, and Chemical Engineering, Washington University in St. Louis, USA.

Cooperative Institute for Research in Environmental Sciences (CIRES), University of Colorado Boulder, USA.

出版信息

Environ Sci Process Impacts. 2025 Jun 18;27(6):1671-1687. doi: 10.1039/d4em00602j.

Abstract

Proton transfer reaction mass spectrometry (PTR-MS) is often employed to characterize gas-phase compounds in both indoor and outdoor environments. PTR-MS measurements are usually made without upstream chromatographic separation, so it can be challenging to differentiate between an ion of interest, its isomers, and fragmentation products from other species all detected at the same mass-to-charge ratio. These isomeric contributions and fragmentation interferences can confound the determination of accurate compound mixing ratios, the assignment of accurate chemical properties, and corresponding analyses of chemical fate. In this study, we deployed a gas chromatograph upstream of a PTR-MS to investigate contributions of isomers and fragmentation products for select indoor air-relevant chemicals. Measurements were made in a test house across a variety of indoor chemical sources, oxidants, and environmental conditions during the Chemical Assessment of Surfaces and Air (CASA) study. Observed confounding signals at each extracted ion chromatogram ranged from 0% (CHOH, CHOSiH, and CHOSiH) to 98% (at CH). For many ions, confounding signals varied between indoor conditions, and there were also differences between confounding signals across indoor outdoor measurements. The relative contribution of sets of key structural isomers (, C-C carbonyls, xylenes, trimethylbenzenes, and monoterpenes) remained consistent throughout the measurement period despite changing indoor conditions. These relatively stable isomer distributions yielded stable chemical property assignments for these isomer sets. Taken together, these observations can inform future interpretations of PTR-MS signals measured in different indoor conditions without upstream chromatography.

摘要

质子转移反应质谱法(PTR-MS)常用于表征室内和室外环境中的气相化合物。PTR-MS测量通常在没有上游色谱分离的情况下进行,因此要区分在相同质荷比下检测到的目标离子、其异构体以及来自其他物种的碎片产物可能具有挑战性。这些异构体贡献和碎片干扰可能会混淆准确化合物混合比的测定、准确化学性质的归属以及化学归宿的相应分析。在本研究中,我们在PTR-MS上游部署了一台气相色谱仪,以研究异构体和碎片产物对选定的与室内空气相关化学品的贡献。在“表面和空气化学评估”(CASA)研究期间,在一个测试房屋内针对各种室内化学源、氧化剂和环境条件进行了测量。在每个提取离子色谱图上观察到的混淆信号范围从0%(CHOH、CHOSiH和CHOSiH)到98%(在CH处)。对于许多离子,混淆信号在不同室内条件下有所不同,并且在室内外测量的混淆信号之间也存在差异。尽管室内条件发生变化,但在整个测量期间,关键结构异构体组(如C-C羰基化合物、二甲苯、三甲苯和单萜)的相对贡献保持一致。这些相对稳定的异构体分布为这些异构体组提供了稳定的化学性质归属。综上所述,这些观察结果可为未来在没有上游色谱的情况下对不同室内条件下测量的PTR-MS信号的解释提供参考。

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