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离子淌度质谱与离子阱质谱的平行耦合用于实时报警触发和危险化学品泄漏的识别。

Parallel Coupling of Ion Mobility Spectrometry and Ion Trap Mass Spectrometry for the Real-Time Alarm Triggering and Identification of Hazardous Chemical Leakages.

机构信息

CAS Key Laboratory of Separation Science for Analytical Chemistry, Chinese Academy of Sciences, Dalian Institute of Chemical Physics, Dalian 116023, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Anal Chem. 2021 Aug 31;93(34):11852-11858. doi: 10.1021/acs.analchem.1c02647. Epub 2021 Aug 18.

Abstract

Hazardous chemical leakages involved in chemical terrorist attacks and chemical industrial accidents have been posing severe threats to human health and the environment. Vehicle-mounted mass spectrometry (MS) has been developed for continuous, on-road measurements to map the spatial and temporal distributions of hazardous chemicals. However, the detection of chemicals with small temporal scales and spatial scales is always challenging. In this study, a parallel coupling apparatus combining the techniques of ion mobility spectrometry and ion trap MS (-IMS-ITMS) was developed to improve the detection rate and the time response capability of a stand-alone ITMS system for short time-span chemical tracking. A workflow was also proposed along with the apparatus, where the ITMS system can be triggered, as chemical suspects were discovered with the IMS system. The sampling positions of the ITMS system were investigated and optimized. In addition, a strategy was proposed to diminish the time span of samples from 1.5 to 0.5 s for evaluating the performances of the -IMS-ITMS system. The detection rate of the stand-alone ITMS system was measured to be only 9.5, 32, and 87.5% for the time span of 0.5, 1, and 1.5 s, respectively. By comparison, the detection rates of the -IMS-ITMS system were 99.5, 100, and 100%, where the detection rate was increased by a factor of 10 for 0.5 s time span. Moreover, the addition of an IMS system could provide temporal patterns of hazardous chemicals with a resolution of 33 ms. Finally, the potential of the -IMS-ITMS system for environmental navigation monitoring and assessment was further demonstrated by detecting the leakages of dimethyl methyl phosphonate and dipropylene glycol monomethyl ether.

摘要

涉及化学恐怖袭击和化学工业事故的危险化学品泄漏一直对人类健康和环境构成严重威胁。车载质谱(MS)已被开发用于连续的道路测量,以绘制危险化学品的时空分布。然而,检测具有小时间尺度和空间尺度的化学品一直具有挑战性。在这项研究中,开发了一种结合离子淌度谱和离子阱 MS 的平行耦合装置(-IMS-ITMS),以提高独立 ITMS 系统对短时间跨度化学跟踪的检测率和时间响应能力。还提出了一个工作流程,其中当 IMS 系统发现化学嫌疑物时,ITMS 系统可以被触发。研究并优化了 ITMS 系统的采样位置。此外,提出了一种策略,将样品的时间跨度从 1.5 秒减少到 0.5 秒,以评估 -IMS-ITMS 系统的性能。独立 ITMS 系统的检测率分别为 0.5、1 和 1.5 秒的时间跨度下的 9.5%、32%和 87.5%。相比之下,-IMS-ITMS 系统的检测率分别为 99.5%、100%和 100%,其中 0.5 秒时间跨度的检测率提高了 10 倍。此外,IMS 系统的添加可以提供危险化学品的时间模式,分辨率为 33 毫秒。最后,通过检测二甲甲基磷酸酯和二丙二醇单甲醚的泄漏,进一步证明了 -IMS-ITMS 系统在环境导航监测和评估方面的潜力。

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