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使用带有非放射性电离源的手持式离子迁移谱仪快速感应氢氰酸(HCN)蒸气。

Fast Sensing of Hydrogen Cyanide (HCN) Vapors Using a Hand-Held Ion Mobility Spectrometer with Nonradioactive Ionization Source.

机构信息

Faculty of Environmental Science and Engineering, Babes-Bolyai University, RO-400294 Cluj-Napoca, Romania.

Transcend SRL, RO-400568 Cluj-Napoca, Romania.

出版信息

Sensors (Basel). 2021 Jul 26;21(15):5045. doi: 10.3390/s21155045.

Abstract

Sensitive real-time detection of vapors produced by toxic industrial chemicals (TICs) always represents a stringent priority. Hydrogen cyanide (HCN) is definitely a TIC, being widely used in various industries and as an insecticide; it is a reactive, very flammable, and highly toxic compound that affects the central nervous system, cardiovascular system, eyes, nose, throat, and also has systemic effects. Moreover, HCN is considered a blood chemical warfare agent. This study was focused toward quick detection and quantification of HCN in air using time-of-flight ion mobility spectrometry (ToF IMS). Results obtained clearly indicate that IMS can rapidly detect HCN at sub-ppm levels in air. Ion mobility spectrometric response was obtained in the negative ion mode and presented one single distinct product ion, at reduced ion mobility K of 2.38 cm V s. Our study demonstrated that by using a miniaturized commercial IMS system with nonradioactive ionization source model LCD-3.2E (Smiths Detection Ltd., London, UK), one can easily measure HCN at concentrations of 0.1 ppm (0.11 mg m) in negative ion mode, which is far below the OSHA PEL-TWA value of 10 ppm. Measurement range was from 0.1 to 10 ppm and the estimated limit of detection LoD was . 20 ppb (0.02 mg m).

摘要

对有毒工业化学品(TICs)产生的蒸气进行敏感的实时检测一直是一个严格的优先事项。氰化氢(HCN)绝对是 TIC,它广泛用于各种工业和杀虫剂;它是一种反应性、非常易燃和高毒性的化合物,会影响中枢神经系统、心血管系统、眼睛、鼻子、喉咙,并且还具有全身效应。此外,HCN 被认为是一种血液化学战剂。本研究旨在使用飞行时间离子迁移谱(ToF IMS)快速检测和定量空气中的 HCN。结果清楚地表明,IMS 可以在空气中以亚 ppm 级别的速度快速检测 HCN。在负离子模式下获得了离子迁移谱响应,并呈现出单一的特征产物离子,在降低的离子迁移率 K 为 2.38 cm V s。我们的研究表明,使用带有非放射性电离源模型 LCD-3.2E 的小型商用 IMS 系统(Smiths Detection Ltd.,伦敦,英国),可以在负离子模式下轻松测量浓度为 0.1 ppm(0.11 mg m)的 HCN,远低于 OSHA PEL-TWA 值的 10 ppm。测量范围为 0.1 至 10 ppm,估计检测限 LoD 为. 20 ppb(0.02 mg m)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1ef/8347864/ff6967ea4e7c/sensors-21-05045-g001.jpg

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