用脂肪族硫醇进行现场衍生化和气相色谱鉴定

IF 1 4区 化学 Q4 CHEMISTRY, MULTIDISCIPLINARY Journal of The Serbian Chemical Society Pub Date : 2023-01-01 DOI:10.2298/jsc221207025r
T. Rozsypal
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引用次数: 0

摘要

该报告描述了在移动实验室条件下使用现场气相色谱仪和质谱仪快速简便地鉴定Adamsite的方法的发展。Adamsite是一种具有独特性质的化学战剂,如果不转化为挥发性衍生物,就无法进行分析。研究了5种脂肪族硫醇(乙硫醇、1-丙硫醇、2-丙硫醇、1-丁硫醇和1-己硫醇)的衍生化过程,并进行了比较。对衍生化产物的保留特性、峰特性和谱图中伪影的形成进行了监测。反应介质的影响和反应的时间依赖性也是我们感兴趣的对象。其他研究参数为最佳反应温度和衍生化剂的体积。记录了尚未列入化学武器相关数据库的新创造物质的质谱。使用最佳试剂(1-丁硫醇和1-己硫醇),随后制定了分析物测定的校准程序,并在选定的环境和城市基质中进行了Adamsite鉴定试验。
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Use of aliphatic thiols for on-site derivatization and gas chromatographic identification of Adamsite
The report describes the development of methods for rapid and simple identification of Adamsite in mobile laboratory conditions using a field gas chromatograph coupled with mass spectrometer. Adamsite is a chemical warfare agent with unique properties that cannot be analyzed without conversion to a volatile derivative. Derivatization procedures with 5 aliphatic thiols (ethanethiol, 1-propanethiol, 2-propanethiol, 1-butanethiol and 1-hexanethiol) were developed and compared. The retention characteristics of the derivatization products, peak characteristics and the formation of unwanted artifacts in the chromatograms were monitored. The influence of the reaction media and the time dependence of the reaction were also objects of interest. Other investigated parameters were the optimal reaction temperature and the volume of the derivatization agent. Mass spectra of newly created substances that are not yet included in the chemical weapons related databases were recorded. With optimal reagents (1-butanethiol and 1-hexanethiol), calibration procedures for analyte determination were subsequently developed, and the methods were verified during the Adamsite identification test in selected environmental and urban matrices.
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来源期刊
CiteScore
1.80
自引率
0.00%
发文量
76
审稿时长
1 months
期刊介绍: The Journal of the Serbian Chemical Society -JSCS (formerly Glasnik Hemijskog društva Beograd) publishes articles original papers that have not been published previously, from the fields of fundamental and applied chemistry: Theoretical Chemistry, Organic Chemistry, Biochemistry and Biotechnology, Food Chemistry, Technology and Engineering, Inorganic Chemistry, Polymers, Analytical Chemistry, Physical Chemistry, Spectroscopy, Electrochemistry, Thermodynamics, Chemical Engineering, Textile Engineering, Materials, Ceramics, Metallurgy, Geochemistry, Environmental Chemistry, History of and Education in Chemistry.
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