首页> 外文会议>Detection and Remediation Technologies for Mines and Minelike Targets X pt.2 >Transport of Explosives II: Use of Headspace-SPME/GC μ-ECD and TEEM GC/MS for Detection of TNT Vapors from Sand Buried Samples
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Transport of Explosives II: Use of Headspace-SPME/GC μ-ECD and TEEM GC/MS for Detection of TNT Vapors from Sand Buried Samples

机译:炸药的运输II:顶空SPME / GCμ-ECD和TEEM GC / MS用于检测埋沙样品中的TNT蒸气

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The detection of hidden explosives using vapors emanating from explosives has been considered an area in explosives technology that requires high sensitivity and selectivity. In this work is reported the results of two methods for vapor explosive detection, GC-μECD and GC/MS coupled to a Tunable Electron Energy Monochromator (TEEM-GC/MS). Both used Solid Phase Microextraction (SPME) in Headspace (HS) mode to collect vapors above the samples. Optimum parameters for SPME were determined with the purpose of obtaining a high-quality extraction. The parameters were: type of SPME fiber, exposure time and desorption time at the injection port of the GC. Headspace SPME procedure was carried out in samples with crystals of TNT buried in soil. These samples were analyzed under important environmental conditions such as temperature and water content. Analyses at contact times after the TNT-soil mix preparation were carried out during 1 month. A comparison of results from both techniques was performed. Vapors of TNT and 2,4-DNT were found predominantly in the samples. HS-SPME coupled with GC-μ ECD and TEEM GC/MS exhibited excellent selectivity and sensitivity.
机译:使用爆炸物散发的蒸气来探测隐藏的爆炸物被认为是爆炸物技术中需要高灵敏度和选择性的领域。在这项工作中,报告了两种气相爆炸物检测方法的结果,GC-μECD和GC / MS与可调电子能量单色仪(TEEM-GC / MS)耦合。两者均采用顶空(HS)模式的固相微萃取(SPME)收集样品上方的蒸气。确定SPME的最佳参数是为了获得高质量的提取物。参数为:SPME纤维的类型,GC进样口的暴露时间和解吸时间。在样品中进行顶空SPME程序,将TNT晶体埋在土壤中。在重要的环境条件下(例如温度和水含量)对这些样品进行了分析。在1个月内进行TNT-土壤混合物制备后的接触时间分析。对两种技术的结果进行了比较。 TNT和2,4-DNT的蒸气主要在样品中发现。 HS-SPME结合GC-μECD和TEEM GC / MS表现出出色的选择性和灵敏度。

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