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Rapid and simple analysis of trace levels of three explosives in soil by liquid chromatography - tandem mass spektrometry

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The analysis of trace levels of explosives in post-blast debris is critical in homeland security, environmental analysis, and crime scene forensic investigations. A fast and a selective determination method with high recovery was developed for the common explosives 2,4,6-trinitrotoluene (TNT), 3,5-trinitro-1,3,5-triazacyclohexane (RDX), and octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocine (HMX) in soil, using liquid chromatography - tandem mass spectrometry (LC-MS/MS). An easy and practical sample preparation method was developed using 4.00 mL acidified acetone with 0.25% HCl. After the easy evaporation of acetone extract, 10 min LC-MS/MS analysis provided a clear separation in column. Short duration of the whole procedure allows the use of this method in routine analysis. As a result of the analysis performed in spiked soils in 50.0, 100.0, and 250.0 ng g -1 concentrations, high recoveries such as 100.4 (±8.8)% for RDX, 96.9 (±10.5)% for HMX, and 97.6 (±13.9)% for TNT were obtained. Limit of detection (LOD) and limit of quantification (LOQ) values obtained from the analysis of the spiked soils were 4.3 ng g -1 and 7.00 ng g -1 for RDX, 6.8 ng g -1 and 10.0 ng g -1 for HMX, and 18.9 ng g -1 and 38.0 ng g -1 for TNT, respectively. The Horwitz Ratio (HorRat) calculation was used to evaluate if the inter-day and inter-analyst precisions were in the acceptable limits. The method was successfully applied to three artificial explosion samples for detection of explosives.
Rocznik
Strony
45--56
Opis fizyczny
Bibliogr. 17 poz., rys., tab.
Twórcy
autor
  • Istanbul University Institute of Forensic Sciences, 34303, Cerrahpasa/Istanbul, Turkey
  • Istanbul University Institute of Forensic Sciences, 34303, Cerrahpasa/Istanbul, Turkey
autor
  • Istanbul University Institute of Forensic Sciences, 34303, Cerrahpasa/Istanbul, Turkey
Bibliografia
  • [1] J. Yinon (Ed) Advances in Forensic Applications of Mass Spectrometry, CRC Press, Boca Raton, Florida, 2004, p. 243
  • [2] M.E. Walsh, Talanta, 54, 427 (2001)
  • [3] D. Gaurav, A.K. Malik, and P.K. Rai, Crit. Rev. Anal. Chem., 37, 227 (2007)
  • [4] C.A. Groom, S. Beaudet, A. Halasz, L. Paquet, and J. Hawari, J. Chromatogr. A 909, 53 (2001)
  • [5] C.A. Groom, A. Halasz, L. Paquet, S. Thiboutot, G. Ampleman, and J. Hawari, J. Chromatogr. A, 1072, 73 (2005)
  • [6] X. Xu, A.M.V. Craats, and P.C.D. Bruyn, J. Forensic Sci., 49, 1171 (2004)
  • [7] X. Xu, M. Koeberg, C. Kuijpers, and E. Kok, Sci. Justice, 54, 3 (2014)
  • [8] A. Hilmi, H.T. Luong, and J.A. Nguyen, J. Chromatogr. A, 844, 97 (1999)
  • [9] A.K. Malik, and P.K. Rai, J. Sep. Sci., 31, 2173 (2008)
  • [10] R. Batlle, H. Carlsson, E. Holmgren, A. Colmsjo, and C. Crescenzi, J. Chromatogr. A, 963, 73 (2002)
  • [11] K. Hrobonová, M. Lacuška, K. Balog, and J. Lehotay, J. Liq. Chromatogr. Relat. Technol., 20, 3177 (2002)
  • [12] X. Pan, B. Zhang, S.B. Cox, T.A. Anderson, and G.P. Cobb, J. Chromatogr. A, 1107, 2 (2006)
  • [13] S. Campbell, R. Ogoshi, G. Uehara, and Q.X. Li, J. Chromatogr. Sci., 41, 284 (2003)
  • [14] E. Holmgren, H. Carlsson, P. Goede, and C. Crescenzi, J. Chromatogr. A, 1099, 127, 2005
  • [15] R. Mu, H. Shi, Y. Yuan, A. Karnjanapiboonwong, J.G. Burken, and Y. Ma, Anal. Chem., 84, 3427 (2012)
  • [16] X. Pan, K. Tian, L.E. Jones, and Cobb, G. P. Talanta, 70, 455 (2006)
  • [17] D. Tian, F. Chen, J. Yang, K. Yu, and Y. Sun, Curr. Drug Metab., 13, 1206 (2012)
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1d7bbc60-817a-4e1f-8993-cd20e71091ce
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