1. ASTM International. “Standard Test Method for Ignitable Liquid Residues in Extracts from Fire Debris Samples by Gas Chromatography-Mass Spectrometry (GC-MS)”, ASTM E1618-19, (2019).
2. ASTM International. “Standard Practice for Separation of Ignitable Liquid Residues from Fire Debris Samples by Passive Headspace Concentration with Activated Charcoal”, ASTM E1412-21, (2021).
3. ASTM International. “Standard Practice for Static Headspace Sampling of Vapors from Fire Debris Samples”, ASTM E1388-17, (2017).
4. T. Hwang and D. Choi, “A Study on Experimental Characteristics in Fire Investigation Techniques of Flammable Liquids”, Fire Science and Engineering, Vol. 26, No. 6, pp. 7-14 (2012),
https://doi.org/10.7731/KIFSE.2012.26.6.007.
5. E. J. Park and C. S. Choi, “Investigation Method for Carpet Fires by Analyzing Carbonation Patterns and Oil Vapor”, Fire Science and Engineering, Vol. 35, No. 1, pp. 156-161 (2021),
https://doi.org/10.7731/KIFSE.db57ff65.
6. D. H. Han and S. R. Lee, “Preserving Reliability of Evidence Containers for Fire Debris Containing Ignitable Liquids”, Fire Science and Engineering, Vol. 27, No. 2, pp. 70-74 (2013),
https://doi.org/10.7731/KIFSE.2013.27.2.070.
7. J. Baerncopf and K. Hutches, “Evaluation of Long-Term Preservation of Ignitable Liquids Adsorbed onto Charcoal Strips:0 to 2 Years”, Forensic Chemistry, Vol. 18, pp. 100234(2020),
https://doi.org/10.1016/j.forc.2020.100234.
9. P. E. Sudol, K. M. Pierce, S. E. Prebihalo, K. J. Skogerboe, B. W. Wright and R. E. Synovec, “Development of Gas Chromatographic Pattern Recognition and Classification Tools for Compliance and Forensic Analyses of Fuels:A Review”, Analytica Chimica Acta, Vol. 1132, pp. 157-186 (2020),
https://doi.org/10.1016/j.aca.2020.07.027.
10. H. L. Birks, A. R. Cochran, T. J. Williams and G. P. Jackson, “The Surprising Effect of Temperature on the Weathering of Gasoline”, Forensic Chemistry, Vol. 4, pp. 32-40 (2017),
https://doi.org/10.1016/j.forc.2017.02.011.
11. N. Boegelsack, J. Walker, C. D. Sandau, D. W. McMartin, J. M. Withey and G. O'Sullivan, “Cross-Contamination of Ignitable Liquid Residues on Wildfire Debris—Effects of Packaging and Storage on Detection and Characterization”, Separations, Vol. 11, No. 2, pp. 58(2024),
https://doi.org/10.3390/separations11020058.
13. B. Flaconnèche, J. Martin and M. H. Klopffer, “Permeability, Diffusion and Solubility of Gases in Polyethylene, Polyamide 11 and Poly (Vinylidene Fluoride)”, Oil &Gas Science and Technology, Vol. 56, No. 3, pp. 261-278 (2001),
https://doi.org/10.2516/ogst:2001023.
14. S. K. Papiernik and S. R. Yates, “Effect of Environmental Conditions on the Permeability of High Density Polyethylene Film to Fumigant Vapors”, Environmental Science &Technology, Vol. 36, No. 8, pp. 1833-1838 (2002),
https://doi.org/10.1021/es011252i.
15. R. D. Black, J. D. DeHaan, J. J. Lentini and J. Lewis, “Interpretation of Ignitable Liquid Residues in Fire Debris Analysis”, NIJ Report, U.S. Department of Justice, Washington DC, NCJ 248242, Award No. 2010-DN-BX-K272, (2015).