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                               24. Almirall, J. R. and Furton, K. G., Characterization of background and pyrol-
                                   ysis products that may interfere with the forensic analysis of fire debris, J.
                                   Anal. Appl. Pyrolysis, in press , 2003.
                               25. Furton, K. G.,  Almirall, J. R., and Bruna, J.,  A simple, inexpensive, rapid,
                                   sensitive, and solventless technique for the analysis of accelerants in fire debris
                                   based on SPME, J. High Resolution Chromatogr., 18, 625, 1995.
                               26. Almirall, J. R. and Furton, K. G., A fast and simple method for the analysis
                                   of accelerants from fire debris using headspace solid-phase microextraction,
                                   in Proc. of the Int. Symp. on the Forensic Aspects of Arson Investigations, U.S.
                                   Government Printing Office, Washington, D.C., 1995, p. 337.
                               27. Almirall, J. R., Bruna, J., and Furton, K. G., The recovery of accelerants in
                                   aqueous samples from fire debris using solid phase microextraction (SPME),
                                   Science and Justice (J. Forensic Sci. Soc.), 36, 283, 1996.
                               28. Furton, K. G., Almirall, J. R., and Bruna, J., A novel method for the analysis
                                   of gasoline from fire debris using headspace solid phase microextraction, J.
                                   Forensic Sci., 41, 12, 1996.
                               29. Almirall, J. R. and Furton, K. G., Forensic and toxicology applications, in
                                   Solid Phase Microextraction: A Practical Guide, Scheppers Wercinski, S.A., Ed.,
                                   Marcel Dekker, New York, 1999, p. 203.
                               30. Furton, K. G., Wang, J., Hsu, Y.-L., Walton, J., and Almirall, J. R., The use of
                                   solid-phase microextraction/gas chromatography in forensic analysis, J. Chro-
                                   matogr. Sci., 38, 297, 2000.
                               31. Almirall, J. R., Wang, J., Lothridge, K., and Furton, K. G., The detection and
                                   analysis of flammable or combustible liquid residues on human skin using
                                   SPME/GC, J. Forensic Sci., 45, 461, 2000.
                               32. Furton, K. G., Almirall, J. R., Bi, M., Wang, J., and Wu, L., Application of
                                   solid-phase microextraction to the recovery of explosives and ignitable liquid
                                   residues from forensic specimens, J. Chromatogr. A, 885, 419, 2000.
                               33. Almirall, J. R. and Furton, K. G., New developments in sampling and sample
                                   preparation for forensic analysis, in Sample Preparation in Field and Labo-
                                   ratory, Pawliszyn, J. B., Ed., Elsevier Science, Amsterdam, 2002, chap. 17, p.
                                   919.
                               34. Ren, Q. L. and Bertsch, W., A comprehensive sample preparation scheme for
                                   accelerants in suspect arson cases, J. Forensic Sci., 44, 504, 1999.
                               35. Harris, A. C. and Wheeler, J. F., GC-MS of ignitable liquids using solvent-
                                   desorbed SPME for automated analysis, J. Forensic Sci., 48, 41, 2003.
                               36. Armstrong, A., Plasencia, M. D., Montero, S., Krivis, J., and Almirall, J.R.,
                                   Improved sensitivity and selectivity for the detection and identification of
                                   ignitable liquid residues from fire debris by ion trap mass spectrometry II,
                                   in  Proc. of the American Academy of Forensic Sciences Meeting, Reno, NV,
                                   2000.




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