Trace elemental analysis of glass and paint samples of forensic interest by ICP-MS using Laser Ablation solid sample introduction

被引:9
作者
Almirall, JR [1 ]
Trejos, T [1 ]
Hobbs, A [1 ]
Furton, K [1 ]
机构
[1] Florida Int Univ, Dept Chem, Int Forens Res Inst, Miami, FL 33199 USA
来源
SENSORS, AND COMMAND, CONTROL, COMMUNICATIONS, AND INTELLIGENCE (C3I) TECHNOLOGIES FOR HOMELAND DEFENSE AND LAW ENFORCEMENT II | 2003年 / 5071卷
关键词
glass evidence; paint evidence; ICPMS; LA-ICP-MS; forensic comparisons;
D O I
10.1117/12.498106
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
The importance of small amounts of glass and paint evidence as a means to associate a crime event to a suspect or a suspect to another individual has been demonstrated in many cases. Glass is a fragile material that is often found at the scenes of crimes such as burglaries, hit-and-run accidents and violent crime offenses. Previous work has demonstrated the utility of elemental analysis by solution ICP-MS of small amounts of glass for the comparison between a fragment found at a crime scene to a possible source of the glass. The multi-element capability and the sensitivity of ICP-MS combined with the simplified sample introduction of laser ablation prior to ion detection provides for an excellent and relatively non-destructive technique for elemental analysis of glass fragments. The direct solid sample introduction technique of laser ablation (LA) is reported as an alternative to the solution method. Direct solid sampling provides several advantages over solution methods and shows great potential for a number of solid sample analyses in forensic science. The advantages of laser ablation include the simplification of sample preparation, thereby reducing the time and complexity of the analysis, the elimination of handling acid dissolution reagents such as HF and the reduction of sources of interferences in the ionization plasma. Direct sampling also provides for essentially "non-destructive,, sampling due to the removal of very small amounts of sample needed for analysis. The discrimination potential of LA-ICP-MS is compared with previously reported solution ICP-MS methods using external calibration with internal standardization and a newly reported solution isotope dilution (ID) method. A total of ninety-one different glass samples were used for the comparison study using the techniques mentioned. One set consisted of forty-five headlamps taken from a variety of automobiles representing a range of twenty years of manufacturing dates. A second set consisted of forty-six automotive glasses (side windows and windshields) representing casework glass from different vehicle manufacturers over several years was also characterized by RI and elemental composition analysis. The solution sample introduction techniques (external calibration and isotope dilution) provide for excellent sensitivity and precision but have the disadvantages of destroying the sample and also involve complex sample preparation. The laser ablation method was simpler, faster and produced comparable discrimination to the EC-ICP-MS and ID-ICP-MS. LA-ICP-MS can provide for an excellent alternative to solution analysis of glass in forensic casework samples. Paints and coatings are frequently encountered as trace evidence samples submitted to forensic science laboratories. A LA-ICP-MS method has been developed to complement the commonly used techniques in forensic laboratories in order to better characterize these samples for forensic purposes. Time-resolved plots of each sample can be compared to associate samples to each other or to discriminate between samples. Additionally, the concentration of lead and the ratios of other elements have been determined in various automotive paints by the reported method. A sample set of eighteen (18) survey automotive paint samples have been analyzed with the developed method in order to determine the utility of LA-ICP-MS and to compare the method to the more commonly used scanning electron microscopy (SEM) method for elemental characterization of paint layers in forensic casework.
引用
收藏
页码:193 / 204
页数:12
相关论文
共 23 条
[1]   The field recovery of explosive residues using solid-phase microextraction followed by chromatographic analysis [J].
Almirall, JR ;
Wu, LM ;
Bi, G ;
Shannon, MW ;
Furton, KG .
INVESTIGATION AND FORENSIC SCIENCE TECHNOLOGIES, 1999, 3576 :18-23
[2]   Discrimination of glass sources using elemental composition and refractive index: development of predictive models [J].
Almirall, JR ;
Cole, MD ;
Gettinby, G ;
Furton, KG .
SCIENCE & JUSTICE, 1998, 38 (02) :93-100
[3]  
[Anonymous], MUTE WITNESSES TRACE
[4]  
[Anonymous], 2001, TAYL & FRAN FORENS S
[5]   ELEMENTAL ANALYSIS OF SMALL GLASS FRAGMENTS IN FORENSIC-SCIENCE [J].
BUSCAGLIA, JA .
ANALYTICA CHIMICA ACTA, 1994, 288 (1-2) :17-24
[6]  
Curran J.M., 2000, FORENSIC INTERPRETAT, P1
[7]   The interpretation of elemental composition measurements from forensic glass evidence .1. [J].
Curran, JM ;
Triggs, CM ;
Almirall, JR ;
Buckleton, JS ;
Walsh, KAJ .
SCIENCE & JUSTICE, 1997, 37 (04) :241-244
[8]  
Curran JM, 1997, SCI JUSTICE, V37, P245, DOI 10.1016/S1355-0306(97)72198-1
[9]   Forensic glass analysis by ICP-MS: a multi-element assessment of discriminating power via analysis of variance and pairwise comparisons [J].
Duckworth, DC ;
Morton, SJ ;
Bayne, CK ;
Koons, RD ;
Montero, S ;
Almirall, JR .
JOURNAL OF ANALYTICAL ATOMIC SPECTROMETRY, 2002, 17 (07) :662-668
[10]   Analysis of variance in forensic glass analysis by ICP-MS: variance within the method [J].
Duckworth, DC ;
Bayne, CK ;
Morton, SJ ;
Almirall, J .
JOURNAL OF ANALYTICAL ATOMIC SPECTROMETRY, 2000, 15 (07) :821-828