Differentiation of Unevaporated Gasoline Samples According to Their Brands, by SPME–GC–MS and Multivariate Statistical Analysis
暂无分享,去创建一个
[1] Heng Tao Shen,et al. Principal Component Analysis , 2009, Encyclopedia of Biometrics.
[2] Nicholas D K Petraco,et al. Statistical Discrimination of Liquid Gasoline Samples from Casework , 2008, Journal of forensic sciences.
[3] P Mark L Sandercock,et al. Fire investigation and ignitable liquid residue analysis--a review: 2001-2007. , 2008, Forensic science international.
[4] Victoria L McGuffin,et al. Chemometric analysis of diesel fuel for forensic and environmental applications. , 2008, Analytica chimica acta.
[5] J. K. Hardy,et al. Multivariate pattern recognition of petroleum-based accelerants by solid-phase microextraction gas chromatography with flame ionization detection. , 2007, Analytica chimica acta.
[6] B. W. Wright,et al. Classification of high-speed gas chromatography-mass spectrometry data by principal component analysis coupled with piecewise alignment and feature selection. , 2006, Journal of chromatography. A.
[7] Alastair D Pert,et al. Review of Analytical Techniques for Arson Residues , 2006, Journal of forensic sciences.
[8] Kevin J Johnson,et al. Classification of gasoline data obtained by gas chromatography using a piecewise alignment algorithm combined with feature selection and principal component analysis. , 2005, Journal of chromatography. A.
[9] E. du Pasquier,et al. Chemical fingerprinting of gasoline. Part 3. Comparison of unevaporated automotive gasoline samples from Australia and New Zealand. , 2004, Forensic science international.
[10] E. du Pasquier,et al. Chemical fingerprinting of gasoline. 2. Comparison of unevaporated and evaporated automotive gasoline samples. , 2004, Forensic science international.
[11] E. du Pasquier,et al. Chemical fingerprinting of unevaporated automotive gasoline samples. , 2003, Forensic science international.
[12] Philip Doble,et al. Classification of premium and regular gasoline by gas chromatography/mass spectrometry, principal component analysis and artificial neural networks. , 2003, Forensic science international.
[13] N. Snow,et al. Head-space analysis in modern gas chromatography , 2002 .
[14] K. Furton,et al. Chapter 27 New developments in sampling and sample preparation for forensic analysis , 2002 .
[15] J. K. Hardy,et al. Accelerant classification by gas chromatography/mass spectrometry and multivariate pattern recognition , 2000 .
[16] A. Kaufmann,et al. Multivariate Statistics as a Classification Tool in the Food Laboratory , 1997 .
[17] C. Bayne. Practical Guide to Chemometrics , 1995 .
[18] C. Lennard,et al. A GC–MS database of target compound chromatograms for the identification of arson accelerants , 1995 .
[19] P. L. Wineman,et al. Target-compound method for the analysis of accelerant residues in fire debris , 1994 .
[20] P. L. Wineman,et al. Detection of petroleum-based accelerants in fire debris by target compound gas chromatography/mass spectrometry , 1991 .
[21] Gregory A. Mack,et al. Chemometrics: A Textbook , 1990 .