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首页> 外文期刊>Analytical Letters >Rapid and Nondestructive Forensic Identification of Tire Particles by Attenuated Total Reflectance-Fourier Transform Infrared Spectroscopy and Chemometrics
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Rapid and Nondestructive Forensic Identification of Tire Particles by Attenuated Total Reflectance-Fourier Transform Infrared Spectroscopy and Chemometrics

机译:通过减弱的总反射率 - 傅里叶变换红外光谱和化学测量学通过减速的汽轮颗粒的快速和无损法医识别

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摘要

It is of great significance to realize the rapid, nondestructive and accurate identification of tire rubber particles in forensic science. However, there are no relevant reports. This study collected and tested infrared spectroscopy data of 240 samples from 15 brands. Baseline correction, multivariate scatter correction, standard normal variables and Savitzky-Golay smoothing were adopted to preprocess the infrared spectra. The comparison of the fingerprint region and full infrared spectrum was explored. The identification models were established by principal component analysis and discriminant analysis. The results showed that there is no significant discrimination in the peak position and shape; instead the peak intensity and relative height were slightly different. The cumulative variance contribution rate of principal components 1 through 12 reached 98.3690% demonstrating 98.3690% of the details in the original measurements. The 39-dimensional principal components of infrared fingerprint region accurately differentiated sample brands and employed computational complexity. Styrene butadiene samples from six brands were accurately identified based on the three discriminant functions Z_(a1), Z_(b1), and Z_(c1). Butadiene samples from five brands were differentiated using discriminant functions Z_(a2), Z_(b2), and Z_(c2). Isoprene samples from brands were separated using the discriminant functions Z_(a3), Z_(b3), and Z_(c3). All samples were precisely identified by this rapid and nondestructive protocol. The results of this study demonstrate the potential of attenuated total reflectance-Fourier transform infrared spectroscopy in combination with principal component analysis and discriminant analysis as a new method for the identification of tire rubber particles.
机译:实现法医学中的轮胎橡胶颗粒的快速,无损和准确鉴定具有重要意义。但是,没有相关的报告。本研究从15个品牌收集和测试了240个样本的红外光谱数据。基线校正,多变量散点校正,标准正常变量和Savitzky-Golay平滑进行预处理红外光谱。探索了指纹区域和全红外光谱的比较。通过主成分分析和判别分析建立了识别模型。结果表明,峰值位置和形状没有显着的歧视;相反,峰强度和相对高度略有不同。主成分1到12的累积方差贡献率达到98.3690%,展示了原始测量中的98.3690%的细节。红外指纹区域的39维主成分精确差异化样本品牌并采用计算复杂性。基于三个判别函数Z_(A1),Z_(B1)和Z_(C1),准确地识别来自六个品牌的苯乙烯丁二烯样品。使用判别函数Z_(A2),Z_(B2)和Z_(C2)来区分五种品牌的丁烯样本。使用判别函数Z_(A3),Z_(B3)和Z_(C3)分离来自品牌的异戊二烯样本。通过这种快速和非破坏性协议精确识别所有样品。该研究的结果表明,与主要成分分析和判别分析相结合的衰减总反射率 - 傅里叶变换红外光谱的潜力作为识别轮胎橡胶颗粒的新方法。

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