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首页> 外文期刊>Analytica chimica acta >Non-targeted detection of chemical contamination in carbonated soft drinks using NMR spectroscopy,variable selection and chemometrics
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Non-targeted detection of chemical contamination in carbonated soft drinks using NMR spectroscopy,variable selection and chemometrics

机译:使用NMR光谱,变量选择和化学计量学非目标检测碳酸软饮料中的化学污染物

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摘要

An efficient method for detecting malicious and accidental contamination of foods has been developed using a combined 1H nuclear magnetic resonance (NMR) and chemometrics approach.The method has been demonstrated using a commercially available carbonated soft drink,as being capable of identifying atypical products and to identify contaminant resonances.Soft-independent modelling of class analogy (SIMCA) was used to compare 1H NMR profiles of genuine products (obtained from the manufacturer) against retail products spiked in the laboratory with impurities.The benefits of using feature selection for extracting contaminant NMR frequencies were also assessed.Using example impurities (paraquat,p-cresol and glyphosate) NMR spectra were analysed using multivariate methods resulting in detection limits of approximately 0.075,0.2,and 0.06 mM for p-cresol,paraquat and glyphosate,respectively.These detection limits are shown to be approximately 100-fold lower than the minimum lethal dose for paraquat.The methodology presented here is used to assess the composition of complex matrices for the presence of contaminating molecules without a priori knowledge of the nature of potential contaminants.The ability to detect if a sample does not fit into the expected profile without recourse to multiple targeted analyses is a valuable tool for incident detection and forensic applications.
机译:结合1H核磁共振(NMR)和化学计量学方法,已开发出一种有效的检测食品的恶意和意外污染的方法。该方法已使用市售的碳酸软饮料进行了验证,能够识别非典型产品并识别污染物的共振使用类比软件(SIMCA)的软件独立建模来比较真实产品的1H NMR谱图(从制造商处获得)与掺有杂质的实验室加标零售产品的比较。使用特征选择来提取污染物NMR的好处使用多元方法分析示例杂质(百草枯,对甲酚和草甘膦)的NMR光谱,得出对甲酚,百草枯和草甘膦的检出限分别约为0.075、0.2和0.06 mM。限值显示比对位的最小致死剂量低约100倍在不事先了解潜在污染物的性质的情况下,此处介绍的方法用于评估污染物是否存在的复杂基质的组成,无需借助多个样品即可检测样品是否不符合预期特征目标分析是用于事件检测和法医应用的有价值的工具。

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