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首页> 外文期刊>Spectroscopy >Fourier transform infrared and near-infrared spectroscopic methods for the detection of toxic Diethylene Glycol (DEG) contaminant in glycerin based cough syrup
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Fourier transform infrared and near-infrared spectroscopic methods for the detection of toxic Diethylene Glycol (DEG) contaminant in glycerin based cough syrup

机译:傅里叶变换红外和近红外光谱法检测甘油基止咳糖浆中的有毒二甘醇(DEG)污染物

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Recently there have been reports of the contamination of cough syrups with Diethylene Glycol (DEG). The consumption of such cough syrups has devastating effects on the health. In this paper we report evidence that Fourier transform infrared (FT-IR) and near-infrared (NIR) spectroscopic techniques are viable, simple, cost effective, rapid and fool proof methods for the identification and quantification of DEG in glycerin based cough syrups. The FT-IR and NIR spectra of the glycerin based cough syrup and up to 50:50 mixtures of DEG in cough syrup are recorded. The major peaks in the FT-IR spectrum of the cough syrup are assigned to the OH stretching (~3300 cm?1), CH stretching (~2900 cm?1), CH bending (1500–1200 cm?1) and C–O stretching (1200–900 cm?1) vibrational modes. In the FT-IR spectra of the mixtures, DEG contribute distinct peaks due to the vibrations of the C–O (920 cm?1) and OC2H4(892 cm?1) moieties of its backbone and form the basis of the DEG detection and quantification. The prominent peaks of the NIR spectra of cough syrup and DEG are assigned to the first overtones of OH and CH, and to the combination of OH and CH fundamental vibrations. Both FT-IR and NIR Partial Least Square (PLS) calibrations produced correlation coefficients of 0.98.
机译:最近,有报道称二甘醇(DEG)污染了咳嗽糖浆。食用这种止咳糖浆会对健康造成毁灭性影响。在本文中,我们报告的证据表明,傅立叶变换红外(FT-IR)和近红外(NIR)光谱技术是用于鉴定和定量甘油基止咳糖浆中DEG的可行,简单,经济高效,快速且简便的方法。记录了甘油基止咳糖浆和DEG在止咳糖浆中的比例高达50:50的混合物的FT-IR和NIR光谱。咳嗽糖浆的FT-IR光谱中的主要峰分别为OH拉伸(〜3300 cm?1),CH拉伸(〜2900 cm?1),CH弯曲(1500–1200 cm?1)和C– O拉伸(1200–900 cm?1)振动模式。在混合物的FT-IR光谱中,DEG由于其骨架的C–O(920 cm?1)和OC2H4(892 cm?1)部分的振动而产生了明显的峰,并成为DEG检测和检测的基础。量化。咳嗽糖浆和DEG的NIR光谱的突出峰被分配给OH和CH的第一泛音,以及OH和CH基本振动的组合。 FT-IR和NIR偏最小二乘(PLS)校准均产生0.98的相关系数。

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