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使用台式核磁共振波谱法检测蜂蜜掺假。

Detection of honey adulteration using benchtop H NMR spectroscopy.

作者信息

Rhee Yuki, Shilliday Ella R, Matviychuk Yevgen, Nguyen Thien, Robinson Neil, Holland Daniel J, Connolly Paul R J, Johns Michael L

机构信息

Department of Chemical Engineering, The University of Western Australia, 35 Stirling Highway (M050), Perth, WA 6009, Australia.

Department of Chemical and Process Engineering, University of Canterbury, Christchurch 8140, New Zealand.

出版信息

Anal Methods. 2023 Mar 30;15(13):1690-1699. doi: 10.1039/d2ay01757a.

Abstract

High magnetic field NMR spectroscopy featuring the use of superconducting magnets is a powerful analytical technique for the detection of honey adulteration. Such high field NMR systems are, however, typically housed in specialised laboratories, require cryogenic coolants, and necessitate specialist training to operate. Benchtop NMR spectrometers featuring permanent magnets are, by comparison, significantly cheaper, more mobile and can be operated with minimal expertise. The lower magnetic fields used in such systems, however, result in limited spectral resolution, which diminishes their ability to perform quantitative composition analysis. These limitations may be overcome by implementing a recently developed field-invariant model-based fitting method which is defined by the underlying quantum mechanical properties of the nuclear spin system; this method is applied here to quantify the sugar composition of honey using benchtop H NMR (43 MHz) spectroscopy. The detection of adulteration of 26 honey samples with brown rice syrup is quantitatively demonstrated to a minimum adulterant concentration of 5 wt%. Honey adulteration with corn syrup, glucose syrup and wheat syrup was also quantitatively detected using this approach. Our NMR detection of adulteration was shown to be invariant with time over 60 days of storage.

摘要

采用超导磁体的高磁场核磁共振光谱法是检测蜂蜜掺假的一种强大分析技术。然而,此类高场核磁共振系统通常安置在专门的实验室中,需要低温冷却剂,且操作需要专业培训。相比之下,采用永久磁体的台式核磁共振光谱仪显著更便宜、更便于移动,并且只需极少的专业知识就能操作。然而,此类系统中使用的较低磁场会导致光谱分辨率有限,从而降低其进行定量成分分析的能力。通过采用最近开发的基于场不变模型的拟合方法可以克服这些限制,该方法由核自旋系统的基本量子力学性质定义;本文应用此方法使用台式氢核磁共振(43兆赫)光谱法定量分析蜂蜜的糖分组成。对26个蜂蜜样品掺有糙米糖浆的情况进行了定量检测,最低掺假浓度为5%(重量)。使用该方法还对蜂蜜掺有玉米糖浆、葡萄糖糖浆和小麦糖浆的情况进行了定量检测。我们对掺假的核磁共振检测结果显示,在储存60天的时间内是不变的。

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