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Calibration and testing of a Raman hyperspectral imaging system to reveal powdered food adulteration

机译:拉曼高光谱成像系统的校准和测试可发现食品中的食品掺假粉

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摘要

The potential adulteration of foodstuffs has led to increasing concern regarding food safety and security, in particular for powdered food products where cheap ground materials or hazardous chemicals can be added to increase the quantity of powder or to obtain the desired aesthetic quality. Due to the resulting potential health threat to consumers, the development of a fast, label-free, and non-invasive technique for the detection of adulteration over a wide range of food products is necessary. We therefore report the development of a rapid Raman hyperspectral imaging technique for the detection of food adulteration and for authenticity analysis. The Raman hyperspectral imaging system comprises of a custom designed laser illumination system, sensing module, and a software interface. Laser illumination system generates a 785 nm laser line of high power, and the Gaussian like intensity distribution of laser beam is shaped by incorporating an engineered diffuser. The sensing module utilize Rayleigh filters, imaging spectrometer, and detector for collection of the Raman scattering signals along the laser line. A custom-built software to acquire Raman hyperspectral images which also facilitate the real time visualization of Raman chemical images of scanned samples. The developed system was employed for the simultaneous detection of Sudan dye and Congo red dye adulteration in paprika powder, and benzoyl peroxide and alloxan monohydrate adulteration in wheat flour at six different concentrations (w/w) from 0.05 to 1%. The collected Raman imaging data of the adulterated samples were analyzed to visualize and detect the adulterant concentrations by generating a binary image for each individual adulterant material. The results obtained based on the Raman chemical images of adulterants showed a strong correlation (R>0.98) between added and pixel based calculated concentration of adulterant materials. This developed Raman imaging system thus, can be considered as a powerful analytical technique for the quality and authenticity analysis of food products.
机译:潜在的食品掺假现象引起人们对食品安全性的日益关注,特别是对于粉状食品,其中可以添加廉价的地面材料或有害化学物质以增加粉量或获得所需的美学品质。由于对消费者造成潜在的健康威胁,因此有必要开发一种快速,无标签且无创的技术来检测各种食品中的掺假。因此,我们报告了一种快速拉曼高光谱成像技术的发展,用于检测食品掺假和真实性分析。拉曼高光谱成像系统包括定制设计的激光照明系统,传感模块和软件界面。激光照明系统会产生一条高功率的785 nm激光线,并且通过结合工程扩散器可以对激光束的高斯强度分布进行整形。传感模块利用瑞利滤波器,成像光谱仪和检测器收集沿激光线的拉曼散射信号。一个定制的软件,用于获取拉曼高光谱图像,这也有助于实时可视化扫描样品的拉曼化学图像。所开发的系统用于同时检测辣椒粉中苏丹红和刚果红的掺假,以及面粉中六种不同浓度(w / w)的过氧化苯甲酰过氧化物和四氧嘧啶一水合物的掺假(w / w),浓度从0.05%到1%。通过为每种单独的掺假物质生成二进制图像,分析收集的掺假样品的拉曼成像数据,以可视化并检测掺假浓度。基于掺杂物的拉曼化学图像获得的结果显示,添加的和基于像素的掺杂物浓度计算值之间具有很强的相关性(R> 0.98)。因此,这种发达的拉曼成像系统可以被认为是用于食品质量和真实性分析的强大分析技术。

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