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A Novel Electronic Nose as Adaptable Device to Judge Microbiological Quality and Safety in Foodstuff

机译:一种新颖的电子鼻作为判断食品微生物质量和安全性的自适应装置

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摘要

This paper presents different applications, in various foodstuffs, by a novel electronic nose (EN) based on a mixed metal oxide sensors array composed of thin films as well as nanowires. The electronic nose used for this work has been done, starting from the commercial model EOS835 produced by SACMI Scarl. The SENSOR Lab (CNR-INO, Brescia) has produced both typologies of sensors, classical MOX and the new technologies with nanowire. The aim of this work was to test and to illustrate the broad spectrum of potential uses of the EN technique in food quality control and microbial contamination diagnosis. The EN technique was coupled with classical microbiological and chemical techniques, like gas chromatography with mass spectroscopy (GC-MS) with SPME technique. Three different scenarios are presented: (a) detection of indigenous mould in green coffee beans, (b) selection of microbiological spoilage of Lactic Acid Bacteria (LAB), and (c) monitoring of potable water. In each case, the novel EN was able to identify the spoiled product by means of the alterations in the pattern of volatile organic compounds (VOCs), reconstructed by principal component analysis (PCA) of the sensor responses. The achieved results strongly encourage the use of EN in industrial laboratories. Finally, recent trends and future directions are illustrated.
机译:本文通过基于由薄膜以及纳米线组成的混合金属氧化物传感器阵列的新型电子鼻(EN),提出了在各种食品中的不同应用。从SACMI Scarl生产的商业型号EOS835开始,已经完成了用于这项工作的电子鼻。 SENSOR实验室(布雷西亚CNR-INO)既生产传感器类型,也生产经典MOX和纳米线新技术。这项工作的目的是测试和说明EN技术在食品质量控制和微生物污染诊断中的广泛用途。 EN技术与经典的微生物和化学技术相结合,例如采用SPME技术的气相色谱-质谱(GC-MS)。提出了三种不同的方案:(a)检测生咖啡豆中的原生霉菌;(b)选择乳酸菌(LAB)的微生物变质;以及(c)监测饮用水。在每种情况下,新型EN都能通过挥发性有机化合物(VOC)模式的变化来识别变质产品,该变化是通过传感器响应的主成分分析(PCA)重建的。取得的成果强烈鼓励在工业实验室中使用EN。最后,说明了近期趋势和未来方向。

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