Formalin Adulteration Detection in Food Using E-nose based on Nanocomposite Gas Sensors

Yu Thazin, Tanthip Eamsa-ard, T. Pobkrut, T. Kerdcharoen
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引用次数: 4

Abstract

The aim of this work is to develop an electronic nose (e-nose) system for the detection of toxic formaldehyde as a response to illegal addition of formalin into foods in the markets and food processing industries. In this work, nanocomposites of 0-phenylenediamine (OPD) with different functionalized single-walled carbon nanotubes (f-SWCNTs) were used as gas sensing materials. The gas sensors have been tested to perceive the individual response to different volatile organic compounds (VOCs). Since they showed the highest response to formaldehyde which is the main component in formalin solution, the gas sensor array is appropriate for the detection of food contamination due to formalin. By setting up two conditions, namely non-treatment and formalin treatment to raw chicken, shrimp and tofu, as well as shrimps with different concentrations of formalin treatment, the odor associated with those conditions was investigated by e-nose. Discrimination and analysis of non-treatment (natural) and formalin contaminated samples were analyzed by the principal component analysis (PCA). Our findings support the integration of nanocomposite gas sensors into e-nose as an advantageous tool for food safety applications.
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基于纳米复合气体传感器的电子鼻检测食品中福尔马林掺假
这项工作的目的是开发一种电子鼻(电子鼻)系统,用于检测有毒甲醛,以应对市场和食品加工业中非法添加福尔马林的食品。在这项工作中,0-苯二胺(OPD)与不同功能化单壁碳纳米管(f-SWCNTs)的纳米复合材料被用作气敏材料。气体传感器已经过测试,以感知个体对不同挥发性有机化合物(VOCs)的反应。由于它们对福尔马林溶液中主要成分甲醛的响应最高,因此该气体传感器阵列适用于福尔马林污染食品的检测。通过对生鸡、生虾、生豆腐设置未处理和处理福尔马林两种条件,以及不同浓度福尔马林处理对虾,利用电子鼻对这两种条件下的气味进行了研究。采用主成分分析法(PCA)对未处理(天然)和福尔马林污染样品进行判别分析。我们的研究结果支持将纳米复合气体传感器集成到电子鼻中,作为食品安全应用的有利工具。
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