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首页> 外文期刊>Journal of Food Measurement and Characterization >Evaluation of a commercial electronic nose system coupled with universal gas sensing chamber for sensing indicator compounds associated with meat safety
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Evaluation of a commercial electronic nose system coupled with universal gas sensing chamber for sensing indicator compounds associated with meat safety

机译:对带有通用气体传感腔的商用电子鼻系统进行评估,以检测与肉类安全性相关的指示剂

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摘要

This study was conducted to evaluate the performance of a commercial electronic nose (Cyranose 320™) for sensing indicator compounds (ethanol and acetic acid) associated with spoiled beef. The present study reported the sensitivity of an array of 32 sensors to ethanol and acetic acid. Different vapor concentrations of ethanol (37, 100, 250 and 500 ppm) and acetic acid (38, 75, 100, 200 and 300 ppm) were tested to evaluate the performance of the commercial system. An in-house designed universal gas sensing and characterization system was coupled with the electronic nose system to generate the desired gas concentration. The raw smell print patterns were obtained and analyzed for individual and multiple detectors. Tukey’s multiple comparison technique was performed to analyze the response of individual detectors. Area above and below the baseline were selected as two features for pair wise comparison of the detectors. Different sensors showed different responses between various concentrations of gases. Analysis of multiple detectors was performed using linear and quadratic discriminant analysis (LDA and QDA) along with bootstrap. LDA along with bootstrap provided the highest total classification accuracies of 94.34 % between 100 and 200 ppm of acetic acid. QDA provided higher total classification accuracy of 89.69 % at lower concentration level of 38 and 75 ppm for acetic acid and 84.78 % between 37 and 100 ppm of ethanol. Hence, QDA was a better model of choice at lower concentrations. This study proved non-selective nature of sensors and showed that simultaneous use of multiple sensor information provided better classification accuracy for discriminating various gas concentrations as compared to using individual sensor output.
机译:进行这项研究是为了评估商用电子鼻(Cyranose 320™)对与变质牛肉相关的指示剂化合物(乙醇和乙酸)的感测性能。本研究报告了32个传感器阵列对乙醇和乙酸的敏感性。测试了乙醇(37、100、250和500ppm)和乙酸(38、75、100、200和300ppm)的不同蒸气浓度,以评估商用系统的性能。内部设计的通用气体传感和表征系统与电子鼻系统配合使用,以产生所需的气体浓度。获得了原始气味印刷图案,并针对单个和多个检测器进行了分析。 Tukey的多重比较技术用于分析单个探测器的响应。选择基线以上和以下的区域作为两个特征,以进行探测器的成对比较。不同的传感器在不同浓度的气体之间显示出不同的响应。使用线性和二次判别分析(LDA和QDA)以及自举程序对多个检测器进行分析。 LDA和自举系统在100至200 ppm的乙酸之间提供了最高的94.34%的总分类精度。在较低浓度的乙酸(38和75 ppm)和37%(100 ppm)的乙醇之间84.78%的浓度水平下,QDA可以提供89.69%的更高总分类精度。因此,在较低浓度下,QDA是更好的选择模型。这项研究证明了传感器的非选择性性质,并表明与使用单个传感器输出相比,同时使用多个传感器信息可提供更好的分类精度,以区分各种气体浓度。

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