Utilizing Pattern Recognition Methods for Detecting the Adulteration of Glucose and Fructose in Honey
The aroma of honey is one of the important parameters in honey grading and that is depended on several factors, such as geographical origin, climate, botanical and environmental conditions. The aim of this study was the development and evaluation of an electronic nose as a new, fast and nondestructi...
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Research Institute of Food Science and Technology
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doaj-88edb2f1dc9a4a51b5710e43b561adba2020-11-25T01:51:37ZfasResearch Institute of Food Science and Technology Pizhūhish va Nuāvarī dar ̒Ulūm va Sanāyi̒-i Ghaz̠āyī2252-09372538-23572019-02-017441943010.22101/jrifst.2019.02.23.74682968Utilizing Pattern Recognition Methods for Detecting the Adulteration of Glucose and Fructose in HoneySaeed Faal0Mohammad Loghavi1Saadat Kamgar2Mohammad Hoseyn Raoufat3Mohammad Taghi Golmakani4Assistant professor, Biosystems Engineering Department, Shiraz University, Shiraz, IranProfessor, Biosystems Engineering Department, Shiraz University, Shiraz, IranAssistant professor, Biosystems Engineering Department, Shiraz University, Shiraz, IranProfessor, Biosystems Engineering Department, Shiraz University, Shiraz, IranAssociate Professor, Food Science Engineering Department, Shiraz University, Shiraz, IranThe aroma of honey is one of the important parameters in honey grading and that is depended on several factors, such as geographical origin, climate, botanical and environmental conditions. The aim of this study was the development and evaluation of an electronic nose as a new, fast and nondestructive method for detecting adulteration in honey. In this research, the ability of electronic nose as a non-destructive system for detecting honey adulteration with different percentages (pure, 20% syrup, 40% syrup, 60% syrup and 80% syrup) was investigated. The developed electronic nose consists of 8 metal oxide semiconductor sensors (MOS) to detect adultery in honey. After preprocessing the data obtained from the electronic nose the chemometric methods were utilized to classify different type of honey. Principle component analysis (PCA), hierarchical cluster analysis (HCA), linear discriminate analysis (LDA), were used to analyze the data obtained from electronic nose. Based on the results, the detection of adulteration was 98.4% of variance for PCA method, 99% accuracy for HCA method and 100% classification power by LDA method.http://journals.rifst.ac.ir/article_82968_ad2cd407359d245bd294f951f30578fe.pdfadulterationelectronic nosehoneypattern recognitionsensor |
collection |
DOAJ |
language |
fas |
format |
Article |
sources |
DOAJ |
author |
Saeed Faal Mohammad Loghavi Saadat Kamgar Mohammad Hoseyn Raoufat Mohammad Taghi Golmakani |
spellingShingle |
Saeed Faal Mohammad Loghavi Saadat Kamgar Mohammad Hoseyn Raoufat Mohammad Taghi Golmakani Utilizing Pattern Recognition Methods for Detecting the Adulteration of Glucose and Fructose in Honey Pizhūhish va Nuāvarī dar ̒Ulūm va Sanāyi̒-i Ghaz̠āyī adulteration electronic nose honey pattern recognition sensor |
author_facet |
Saeed Faal Mohammad Loghavi Saadat Kamgar Mohammad Hoseyn Raoufat Mohammad Taghi Golmakani |
author_sort |
Saeed Faal |
title |
Utilizing Pattern Recognition Methods for Detecting the Adulteration of Glucose and Fructose in Honey |
title_short |
Utilizing Pattern Recognition Methods for Detecting the Adulteration of Glucose and Fructose in Honey |
title_full |
Utilizing Pattern Recognition Methods for Detecting the Adulteration of Glucose and Fructose in Honey |
title_fullStr |
Utilizing Pattern Recognition Methods for Detecting the Adulteration of Glucose and Fructose in Honey |
title_full_unstemmed |
Utilizing Pattern Recognition Methods for Detecting the Adulteration of Glucose and Fructose in Honey |
title_sort |
utilizing pattern recognition methods for detecting the adulteration of glucose and fructose in honey |
publisher |
Research Institute of Food Science and Technology |
series |
Pizhūhish va Nuāvarī dar ̒Ulūm va Sanāyi̒-i Ghaz̠āyī |
issn |
2252-0937 2538-2357 |
publishDate |
2019-02-01 |
description |
The aroma of honey is one of the important parameters in honey grading and that is depended on several factors, such as geographical origin, climate, botanical and environmental conditions. The aim of this study was the development and evaluation of an electronic nose as a new, fast and nondestructive method for detecting adulteration in honey. In this research, the ability of electronic nose as a non-destructive system for detecting honey adulteration with different percentages (pure, 20% syrup, 40% syrup, 60% syrup and 80% syrup) was investigated. The developed electronic nose consists of 8 metal oxide semiconductor sensors (MOS) to detect adultery in honey. After preprocessing the data obtained from the electronic nose the chemometric methods were utilized to classify different type of honey. Principle component analysis (PCA), hierarchical cluster analysis (HCA), linear discriminate analysis (LDA), were used to analyze the data obtained from electronic nose. Based on the results, the detection of adulteration was 98.4% of variance for PCA method, 99% accuracy for HCA method and 100% classification power by LDA method. |
topic |
adulteration electronic nose honey pattern recognition sensor |
url |
http://journals.rifst.ac.ir/article_82968_ad2cd407359d245bd294f951f30578fe.pdf |
work_keys_str_mv |
AT saeedfaal utilizingpatternrecognitionmethodsfordetectingtheadulterationofglucoseandfructoseinhoney AT mohammadloghavi utilizingpatternrecognitionmethodsfordetectingtheadulterationofglucoseandfructoseinhoney AT saadatkamgar utilizingpatternrecognitionmethodsfordetectingtheadulterationofglucoseandfructoseinhoney AT mohammadhoseynraoufat utilizingpatternrecognitionmethodsfordetectingtheadulterationofglucoseandfructoseinhoney AT mohammadtaghigolmakani utilizingpatternrecognitionmethodsfordetectingtheadulterationofglucoseandfructoseinhoney |
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