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Simultaneous Recognition of Species, Quality Grades, and Multivariate Calibration of Antioxidant Activities for 12 Famous Green Teas Using Mid- and Near-Infrared Spectroscopy Coupled with Chemometrics.

Authors :
Fu, Haiyan
Hu, Ou
Xu, Lu
Fan, Yao
Shi, Qiong
Guo, Xiaoming
Lan, Wei
Yang, Tianming
Xie, Shunping
She, Yuanbin
Source :
Journal of Analytical Methods in Chemistry. 1/2/2019, p1-14. 14p.
Publication Year :
2019

Abstract

In this paper, mid- and near-infrared spectroscopy fingerprints were combined to simultaneously discriminate 12 famous green teas and quantitatively characterize their antioxidant activities using chemometrics. A supervised pattern recognition method based on partial least square discriminant analysis (PLSDA) was adopted to classify the 12 famous green teas with different species and quality grades, and then optimized sample-weighted least-squares support vector machine (OSWLS-SVM) based on particle swarm optimization was employed to investigate the quantitative relationship between their antioxidant activities and the spectral fingerprints. As a result, 12 famous green teas can be discriminated with a recognition rate of 100% by MIR or NIR data. However, compared with individual instrumental data, data fusion was more adequate for modeling the antioxidant activities of samples with RMSEP of 0.0065. Finally, the performance of the proposed method was evaluated and validated by some statistical parameters and the elliptical joint confidence region (EJCR) test. The results indicate that fusion of mid- and near-infrared spectroscopy suggests a new avenue to discriminate the species and grades of green teas. Moreover, the proposed method also implies other promising applications with more accurate multivariate calibration of antioxidant activities. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20908865
Database :
Academic Search Index
Journal :
Journal of Analytical Methods in Chemistry
Publication Type :
Academic Journal
Accession number :
133823371
Full Text :
https://doi.org/10.1155/2019/4372395