2Friedel M, Patz C D, Dietrich H. Comparison of different measurement techniques and variable selection methods for FI' - MIR in wine analysis. [ J ]. Food Chemistry, 2013,141 ( 4 ) : 4200 -4207.
3Wu Z, Xu E, Long J, et al. Monitoring of fermentation process parameters of Chinese rice wine using attenuated total reflectance mid - infrared spectroscopy [ J ] . Food Control, 2015, 50: 405 -412.
4Cozzolino D,Smyth H E,Gishen M.Feasibility Study on the Use of Visible and Near -Infrared Spectroscopy Together with Chemometrics To Discriminate between Commercial White Wines of Different Varietal Origins [ J ] . J.agric.food Chem, 2003,51 (26) : 7703 -7708.
5Fernandez P L, Pablos F, MartiN M J, et al. Multi - element analysis of tea beverages by inductively coupled plasma atomic emission spectrometry. Food Chem [ J ]. Food Chemistry, 2002,76 (4) :483 -489.
6Nagy K, Bongiorno D, Avellonc G, ct al. High performance liquid chromatography -mass spectrometry based chemometric characterization of olive oils [ J ]. Journal of Chromatography A, 2005,1078 ( 1 -2) : 90 -97.
7Almeida C M, Vasconcelos M T S D. ICP - MS determination of strontium isotope ratio in wine in order to be used as a fingerprint of its regional origin [ J ] .Journal of Analytical Atomic Spectrometry, 2001,16 (6) : 607 - 611.
8Qin O, Zhao J, Chen Q, et al. Classification of rice wine according to different marked ages using a novel artificial olfactorytechnique based on eolorimetric sensor array [ J ] .Food Chemistry, 2013,138 (2 -3) : 1320 - 1324.
9Bot B L,Oulhote Y,Deguen S,et al. Using and interpreting isotope data for source identification[ J].Trac Trends in Analytical Chemistry, 2011,30 ( 2 ) : 302 - 312.
10Quansheng C, Jiao D, Jianrong C, et al. Rapid measurement of total acid content (TAC) in vinegar using near infrared spectroscopy based on efficient variables selection algorithm and nonlinear regression tools [ J ] . Food Chemistry, 2012, 135 ( 2 ) : 590 -595.