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DU Jiameng, CHEN Guoqing, MA Chaoqun, XI Liuhua, ZHU Chun, ZHAO Jinchen, GU Song. Determination of carmine concentration with 3-D synchronous fluorescence spectrometry[J]. LASER TECHNOLOGY, 2017, 41(4): 503-506. DOI: 10.7510/jgjs.issn.1001-3806.2017.04.009
Citation: DU Jiameng, CHEN Guoqing, MA Chaoqun, XI Liuhua, ZHU Chun, ZHAO Jinchen, GU Song. Determination of carmine concentration with 3-D synchronous fluorescence spectrometry[J]. LASER TECHNOLOGY, 2017, 41(4): 503-506. DOI: 10.7510/jgjs.issn.1001-3806.2017.04.009

Determination of carmine concentration with 3-D synchronous fluorescence spectrometry

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  • Received Date: September 13, 2016
  • Revised Date: October 26, 2016
  • Published Date: July 24, 2017
  • In order to determine carmine concentration in the mixed pigment solution, normalization method was used to preprocess the fluorescence spectra. The processed data were combined with radial basis function neural network to establish the prediction model of carmine content. The average relative error of the prediction results of 3-D synchronous fluorescence spectrometry and 3-D ordinary fluorescence spectrometry were 2.86% and 11.12% respectively. The results showed that the 3-D synchronous fluorescence spectrometry was superior for the determination of the mixed pigment solution. The research provides the help for the prediction of the pigment concentration in the mixed pigment solution.
  • [1]
    NATIONAL HEALTH AND FAMILY PLANNING COMMISSION OF THE PEOPLE'S REPUBLIC OF CHINA.GB2760-2011 National food safety standards-standards for uses of food additives [S].Beijing: Standards Press of China, 2011: 8-179(in Chinese).
    [2]
    CHEN G Q. Studies on application of fluorescence spectroscopy in food safety supervision[D]. Wuxi: Jiangnan University, 2010: 1-2 (in Chinese).
    [3]
    VAVROUS A, VAPENKA L, SOSNOVCOVA J, et al. Method for analysis of 68 organic contaminants in food contact paper using gas and liquid chromatography coupled with tandem mass spectrometry[J]. Food Control, 2016, 60:221-229. DOI: 10.1016/j.foodcont.2015.07.043
    [4]
    XIA L Y, HAN Y Y, KUANG L H, et al. Simultaneous determination of basic orange 2, metanil yellow, tartrazine, sunset yellow in bean-product and acid orange Ⅱ, ponceau 2R, rhodanmine B in chili powder by thin-layer chromatographic scanning [J]. Chinese Journal of Analysis Laboratory, 2010, 29(6):15-18(in Chinese). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=fxsys201006004
    [5]
    TANG T X, XU X J, WANG D M, et al. A rapid and green limit test method for five synthetic colorants in foods using polyamide thin-layer chromatography[J]. Food Analytical Methods, 2015, 8(2):459-466. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=269e8e9d95c32d411eae82f5b1da455d
    [6]
    VLAJKOVIC J, ANDRIC F, RISTIVOJEVIC P, et al. Development and validation of a tlc method for the analysis of synthetic food-stuff dyes[J]. Journal of Liquid Chromatography & Related Technologies, 2013, 36(17):2476-2488. DOI: 10.1080/10826076.2013.790771
    [7]
    BLAZHEYEVSKIY N Y, LABUZOVA Y Y. Determination of cefazolin by oscillographic polarography as its S, S'-dioxide[J]. Journal of Analytical Chemistry, 2014, 69(9):883-886. DOI: 10.1134/S106193481407003X
    [8]
    JIANG Zh L, LI F, LIANG H. Resonance scattering spectroscopic study of the system of PMo12 heteropoly acid and rhodamin S[J]. Acta Chimica Sinica, 2000, 58(8):1059-1062(in Chinese). http://en.cnki.com.cn/Article_en/CJFDTotal-HXXB200008023.htm
    [9]
    MEI F, ZHAO X Y, QU F. Comparison of interaction between cytochrome c and single strain deoxyribonucleic acid pools based on capillary electrophoresis[J]. Chinese Journal of Chromatography, 2012, 30(12):1229-1234(in Chinese). http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=sp201212004
    [10]
    REFINETTI P, MORGENTHALER S, EKSTROM P O. Cycling temperature capillary electrophoresis: Aquantitative, fast and inexpensive method to detect mutations in mixed populations of human mitochondrial DNA[J]. Mitochondrion, 2016, 29:65-74. DOI: 10.1016/j.mito.2016.04.006
    [11]
    ZHENG C Y, GUO Zh H, JIN L. Measurement of total viable count on chilled mutton surface based on hyperspectral imaging technique[J]. Laser Technology, 2015, 39(2):284-288(in Chinese). http://d.old.wanfangdata.com.cn/Periodical/spgykj201420016
    [12]
    WANG X J, YANG L, LIU D L, et al. Determination of vanillic acid in rhizoma picrorhizae and body fluids by excitation-emission matrix fluorescence coupled with second-order calibration methods[J].Journal of Heibei Normal University(Natural Science Edition), 2016, 40(5):412-417(in Chinese). http://en.cnki.com.cn/Article_en/CJFDTotal-HBSZ201605008.htm
    [13]
    MAO L X, ZHANG X L, FAN S H. Determination of content of raw juice in orange juice by synchronous fluorescence spectrometry[J]. Science and Technology of Food Industry, 2016, 37(6):90-93(in Chinese). http://d.old.wanfangdata.com.cn/Periodical/spgykj201606020
    [14]
    WANG Sh T, CHEN D Y, WANG X L, et al. Detection of polycyclic aromatic hydrocarbons combining fluorescence analysis with ABC-BP neural network [J]. Chinese Journal of Lasers, 2015, 42(11):1115001(in Chinese). DOI: 10.3788/CJL
    [15]
    XU J G, WANG Z B. Fluorescence spectroscopy [M]. 3rd ed. Beijing: Science Press, 2006: 131-160(in Chinese).
    [16]
    KUMAR K, MISHRA A K. Parallel factor (PARAFAC) analysis on total synchronous fluorescence spectroscopy (TSFS) data sets in excitation-emission matrix fluorescence (EEMF) layout: Certain practical aspects[J]. Chemometrics and Intelligent Laboratory Systems, 2015, 147:121-130. DOI: 10.1016/j.chemolab.2015.08.008
    [17]
    LIU B, GUO H X. MATLAB neural network super learning handbook[M]. Beijing: Beijing University of Posts and Telecommunications Press, 2014: 194-216(in Chinese).
    [18]
    SHI F, WANG X C, YU L, et al. 30 case analysis of MATLAB neural network[M]. Beijing: Beijing University of Aeronautics and Astronautics Press, 2011: 65-73(in Chinese).
    [19]
    LI R, CHEN G Q, ZHU C, et al. Quantitative analysis of two food colours using excitation-emission matrix spectra coupled with parallel factor algorithm[J]. Spectroscopy and Spectral Analysis, 2014, 34(1):111-115(in Chinese). http://europepmc.org/abstract/med/24783544
    [20]
    KONG F B. The study of the synchronous fluorescence of several food colors[D].Wuxi: Jiangnan University, 2013: 31-43(in Chinese).
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