SERS Spectrum Recognition for Malachite Green Real-Time Detection in Aquaculture Used Seawater
GUO Shu-xia1, ZHANG Feng-ling1, GAO Pan1, ZENG Yong-ming2, CHEN Hong-ju2, LIU Guo-kun2, WANG Lei1*
1. Department of Mechanical and Electrical Engineering, Xiamen University, Xiamen 361005, China 2. Department of Chemistry, Xiamen University, Xiamen 361005, China
Abstract:Surface enhanced Raman spectroscopy (SERS) is a useful chemical analysis technique for its high sensitivity, which was used for Malachite Green qualitative analysis in real cases in the present article. Automatic recognition algorithms were put forward, which is a combination of three modules, including a robust Fourier transform for background rejection, a principal component analysis based character extraction method and artificial neural networks for classifying. Low-frequency background was rejected by iterative Fourier transform in order to eliminate the effect of variable background. The best principal component combination was obtained according to the Euclidean distances between-class and within-class in the sample space. And a three-layer back-propagating neural network was constructed for classifying. As it was shown, it would both minimize the network and reduce the classifying mistakes from variable baseline and Raman characters of other substances in seawater with best principal component combination. Malachite Green real-time detection in aquaculture used seawater was realized with a lower density limit of 0.1 μg·L-1. Moreover, the method proposed in this article could be extended for other sol analysis based on SERS technique.
[1] GU Zhen-hua, ZHAO Yu-xiang, WU Wei-ping, et al(顾振华,赵宇翔,吴卫平,等). Chemical World(化学世界),2011,1: 14. [2] Igor Chourpa, Franck H Lei, Pierre Dubois, et al. Chemical Society Reviews, 2008, 37(5): 993. [3] LI Chun-ying, LAI Ke-qiang, ZHANG Yuan-yuan(李春颖,赖克强,张源园). Acta Chimica Sinica(化学学报), 2013, 71(2): 221. [4] REN Bin, LI Jian-feng, HUANG Yi-fan(任 斌,李剑锋,黄逸凡). Electrochemistry(电化学),2010,16(3): 305. [5] Gemperline P L. Practical Guide to Chemometrics(化学计量学实用指南). 2nd Edition(第2版). Translated by WU Hai-long, KANG Chao(吴海龙,康 超,译). Beijing: Science Press(北京:科学出版社),2012. 3. [6] Baek S J, Park Aaron, Kim J, et al. Chemometrics and Intelligent Laboratory Systems, 2009, 98(1): 24. [7] Georg Schulze, Andrew Jirasek, Marcia M L Yu, et al. Applied Spectroscopoy, 2005, 59(2): 545. [8] CHU Xiao-li(褚小立). Molecular Spectroscopy Analytical Technology Combined with Chemometrics and its Applications(化学计量学方法与分子光谱分析技术). Beijing: Chemical Industry Press(北京:化学工业出版社),2011. 7. [9] Mrio César Ugulino Araújo, Teresa Cristina Bezerra Saldanha, Roberto Kawakami Harrop Galvo, et al. Chemometrics and Intelligent Laboratory Systems, 2001, 57(2): 65. [10] JIANG Zong-li(蒋宗礼). Introduction to Artificial Neural Networks(人工神经网络导论). Beijing: Higher Education Press(北京:高等教育出版社),2001. 8.