光谱学与光谱分析 |
|
|
|
|
|
Similar Spectrum of Infrared Spectrum and Its Application in Identification of Chinese Herbs |
XU Yong-qun1, CHEN Xiao-kang1*, CHEN Yong2, HUANG Dong-lan1, CHEN Zao-xin2, LU Wen-guan1 |
1. Department of Chemistry, Shaoguan College, Shaoguan 512005, China 2. Faculty of Chemistry and Light Engineering,Guangdong University of Technology,Guangzhou 510006, China |
|
|
Abstract In the present paper, the similar spectra of 18 samples, which include Astragalus, red-blue Astragalus and Codonopsis, were obtained in the range of 1 600~700 cm-1. The result showed that all kinds of herbs have their own characteristic similar spectra, and 18 samples can be identified according to the characteristic similar spectra. Furthermore, three correlation coefficients of 93 ganoderma samples were calculated which is in the range of 1 560~1 502, 1 460~1 421 and 1 319~1 260 cm-1 according to the information of similar spectrum of infrared spectrum of ganoderma. Without priori knowledge of the classification of these samples,the K-means cluster analysis can successfully divide them into four classes, i.e. Ganoderma lucidum and Ganoderma sinensis, Ganoderma atrum, Ganoderma aoshiba, Ganoderma multiplicatum. This result is consistent with the result of morphological classification.
|
Received: 2012-01-06
Accepted: 2012-04-30
|
|
Corresponding Authors:
CHEN Xiao-kang
E-mail: chk@sgu.edu.cn
|
|
[1] QIN Shen-jun,WANG Jian-bin,YAO Hong-wei,et al(秦身钧,王建滨,姚宏伟,等). Journal of Hebei Normal University(河北师范大学学报),2006,30(3):332. [2] CHEN Ling-ran,ZHANG Mao-sen(陈玲然,张懋森). Chemical Journal of Chinese Universities(高等学校化学学报),1990,11:1346. [3] XU Yong-qun,HUANG Hao,ZHOU Qun,et al(徐永群,黄 昊,周 群,等). Chinese Journal of Analytical Chemistry(分析化学),2003,31:6. [4] ZUO Zhen-zhao,ZHANG Yan-hong,YUAN Bo(左振钊,张艳红,袁 博). Journal of Hebei North University(河北北方学院学报),2005,21(5):11. [5] Pharmacopoeia Committee of Ministry of Health,the People’s Republic of China(中华人民共和国卫生部药典委员会编). Pharmacopoeia of the People’s Republic of China(中华人民共和国药典). Beijing:Chemical Industry Press(北京:化学工业出版社),2005. 130. [6] Ibrahim Snmez,Ali ümran Kmücü. Theor. Appl. Climatol,2011,106:500. [7] TANG Chuan-hong,SU Chun-li,ZHANG Jin-song,et al(唐传红,苏春丽,张劲松,等). Acta Edulis Fungi(食用菌学报),2007,14(3):87. [8] JIA Ding-hong,ZHENG Lin-yong,ZHANG Xiao-ping,et al(贾定洪,郑林用,张小平,等). Southwest China Journal of Agricultural Sciences(西南农业学报),2003,16:15. [9] GU Sheng-dong(谷胜东). Ganoderma Lucidum(灵芝). Tianjin:Tianjin Science and Technology Press(天津:天津科学技术出版社),2005. 20.
|
[1] |
GUO Ya-fei1, CAO Qiang1, YE Lei-lei1, ZHANG Cheng-yuan1, KOU Ren-bo1, WANG Jun-mei1, GUO Mei1, 2*. Double Index Sequence Analysis of FTIR and Anti-Inflammatory Spectrum Effect Relationship of Rheum Tanguticum[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2024, 44(01): 188-196. |
[2] |
XU Rong1, AO Dong-mei2*, LI Man-tian1, 2, LIU Sai1, GUO Kun1, HU Ying2, YANG Chun-mei2, XU Chang-qing1. Study on Traditional Chinese Medicine of Lonicera L. Based on Infrared Spectroscopy and Cluster Analysis[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2023, 43(11): 3518-3523. |
[3] |
JIA Hao1, 3, 4, ZHANG Wei-fang1, 3, LEI Jing-wei1, 3*, LI Ying-ying1, 3, YANG Chun-jing2, 3*, XIE Cai-xia1, 3, GONG Hai-yan1, 3, DING Xin-yu1, YAO Tian-yi1. Study on Infrared Fingerprint of the Classical Famous
Prescription Yiguanjian[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2023, 43(10): 3202-3210. |
[4] |
LIU Si-qi1, FENG Guo-hong1*, TANG Jie2, REN Jia-qi1. Research on Identification of Wood Species by Mid-Infrared Spectroscopy Based on CA-SDP-DenseNet[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2023, 43(03): 814-822. |
[5] |
CHEN Yong1, 2, GUO Yun-zhu1, WANG Wei3*, WU Xiao-hong1, 2*, JIA Hong-wen4, WU Bin4. Clustering Analysis of FTIR Spectra Using Fuzzy K-Harmonic-Kohonen Clustering Network[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2023, 43(01): 268-272. |
[6] |
SHANG Chao-nan1, XIE Yan-li2, GAO Xiao3, ZHOU Xue-qing2, ZHAO Zhen-dong2, MA Jia-xin1, CUI Peng3, WEI Xiao-xiao3, FENG Yu-hong1, 2*, ZHANG Ming-nan2*. Research on Qualitative and Quantitative Analysis of PE and EVA in Biodegradable Materials by FTIR[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42(11): 3380-3386. |
[7] |
YUAN Li1, XIE Bei-bei2, CUI Yong-qiang2, ZHANG Xiao-dan2, JIAO Hui-hui2. Research on Oil Spill Status Recognition Based on LIF[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42(07): 2018-2024. |
[8] |
CHEN Wei-na1, GUO Zhong-zheng1, LI Kai-kai1, YANG Yu-zhu1, YANG Xu2*. Micro Confocal Raman Spectroscopy Combined With Chemometrical Method for Forensic Differentiation of Electrostatic Copy Paper[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42(07): 2033-2038. |
[9] |
MIAO Shu-guang1, SHAO Dan1*, LIU Zhong-yu2, 3, FAN Qiang1, LI Su-wen1, DING En-jie2, 3. Study on Coal-Rock Identification Method Based on Terahertz
Time-Domain Spectroscopy[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42(06): 1755-1760. |
[10] |
WANG Ling-ling1, 2, 3, WANG Bo1, 2, 3, XIONG Feng1, 2, 3, YANG Lu-cun1, 2, LI Jing-jing4, XIAO Yuan-ming1, 2, 3, ZHOU Guo-ying1, 2*. A Comparative Study of Inorganic Elements in Cultivativing Astragalus Membranaceus From Different Habitats[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42(05): 1407-1412. |
[11] |
YANG Yu-qing1, CAI Jiang-hui1, 2*, YANG Hai-feng1*, ZHAO Xu-jun1, YIN Xiao-na1. LAMOST Unknown Spectral Analysis Based on Influence Space and Data Field[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2022, 42(04): 1186-1191. |
[12] |
ZHANG Wei-fang1, 2, FAN Ke-feng3, LEI Jing-wei1, 2*, JI Liang1, 2. Infrared Fingerprint and Multivariate Statistical Analysis of Rehmannia Glutinosa[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(11): 3392-3398. |
[13] |
LIU Ting-yue1, DAI Jing-jing2*, TIAN Shu-fang1. A Neural Network Recognition Method for Garnets Subclass Based on Hyper Spectroscopy[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(06): 1758-1763. |
[14] |
LI Meng-li, YIN Yong*, YUAN Yun-xia, LI Xin, LIU Xue-ru. Feature Selection of 3D Fluorescence Data Based on Storage Room Gas and Preliminary Early Warning of Banana Spoilage[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2021, 41(02): 558-564. |
[15] |
YU Ying-tao1, WANG Ji-feng1, SUN Yu-ye1, LI Fu-juan2, WAN Chao3. Identification of Adulterated Olive Oil by Two-Dimensional Raman Correlation Spectroscopy With Cooming as a Perturbation Factor[J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2020, 40(12): 3727-3731. |
|
|
|
|