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中国精品科技期刊2020
白云慧, 张泰铭, 张凤清. 利用非线性化学指纹图谱鉴别人参真伪和产地[J]. 食品工业科技, 2015, (13): 302-308. DOI: 10.13386/j.issn1002-0306.2015.13.055
引用本文: 白云慧, 张泰铭, 张凤清. 利用非线性化学指纹图谱鉴别人参真伪和产地[J]. 食品工业科技, 2015, (13): 302-308. DOI: 10.13386/j.issn1002-0306.2015.13.055
BAI Yun-hui, ZHANG Tai-ming, ZHANG Feng-qing. Identifying the authenticity and producing area of panax using non- linear chemical fingerprint[J]. Science and Technology of Food Industry, 2015, (13): 302-308. DOI: 10.13386/j.issn1002-0306.2015.13.055
Citation: BAI Yun-hui, ZHANG Tai-ming, ZHANG Feng-qing. Identifying the authenticity and producing area of panax using non- linear chemical fingerprint[J]. Science and Technology of Food Industry, 2015, (13): 302-308. DOI: 10.13386/j.issn1002-0306.2015.13.055

利用非线性化学指纹图谱鉴别人参真伪和产地

Identifying the authenticity and producing area of panax using non- linear chemical fingerprint

  • 摘要: 利用非线性化学指纹图谱对7个不同产地的人参及其伪品以及其它参类进行研究,提出鉴别人参真伪和产地的新方法。向"硫酸-硫酸锰-丙酮-溴酸钠"混合液中加入样品,产生非线性化学反应,通过优化反应条件,检测不同产地和种类样品的指纹图谱,并确定其系统相似度。结果表明:样品用量为0.6g,反应温度为37℃时,样品非线性化学指纹图谱具有良好重现性和特征性。不同种类的样品具有明显不同特征的指纹图谱;同一产地人参的系统相似度在0.97120.9920之间,而不同产地人参的相似度在0.75480.9403范围内。利用人参非线性化学指纹图谱的直观特征和系统相似度可分别准确地鉴定人参的真伪和产地。 

     

    Abstract: Samples of panax from 7 producing areas and its fakes as well as other ginsengs were investigated using non- linear chemical fingerprint, and a new method to identify the authenticity and producing area of panax sample was put forward. Nonlinear chemical reactions could took place in the systems consisting of H2SO4, Mn SO4, CH3COCH3, Na Br O3 and components of ginseng samples and the optimal reaction conditions were investigated by adjusting the sample dosage and reaction temperature. The fingerprints of samples of different kinds and producing areas were determined under the optimal conditions, and their system similarities were determined.The results showed that when dosage of detection was 0.6g and the reaction temperature was 37℃, the non- linear chemical fingerprints had good reproducibility and characteristic. The fingerprint characteristics of different ginsengs were obviously different; the system similarities of panax samples from the same producing area were between 0.9712 ~ 0.9920, whereas those from different producing areas were 0.7548 ~ 0.9403. The authenticity and producing area of panax could be identified accurately by the visual characteristic and system similarity of its non- linear chemical fingerprint, respectively.

     

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