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中国精品科技期刊2020
覃小丽, 钟金锋, 张甫生. 傅里叶近红外光谱法快速检测魔芋葡甘聚糖中掺假羧甲基纤维素含量[J]. 食品工业科技, 2016, (08): 54-58. DOI: 10.13386/j.issn1002-0306.2016.08.002
引用本文: 覃小丽, 钟金锋, 张甫生. 傅里叶近红外光谱法快速检测魔芋葡甘聚糖中掺假羧甲基纤维素含量[J]. 食品工业科技, 2016, (08): 54-58. DOI: 10.13386/j.issn1002-0306.2016.08.002
QIN Xiao-li, ZHONG Jin-feng, ZHANG Fu-sheng. Rapid identification of konjac glucomannan adulterated with carboxymethyl cellulose based on FT-NIR spectroscopy[J]. Science and Technology of Food Industry, 2016, (08): 54-58. DOI: 10.13386/j.issn1002-0306.2016.08.002
Citation: QIN Xiao-li, ZHONG Jin-feng, ZHANG Fu-sheng. Rapid identification of konjac glucomannan adulterated with carboxymethyl cellulose based on FT-NIR spectroscopy[J]. Science and Technology of Food Industry, 2016, (08): 54-58. DOI: 10.13386/j.issn1002-0306.2016.08.002

傅里叶近红外光谱法快速检测魔芋葡甘聚糖中掺假羧甲基纤维素含量

Rapid identification of konjac glucomannan adulterated with carboxymethyl cellulose based on FT-NIR spectroscopy

  • 摘要: 采用傅里叶近红外光谱检测魔芋葡甘聚糖中羧甲基纤维素掺假比例,以基线校正、平滑、矢量归一化、一阶求导和二阶求导法对光谱进行处理,利用偏最小二乘法建立了相应的数学模型,并通过交互验证和外部验证检验了鉴别模型的预测精度和可靠性。所建立的校正集模型的决定系数R_c~2值为0.933~0.997,校正均方根误差范围为7.64%~1.56%;结合验证集模型的决定系数和均方根误差确定以一阶导数(5平滑点)处理光谱,所得模型预测效果最佳,模型的预测均方根误差为8.37%;校正模型中羧甲基纤维素在魔芋葡甘聚糖中掺假水平的预测值和实际值的相关系数为0.9905。结果表明,近红外光谱结合化学计量法在有效、快速、准确地定量检测魔芋葡甘聚糖中掺假羧甲基纤维素的可行性。 

     

    Abstract: The carboxymethyl cellulose( CMC) adulterated in konjac glucomannan( KGM) was detected by Fourier transform near infrared spectroscopy(FT-NIR). Principal component analysis and partial least squares techniques were used for qualitatively analyzing of the spectra and establishing calibration models from the spectra pretreated by various correction algorithms including baseline correction,smoothing,vector normalization,first derivative and second derivative. The predication accuracy and reliability of the models were checked by cross-validation and external validation. Coefficients of determination(Rc2 in calibration set) and root mean square error of the calibration models ranged from 0.933 to 0.997 and 7.64% to 1.56%,respectively,depending on the mathematical pre-treatment methods on the spectra. The optimal calibration model with first derivative(5 points) pretreatment was obtained by using the validation set that gave a root mean square error of prediction of 8.37%. The analytical results demonstrated that the correlation between the chemical value(true value) of samples of calibration set and the FT-NIR predicated value was 0.9905. The results indicated that chemometric- assisted FT- NIR spectroscopy could be a simple and efficient tool for the detection and quantification of KGM adulterated with cheaper CMC.

     

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