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傅里叶变换红外衰减全反射光谱结合多变量分析在快速评估黄油掺假中的应用。

Application of FTIR-ATR spectroscopy coupled with multivariate analysis for rapid estimation of butter adulteration.

作者信息

Fadzlillah Nurrulhidayah Ahmad, Rohman Abdul, Ismail Amin, Mustafa Shuhaimi, Khatib Alfi

机构信息

Laboratory of Halal Science Research, Halal Products Research Institute, Universiti Putra Malaysia, Selangor, Malaysia.

出版信息

J Oleo Sci. 2013;62(8):555-62. doi: 10.5650/jos.62.555.

Abstract

In dairy product sector, butter is one of the potential sources of fat soluble vitamins, namely vitamin A, D, E, K; consequently, butter is taken into account as high valuable price from other dairy products. This fact has attracted unscrupulous market players to blind butter with other animal fats to gain economic profit. Animal fats like mutton fat (MF) are potential to be mixed with butter due to the similarity in terms of fatty acid composition. This study focused on the application of FTIR-ATR spectroscopy in conjunction with chemometrics for classification and quantification of MF as adulterant in butter. The FTIR spectral region of 3910-710 cm⁻¹ was used for classification between butter and butter blended with MF at various concentrations with the aid of discriminant analysis (DA). DA is able to classify butter and adulterated butter without any mistakenly grouped. For quantitative analysis, partial least square (PLS) regression was used to develop a calibration model at the frequency regions of 3910-710 cm⁻¹. The equation obtained for the relationship between actual value of MF and FTIR predicted values of MF in PLS calibration model was y = 0.998x + 1.033, with the values of coefficient of determination (R²) and root mean square error of calibration are 0.998 and 0.046% (v/v), respectively. The PLS calibration model was subsequently used for the prediction of independent samples containing butter in the binary mixtures with MF. Using 9 principal components, root mean square error of prediction (RMSEP) is 1.68% (v/v). The results showed that FTIR spectroscopy can be used for the classification and quantification of MF in butter formulation for verification purposes.

摘要

在乳制品行业,黄油是脂溶性维生素(即维生素A、D、E、K)的潜在来源之一;因此,黄油被认为比其他乳制品具有更高的价值。这一事实吸引了无良市场参与者将黄油与其他动物脂肪混合以获取经济利益。像羊脂(MF)这样的动物脂肪由于脂肪酸组成相似,有可能与黄油混合。本研究聚焦于傅里叶变换红外衰减全反射光谱(FTIR-ATR光谱)结合化学计量学在黄油中作为掺假物的羊脂分类和定量分析中的应用。借助判别分析(DA),利用3910 - 710 cm⁻¹的FTIR光谱区域对不同浓度羊脂掺杂的黄油和纯黄油进行分类。判别分析能够对黄油和掺假黄油进行分类,且无任何错误分组情况。对于定量分析,在3910 - 710 cm⁻¹频率区域使用偏最小二乘法(PLS)回归建立校准模型。在PLS校准模型中,得到的羊脂实际值与FTIR预测值之间关系的方程为y = 0.998x + 1.033,其中决定系数(R²)值和校准均方根误差分别为0.998和0.046%(v/v)。随后,PLS校准模型用于预测含有黄油与羊脂二元混合物的独立样品。使用9个主成分时,预测均方根误差(RMSEP)为1.68%(v/v)。结果表明,FTIR光谱可用于黄油配方中羊脂的分类和定量分析,以进行验证。

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