Detection of Adulterants Metanil Yellow in Turmeric Powder Using Fourier Transform Infrared (FTIR) Spectroscopy Combined with Chemometrics OPLS-DA and PLS

Syahril Maulid Dia, Anggita Rosiana Putri, Luthfi Ahmad Muchlashi
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Abstract

Turmeric powder (Curcuma longa L.) is often used for food coloring and flavoring. The high demand for turmeric powder has led to adulteration, one of which is metanil yellow. This study aims to detect metanil yellow dye in turmeric powder using Infrared Spectroscopy (FT-IR) and Chemometrics. The chemometrics model was built by preparing turmeric powder and metanil yellow in the concentration range of 0-50% (w/w). Data was processed using multivariate calibration using OPLS-DA (Orthogonal Partial Least Squares Discriminant Analysis) and PLS (Partial Last Square). The results obtained from OPLS-DA processing of market samples 1 and 2 are estimated to be pure turmeric powder, and samples 3 to 10 are adulterated. From the PLS results, the best calibration model was obtained at wave numbers 1199-539 cm-1 with R2 values for calibration and validation of 0.9967 and 0.9970, respectively, with RMSEC of 2.48 and RMSEP of 6.35. The PLS results showed that in sample 3 containing metanil yellow, in samples 4 to 10, no metanil yellow was detected. The ingredients added were not metanil yellow. It was concluded that FTIR combined with chemometrics could detect the metanil yellow in turmeric powder.
利用傅立叶变换红外光谱(FTIR)结合化学计量学 OPLS-DA 和 PLS 检测姜黄粉中的掺假物质 Metanil Yellow
姜黄粉(Curcuma longa L.)通常用于食品着色和调味。对姜黄粉的大量需求导致了掺假现象的出现,其中之一就是偏苯胺黄。本研究旨在利用红外光谱(FT-IR)和化学计量学检测姜黄粉中的偏苯胺黄染料。化学计量学模型是通过制备姜黄粉和浓度范围为 0-50%(w/w)的偏苯胺黄来建立的。使用 OPLS-DA(正交偏最小二乘法判别分析)和 PLS(偏最小二乘法)对数据进行多元校准处理。根据 OPLS-DA 处理结果,市场样品 1 和 2 估计为纯姜黄粉,样品 3 至 10 为掺假姜黄粉。从 PLS 结果来看,波数 1199-539 cm-1 处的校准模型最佳,校准和验证的 R2 值分别为 0.9967 和 0.9970,RMSEC 为 2.48,RMSEP 为 6.35。PLS 结果表明,在含有偏苯胺黄的样品 3 中,在样品 4 至 10 中没有检测到偏苯胺黄。添加的成分不是偏苯胺黄。结论是傅立叶变换红外光谱结合化学计量学可以检测出姜黄粉中的偏苯胺黄。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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